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1 epend on continued stimulation, suggesting a homeostatic mechanism.
2 creased polyamines is an important polyamine homeostatic mechanism.
3 ecific H:L ratio is part of a basic cellular homeostatic mechanism.
4  stress while also functioning as a cellular homeostatic mechanism.
5 own-regulation of YycF activity affects this homeostatic mechanism.
6 e with the regulatory elements composing the homeostatic mechanism.
7  tissues, is likely the efferent arm of this homeostatic mechanism.
8  even though it is likely to be an important homeostatic mechanism.
9 tween rapid-acting antidepressants and local homeostatic mechanisms.
10 y" (VM) CD8 T cells, arise via physiological homeostatic mechanisms.
11 ain growth and survival and engage necessary homeostatic mechanisms.
12 leep may be regulated by both allostatic and homeostatic mechanisms.
13 lls can also be produced from naive cells by homeostatic mechanisms.
14 d striatopallidal neurons is compatible with homeostatic mechanisms.
15  loss maintenance is hampered by anti-famine homeostatic mechanisms.
16 t might include the disruption of normal gut homeostatic mechanisms.
17 l mature T cell pool is regulated by complex homeostatic mechanisms.
18  process is served by motors, scaffolds, and homeostatic mechanisms.
19  cycle progression in response to organ size homeostatic mechanisms.
20 T cells appear to be controlled by different homeostatic mechanisms.
21 es have shed new insights into acidophile pH homeostatic mechanisms.
22 n of primary immune defects and compensatory homeostatic mechanisms.
23 or-reactive T cells, as would be expected by homeostatic mechanisms.
24 ring development, suggesting the presence of homeostatic mechanisms.
25 el of cortical excitability that may involve homeostatic mechanisms.
26 d Na(+) result in interactions between their homeostatic mechanisms.
27 havioral dynamics demonstrating the need for homeostatic mechanisms.
28 lcium during and after a stress to the ionic homeostatic mechanisms.
29 release but is also implicated in many other homeostatic mechanisms.
30  and memory T cells are tightly regulated by homeostatic mechanisms.
31 cal and genetic dissection of presynaptic pH homeostatic mechanisms.
32 nous organisms working in concert to disrupt homeostatic mechanisms.
33 ormally held in balance through a variety of homeostatic mechanisms.
34 e regulation of sleep by circadian clock and homeostatic mechanisms.
35 cumulated in this tissue, bypassing existing homeostatic mechanisms.
36 through tissues is regulated via a number of homeostatic mechanisms.
37 microbial killing pathways but also cellular homeostatic mechanisms [3-5].
38            Our comparisons reveal consistent homeostatic mechanisms across both long- and short-lived
39 At present, it is unclear how vital cellular homeostatic mechanisms affect these early steps in the a
40 r the GABA(A) receptor in triggering several homeostatic mechanisms after activity perturbations, inc
41 evolution of cellular timekeeping with redox homeostatic mechanisms after the Great Oxidation Event a
42  cyclase C (GUCY2C), disrupting a network of homeostatic mechanisms along the crypt-surface axis.
43 nism by which viruses like HIV-1 may subvert homeostatic mechanisms and induce inflammation in the in
44  Defects in this equilibrium can disrupt the homeostatic mechanisms and lead to chronic intestinal in
45 omain is relevant to the evolution of copper homeostatic mechanisms and suggests new models for coppe
46 een functionally incorporated into essential homeostatic mechanisms and suppresses expression of evol
47 f AML1+/- progenitors remained responsive to homeostatic mechanisms and thus the number of mature cel
48 robust antiviral adaptive immunity, neuronal homeostatic mechanisms, and neuroprotective factors on o
49            Our findings highlight the robust homeostatic mechanisms, and role of pioneering neurons i
50                        Sleep is regulated by homeostatic mechanisms, and the low-frequency power in t
51  that vasopressin-independent facets of this homeostatic mechanism are under the control of A-Kinase
52 mostat under conditions of glucose scarcity, homeostatic mechanisms are able to carry out metabolic a
53 n describe multiple instances in which these homeostatic mechanisms are altered by donor T cells or c
54  Our results suggest that activity-dependent homeostatic mechanisms are better suited than Hebbian me
55 mpair circuit function, depending on whether homeostatic mechanisms are in place to regulate the resu
56                                      Similar homeostatic mechanisms are likely to be utilized in othe
57                     These results argue that homeostatic mechanisms are more likely than Hebbian mech
58 spiration while minimizing toxicity, but the homeostatic mechanisms are not well understood.
