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1 osin contractility as a key effector of this fundamental process.
2 rmation for a holistic understanding of this fundamental process.
3 ht on the molecular networks regulating this fundamental process.
4 eins contribute to our understanding of this fundamental process.
5 es in understanding of this biogeochemically fundamental process.
6 and flux defines our understanding of these fundamental processes.
7 entified numerous gene sets corresponding to fundamental processes.
8 ptional cytoplasmic responses and associated fundamental processes.
9 tionship at the heart of some of life's most fundamental processes.
10 dimensions for nanomaterials during various fundamental processes.
11 severity of terrorism may be constrained by fundamental processes.
12 Transport of proteins across membranes is a fundamental process, achieved in every cell by the 'Sec'
14 bstrates and the relationships between these fundamental processes and the functional roles played by
19 the factors and mechanisms underpinning this fundamental process are underexplored in archaea, the th
20 Proton-coupled electron transfer (PCET) is a fundamental process at the core of oxidation-reduction r
21 is model thus has enabled us to pinpoint the fundamental processes behind the reproductive decisions
27 3-based cancer therapies and also illuminate fundamental processes by which gene networks control cel
29 will therefore advance understanding of the fundamental processes contributing to related pathophysi
33 bilization (MOMP) represents one of the most fundamental processes during apoptosis signal transducti
35 h) is a core signaling pathway implicated in fundamental processes during embryonic kidney developmen
38 ility is determined by the ratio between two fundamental process energies, viz. the activation enthal
39 Phagocytosis by macrophages represents a fundamental process essential for both immunity and tiss
42 ical transduction of acoustic signals is the fundamental process for hearing in all ears across the a
44 provide an effective nexus between these two fundamental processes for carbon (C) and nitrogen (N) cy
45 cell communication, and differentiation, all fundamental processes for decidualization and pregnancy.
46 s and, furthermore, are capable of mimicking fundamental processes for directional charge transport o
47 itment of functionally important species are fundamental processes for rebuilding depleted adult popu
49 ganism's ability to disperse influences many fundamental processes, from speciation and geographical
52 e molecules creates opportunities to examine fundamental processes governing electron flow on the sma
53 ided the first chemical understanding of the fundamental processes governing vision: the photoisomeri
55 and enables coalescence.Crystal growth is a fundamental process, important in a wide range of fields
57 pite the lipolysis-lipogenesis cycle being a fundamental process in adipocyte biology, very little is
60 t of ammonium across biologic membranes is a fundamental process in all living organisms and is media
71 Clathrin-mediated endocytosis (CME) is a fundamental process in cell biology and has been extensi
73 by high-throughput sequencing platforms is a fundamental process in current bioinformatics analysis.
74 l transition (EMT) is a highly conserved and fundamental process in development, fibrosis, and metast
80 ctive in CGD patients, is considered to be a fundamental process in inflammation and antifungal immun
82 fusion (PD) across biological membranes is a fundamental process in many biological systems, and much
85 ntinuities and restore tissue integrity is a fundamental process in normal development and repair of
90 guration cycle, pointing to such cycles as a fundamental process in the evolution of short-period com
91 s and further the understanding of this most fundamental process in the filovirus replication cycle.
95 d efforts to comprehensively understand this fundamental process in this organism continue to intensi
104 worth filter preserving the amplitude of the fundamental processes in comparison with the rectangle f
108 enchymal-to-epithelial transition (MET), are fundamental processes in embryonic development and tissu
110 ters for protein-DNA interactions, which are fundamental processes in gene replication, transcription
111 tanding of gene-environment interactions and fundamental processes in innate and adaptive immunity.
116 n-activated protein kinase pathway regulates fundamental processes in normal and malignant cells, inc
118 driving bacterial locomotion and chemotaxis, fundamental processes in pathogenesis and biofilm format
119 is review gives a concise description of the fundamental processes in photovoltaic devices, with the
121 role in illuminating the mechanisms of many fundamental processes in physics, chemistry, and biology
123 rigami folding, it is well-suited to probing fundamental processes in related self-assembling systems
124 e homologous to eukaryotic genes that encode fundamental processes in replication, transcription, and
125 as been investigated at pore scales, but its fundamental processes in rough fractures remain unclear.
126 ica are established models for understanding fundamental processes in soil ecosystem functioning (e.g
128 subsequent delivery into a host cell are two fundamental processes in the life cycle of a virus.
129 e LA values are involved in some of the most fundamental processes in yeast such as energy regulation
130 ture, where they are involved in a number of fundamental processes including carbon dioxide fixation,
131 microtubule (MT) dynamics regulate numerous fundamental processes including cytoskeleton remodeling,
132 iverse actin filament (F-actin) networks for fundamental processes including division, motility, and
133 s and mitochondria of plant cells to support fundamental processes, including antioxidant defence, re
134 cterial colonization during development is a fundamental process influencing the fitness of many orga
135 otein degradation by the 26S proteasome is a fundamental process involved in a broad range of cellula
137 t step of receptor and membrane recycling, a fundamental process involved in many aspects of cell phy
138 c biology, that is biology representative of fundamental processes involved in NM transport by cells
139 le perspectives of nucleation, revealing the fundamental processes involved in particle formation and
140 there remain many unanswered questions about fundamental processes involved in spore biology, host pe
141 results allow a greater understanding of the fundamental processes involved in the disproportionation
142 mesenchymal-epithelial transition (MET), are fundamental processes involved in tumor cell invasion an
143 n fruit but not leaves, suggesting that this fundamental process is differentially regulated in these
149 a of eutrophic lakes as a result of only two fundamental processes: O(2) is consumed (i) by settled o
154 sins play important roles in a wide range of fundamental processes occurring within neurons, includin
159 tion of whether figure-ground segregation, a fundamental process of auditory scene analysis, requires
162 Base metal, molecular catalysts for the fundamental process of conversion of protons and electro
163 s a signaling glycoprotein that controls the fundamental process of erythropoiesis, orchestrating the
164 these results solidify cap homeostasis as a fundamental process of gene expression control and show
165 ternative messenger RNA (mRNA) splicing is a fundamental process of gene regulation, and errors in RN
166 lts highlight new principles involved in the fundamental process of habituation, notably trigeminalit
167 ortant new role of hnrnp I in regulating the fundamental process of IP(3)-mediated Ca(2+) release at
172 tep forward in our ability to appreciate the fundamental process of myelination, and provides the fir
176 rtant for health and insulin action, yet the fundamental process of regulating lipid metabolism durin
177 ings suggest that, early in development, the fundamental process of responding to pupillary changes i
178 f this charge-neutral excitation mirrors the fundamental process of the analogous one-hole propagatio
179 ast have provided critical insights into the fundamental process of translation as well as its regula
180 action of HygA and A201A, but also into the fundamental process of