59                             Although similar homeostatic mechanisms are operational in mammalian neur
60                                              Homeostatic mechanisms are required to control formation
61 ng task; however, emerging data suggest that homeostatic mechanisms are robust enough to maintain a l
62 provide evidence that [Ca(2+)](i) and Ca(2+)-homeostatic mechanisms are significantly altered during
63 critical to brain function, since memory and homeostatic mechanisms are thought to be rooted primaril
64  cell volume regulation as a basic conserved homeostatic mechanism associated with the formation of t
65 ial utility for investigating alterations in homeostatic mechanisms associated with brain disorders a
66                Dysregulation of any of these homeostatic mechanisms at any age can cause severe perio
67 multiple activation pathways may represent a homeostatic mechanism attenuating otherwise uncontrolled
68                In this review we address how homeostatic mechanisms balance synaptic strengths betwee
69   We hypothesize that the network provides a homeostatic mechanism balancing HPC/HSC growth control a
70 ling previously unrecognized IL-15-dependent homeostatic mechanisms between different T-cell subsets
71                       MD partially activates homeostatic mechanisms but differentially upregulates mo
72 nmental variation, owing to the breakdown of homeostatic mechanisms, but they also show higher levels
73 dings have enhanced our understanding of the homeostatic mechanism by which cells use one regulator,
74    The integrated stress response (ISR) is a homeostatic mechanism by which eukaryotic cells sense an
75                                              Homeostatic mechanism by which peripheral T-cell subsets
76              This work defines a fundamental homeostatic mechanism by which the AMPK-GIV axis reinfor
77 In this review we describe the sophisticated homeostatic mechanisms by which fungi acquire, utilize,
78 l activity trigger a variety of compensatory homeostatic mechanisms by which neurons maintain a norma
79                                 Knowledge of homeostatic mechanisms by which the nervous system contr
80 autophagy, triggered by ischemia, could be a homeostatic mechanism, by which apoptosis is inhibited a
81 lcium concentration ([Ca(2+)](i)) and Ca(2+) homeostatic mechanisms (Ca(2+) dynamics) during the deve
82                   However, we find that this homeostatic mechanism can lead to massive over-prolifera
83 t, we show that these endogenous but dormant homeostatic mechanisms can be harnessed to restore synap
84 osis, supporting the notion that miRNA-based homeostatic mechanisms can be usurped by cancer cells to
85                                              Homeostatic mechanisms can eliminate abnormal cells to p
86                                       These "homeostatic" mechanisms can target synaptic excitation,
87 ol of ingestive behavior distinguish between homeostatic mechanisms concerned with energy balance, an
88                                     Specific homeostatic mechanisms confer stability in innate immune
89 llowing prolonged MD, and suggest that these homeostatic mechanisms contribute to the delayed gain of
90                         To define better the homeostatic mechanisms contributing to small intestinal
91  integrators of peripheral signals underling homeostatic mechanisms controlling nutrient intake.
92 se data indicate that synaptic and intrinsic homeostatic mechanisms cooperate to increase excitabilit
93                                         This homeostatic mechanism coordinates rates of G1-->S and G2
94 previously unrecognized role of tPA in vital homeostatic mechanisms coupling NMDA receptor signaling
95 onment they could not at first control, with homeostatic mechanisms developing only later.
96                             We conclude that homeostatic mechanisms driven by a gradient of activity
97    This interface can be viewed as a central homeostatic mechanism, dysfunction of which can lead to
98  intake that is driven by factors other than homeostatic mechanisms (e.g., conditioned eating).
99 ate release when GABA synthesis is impaired, homeostatic mechanisms ensure that the RBC output operat
100                Thermogenesis is an important homeostatic mechanism essential for survival and normal
101 utamate content of synaptic vesicles and (2) homeostatic mechanisms exist to attenuate the excitatory
102  the response to sinusoidal stimulation, the homeostatic mechanism feeds back a rectified version of
103                      Our findings identify a homeostatic mechanism for coordinating the status of ene
104                   This phenomenon provides a homeostatic mechanism for elevating 2,3-BPG levels, ther
105            Induction of Plks might provide a homeostatic mechanism for global dampening of synaptic s
106                Compartmentalization may be a homeostatic mechanism for isolating these biological rea
107 g angiogenic sprouting and offer a potential homeostatic mechanism for regulating vascular density.
108 caling up of synaptic strength, reflecting a homeostatic mechanism for stabilizing neuronal activity.
109                    These findings suggests a homeostatic mechanism for surviving starvation in which
110 he central clock component TIM and suggest a homeostatic mechanism for the regulation of circadian ph
111              These findings identify a major homeostatic mechanism for the regulation of neutrophil p
112  every process in human physiology relies on homeostatic mechanisms for stability, only some have dem
113                          While circadian and homeostatic mechanisms generally ensure sufficient sleep
114                        Little is known about homeostatic mechanisms governing their plasticity.
115 or the tightly controlled regulation of this homeostatic mechanism has begun to bear fruit in the way
116 -coupled receptors (GPCRs), to regulate this homeostatic mechanism has received much less attention.
117  hydration status are readily compensated by homeostatic mechanisms has been little studied, the infl
118  models suggests that by activation of these homeostatic mechanisms, HIF-1 plays a critical protectiv
119                            For the proposed 'homeostatic mechanism', homeostatic pressure increases i
120                           In contrast to the homeostatic mechanism, however, bacterial-induced extrus
121 erebral pressure autoregulation, a sensitive homeostatic mechanism important for the control of cereb
122       Our findings begin to delineate B-cell homeostatic mechanisms important for human immune tolera
123             Autophagy may be a protective or homeostatic mechanism in normal cartilage.
124            These results reveal a remarkable homeostatic mechanism in postmitotic epithelia that ensu
125  is an essential component of a novel innate homeostatic mechanism in the mammalian airways to repres
126 portantly, these data provide insight into a homeostatic mechanism in which C1q and HMGB1 can coopera
127        Collectively, these findings define a homeostatic mechanism in which Th2 cytokines promote, an
128 ture that correlates with a constellation of homeostatic mechanisms in both health and illness.
129 nd current studies, aging may affect calcium homeostatic mechanisms in central and peripheral autonom
130                                       Ca(2+) homeostatic mechanisms in hippocampal neurons also were
131                                              Homeostatic mechanisms in mammals respond to hormones an
132     Intracellular pH provides information on homeostatic mechanisms in neurons and glial cells.
133 ter receptor and is thought to contribute to homeostatic mechanisms in neurons.
134 dies, our work reveals an important role for homeostatic mechanisms in regulating functional connecti
135 rt gene expression and induction of specific homeostatic mechanisms in response to maternal undernutr
136 derstood, little is known about the apparent homeostatic mechanisms in these other yeasts and fungi.
137 esults provide a greater understanding of Zn-homeostatic mechanisms in wheat, demonstrating an expand
138                                          Two homeostatic mechanisms included a cascade structure, one
139 ebrain circuit that modulates stress-related homeostatic mechanisms, including the hypothalamic-pitui
140    The integrated stress response (ISR) is a homeostatic mechanism induced by endoplasmic reticulum (
141           How multiple cellular and synaptic homeostatic mechanisms interact in a neuronal circuit is
142          Immune response regulation includes homeostatic mechanisms intrinsic to the activation and d
143                                 Therefore, a homeostatic mechanism, intrinsic to the STN, balances co
144  bone mineral phenotype through compensatory homeostatic mechanisms involving Cyp24a1 We found that C
145 s will be useful for obtaining insights into homeostatic mechanisms involving liver cell compartments
146 lecular basis for the abrogation of this key homeostatic mechanism is poorly understood.
147                                         This homeostatic mechanism is significantly reduced in striat
148 and perfect adaptation seen when the calcium homeostatic mechanism is subjected to extreme disturbanc
149                   The most known and studied homeostatic mechanism is the control of iron uptake in t
150 ent of sensory maps, a unique consequence of homeostatic mechanisms is the precise shaping of neurona
151 s at least partially activated by a reactive homeostatic mechanism, it is likely also regulated by th
152  channels can be compensated; in others, the homeostatic mechanism itself causes pathological loss of
153 istic synaptic plasticity rules coupled with homeostatic mechanisms lead to the formation of neuronal
154 rafficking, and degradation; failure of this homeostatic mechanism likely contributes to neurodegener
155 tracellular adenosine levels is an important homeostatic mechanism, loss of which contributes to the
156                           In severe hypoxia, homeostatic mechanisms maintain function of the brainste
157                  It has been postulated that homeostatic mechanisms maintain stable circuit function
158 up the burden of supporting transmission and homeostatic mechanisms maintained overall synaptic stren
159                                 However, the homeostatic mechanism maintaining the acid-secreting "co
160 e studies suggest that P-gp provides a local homeostatic mechanism, maintaining CSF T4 levels.
161 increases quadratically over time and that a homeostatic mechanism maintains a constant density of mi
162 ressive potency of MDSC, and that a feedback homeostatic mechanism maintains a steady-state level of
163                                         When homeostatic mechanisms malfunction, the volume and conce
164                           It is thought that homeostatic mechanisms match intrinsic excitability to t
165 bservations suggest that altered [Ca(2+)](i) homeostatic mechanisms may underlie some aspects of the
166        Our results demonstrate that the host homeostatic mechanism mediated by Gal-9/Tim-3 interactio
167 ain function and architecture through robust homeostatic mechanisms mediated by self-renewing cells c
168 tudy effects of cyclic nucleotides on energy homeostatic mechanisms, mice were generated by targeted
169                           This suggests that homeostatic mechanisms might be acting to preserve the p
170  conclusions did not change upon addition of homeostatic mechanisms, multiplicative STDP rules or wea
171 results show that interpretation of afferent homeostatic mechanisms must incorporate properties that
172 ng the molecular understanding of such metal homeostatic mechanisms, natural variation of metal toler
173 insights into the developmental networks and homeostatic mechanisms necessary for the transformation
174 PMs in the vasculature may represent a novel homeostatic mechanism of relevance to vascular health an
175 esh-mediated signalling pathway is a central homeostatic mechanism of the insect gut.
176 ollicle an ideal system with which to define homeostatic mechanisms of an adult stem cell population.
177                                Compared with homeostatic mechanisms of feeding, much less is known ab
178 ntrations would be predicted to disrupt many homeostatic mechanisms of growth, development, and metab
179    Unlike other essential metals, cell-level homeostatic mechanisms of Mn have not been identified.
180 stem cells and promote their escape from the homeostatic mechanisms of proliferation control.
181  survival signals and thus may contribute to homeostatic mechanisms of tonic signaling.
182 parse coding models, such as those employing homeostatic mechanisms on neural firing rates, can exhib
183  This could be consistent with a defect in a homeostatic mechanism operating at the root-to-shoot tra
184     Loss of hCLCA2 may allow escape from pHi homeostatic mechanisms, permitting the higher intracellu
185  networks in most type I strains, that other homeostatic mechanisms predominate in type II strains, a
186                                While several homeostatic mechanisms prevent oxygen-dependent killing
187 tor networks in conjunction with appropriate homeostatic mechanisms provide a robust, biologically pl
188            As a further indication of failed homeostatic mechanisms, R2KO mice displayed indices of c
189 sequence of imbalances in what are intrinsic homeostatic mechanisms, rather than a result of external
190 waves in ChAT knock-out regions suggest that homeostatic mechanisms regulate retinal output during de
191                                              Homeostatic mechanisms regulate synaptic function to mai
192  entry and progression, providing a critical homeostatic mechanism regulating cellular proliferation.
193 d, as part of a conserved post-translational homeostatic mechanism regulating lymphocyte numbers or a
194 we report that Pum2 is indeed central to the homeostatic mechanism regulating membrane excitability i
195          This study sought to examine normal homeostatic mechanisms regulating adaptive immunity to R
196 the underlying molecular components of these homeostatic mechanisms remain poorly understood.
197 role of peripheral circadian clocks in these homeostatic mechanisms remains unknown.
198                                          The homeostatic mechanism reproduces experimentally observed
199 e paracortical T-cell zone (TZ) that impairs homeostatic mechanisms required for T-cell survival.
200        Accurate encoding is recovered when a homeostatic mechanism scales the excitatory synapses to
201                                              Homeostatic mechanisms stabilize neural circuit function
202 olism and storage, whereas scarcity triggers homeostatic mechanisms, such as the mobilization of inte
203 ess limitless self-renewal, may hijack these homeostatic mechanisms, take refuge within the sanctuary
204                                            A homeostatic mechanism, termed the actin-scavenger system
205 ffects of the mutations are mitigated by the homeostatic mechanism that acts on expression of other G
206 f synaptic plasticity may constitute a novel homeostatic mechanism that can prevent the runaway synap
207 emonstrate that WRP anchoring to WAVE-1 is a homeostatic mechanism that contributes to neuronal devel
208         We propose that PS flip is part of a homeostatic mechanism that controls sterol loading and l
209 el modulator, Rem2 may function as part of a homeostatic mechanism that controls synapse number.
210 e modeling, that initiator dimerization is a homeostatic mechanism that dampens active monomer increa
211  that primarily regulates sleep timing and a homeostatic mechanism that detects and responds to sleep
212 type I metabotropic glutamate receptors is a homeostatic mechanism that detects synaptic crosstalk an
213 ion in T lymphocytes by ST3Gal-I comprises a homeostatic mechanism that eliminates CD8+ T cells by ap
214 N10-dependent degradation of WRI1 provides a homeostatic mechanism that favors lipid biosynthesis whe
215  over parameters, the auditory system uses a homeostatic mechanism that increases the robustness of i
216  results suggest that retinal neurons have a homeostatic mechanism that integrates energetic status o
217  tissue in the small intestine, is part of a homeostatic mechanism that is activated in response to t
218                                We describe a homeostatic mechanism that limits NMDA receptor currents
219               These findings reveal a robust homeostatic mechanism that maintains physiological level
220 , our results show that Pum2 forms part of a homeostatic mechanism that matches membrane excitability
221 ve autophagy of Bcl10 is a pathway-intrinsic homeostatic mechanism that modulates TCR signaling to NF
222 in, and this response is likely an important homeostatic mechanism that prevents the overaccumulation
223 e for fast vesicle recycling as a functional homeostatic mechanism that prevents vesicle depletion an
224                       Thus, Crb is part of a homeostatic mechanism that promotes Ex inhibition of Yki
225                           Thus, we uncover a homeostatic mechanism that reciprocally regulates A-type
226     Here we report biological evidence for a homeostatic mechanism that reconciles the apparently opp
227 t that both Rbm3 and microRNAs are part of a homeostatic mechanism that regulates global levels of pr
228 ought that redox signaling might represent a homeostatic mechanism that regulates the function of syn
229 gulatory T cells and uncover a new intrinsic homeostatic mechanism that regulates the magnitude of im
230                        Cell competition is a homeostatic mechanism that regulates the size attained b
231              MMIC may represent an important homeostatic mechanism that supports peripheral tolerance
232                           Here we identify a homeostatic mechanism that transcriptionally tailors CD8
233 ver pathways in plants and some of the known homeostatic mechanisms that act during meiotic recombina
234 etween rapid forms of Hebbian plasticity and homeostatic mechanisms that adjust the threshold for pla
235 phasizing the important contributions of K(+)homeostatic mechanisms that are known to be reduced in H
236 vity caused by exposure to drugs may trigger homeostatic mechanisms that attempt to restore normal ne
237                                 To determine homeostatic mechanisms that balance this input-output/sy
238 in the liver and renal glutamine uptake, are homeostatic mechanisms that cause negative nitrogen bala
239 is involves the progressive dysregulation of homeostatic mechanisms that control growth.
240  constraining neoplastic progression through homeostatic mechanisms that control pancreatic regenerat
241 either inhibition or excitation would engage homeostatic mechanisms that converge to regulate NMDA re
242 as development and tissue repair, as well as homeostatic mechanisms that counteract ageing and neurod
243                    Neurons are equipped with homeostatic mechanisms that counteract long-term perturb
244                             The emergence of homeostatic mechanisms that enable maintenance of an int
245  carcinogenesis proceeds by misappropriating homeostatic mechanisms that govern tissue repair and ste
246               This is especially true of the homeostatic mechanisms that have evolved to maintain the
247 istance to influenza, suggesting that normal homeostatic mechanisms that limit basal tissue inflammat
248 esis by hypoxia is an important component of homeostatic mechanisms that link vascular oxygen supply
249 hese data suggest steady-state DA may enable homeostatic mechanisms that maintain motor network outpu
250 he osteoclast is an important element of the homeostatic mechanisms that maintain skeletal integrity
251 antigen-specific T memory (Tm) cells but the homeostatic mechanisms that maintain the size and divers
252 ols are maintained through poorly understood homeostatic mechanisms that may include signaling via cy
253  such O2-sensing cells have evolved as vital homeostatic mechanisms that monitor O2 supply and alter
254 radoxical effect may reflect a disruption of homeostatic mechanisms that normally act to reduce seizu
255 arallel pathways, generating a nested set of homeostatic mechanisms that operate over different tempo
256       Neurons may possess activity-dependent homeostatic mechanisms that permit them to globally alte
257 uced long-lasting alterations in [Ca(2+)](i) homeostatic mechanisms that persist for up to 1 year aft
258                                Surprisingly, homeostatic mechanisms that regulate circuit output have
259 e is thought to be maintained by an array of homeostatic mechanisms that regulate neuronal and circui
260 lity to activate protein-synthesis-dependent homeostatic mechanisms that restore top-down excitatory
261 al for learning and memory, are dependent on homeostatic mechanisms that stabilize neural activity.
262        Recent studies have helped define the homeostatic mechanisms that support the diverse pool of
263                       Our data suggests that homeostatic mechanisms that support the naive T cell poo
264                           TLRs also activate homeostatic mechanisms that suppress osteoclastogenesis
265 of leukocyte recruitment may represent local homeostatic mechanisms that tissues and organs may have
266 s in normal signal transduction pathways and homeostatic mechanisms that would trigger apoptosis in n
267                       These results reveal a homeostatic mechanism through which activity regulates t
268 ymes ACAT1 and ACAT2 is, in part, a cellular homeostatic mechanism to avoid toxicity associated with
269                                As a possible homeostatic mechanism to control persistent infection-in
270 that ABA-induced accumulation of miR159 is a homeostatic mechanism to direct MYB33 and MYB101 transcr
271 We propose that this regulation is part of a homeostatic mechanism to limit excessive inflammation an
272 r in nociceptive sensory neurons provides an homeostatic mechanism to prevent excessive ATP signaling
273          We hypothesized that fasting alters homeostatic mechanisms to eliminate excitatory responses
274  to be properly fine-tuned and controlled by homeostatic mechanisms to ensure proper network function
275 insic adaptive responses operating as global homeostatic mechanisms to maintain firing macro-stabilit
276 n the HSC fraction, suggesting the action of homeostatic mechanisms to maintain sufficient levels of
277                                        Thus, homeostatic mechanisms to preserve membrane compositions
278 marrow caused primarily by failure of normal homeostatic mechanisms to prevent the expansion of postg
279 ate how innate receptors engage multilayered homeostatic mechanisms to promote immunity and survival
280 t-specific synaptic modifications and global homeostatic mechanisms to provide stability to neural ne
281 be toxic, cells have developed sophisticated homeostatic mechanisms to regulate their levels and avoi
282 w they engage a neuron's or neural network's homeostatic mechanisms to self-correct.
283 cells and therefore organisms have developed homeostatic mechanisms to tightly regulate its acquisiti
284 e AMPK-PGC-1alpha signaling cascade, a known homeostatic mechanism, to increase prostate cancer cell
285 ise in sedentary cultures restores perturbed homeostatic mechanisms towards the normal physiological
286                                      Thus, a homeostatic mechanism used during activity reduction pro
287 citatory-inhibitory balance is maintained by homeostatic mechanisms, we examined the role of MeCP2 in
288 nd the host limits iron availability through homeostatic mechanisms, we hypothesized that B. anthraci
289 ed, and whether neurons develop compensatory homeostatic mechanisms were unknown and are the focus of
290 hloride transport systems highlights a novel homeostatic mechanism whereby ambient glutamate levels d
291          Autophagy is a fundamental cellular homeostatic mechanism, whereby cells autodigest parts of
292 in stable network function, neurones possess homeostatic mechanisms which integrate activity levels a
293  excitability through an activity-dependent, homeostatic mechanism, which could have major effects on
294 strategies it is important to understand the homeostatic mechanisms, which exist to maintain a balanc
295 gy metabolism through the control of several homeostatic mechanisms, which include autophagy and prot
296               We suggest that these specific homeostatic mechanisms, which match the number, strength
297 ponse (UPR), represents a conserved cellular homeostatic mechanism with important roles in normal dev
298                                              Homeostatic mechanisms within the cell respond by reduci
299 n of the proteasome results in disruption of homeostatic mechanisms within the cell that can lead to
300                    These data establish that homeostatic mechanisms within the intact CNS act to stab

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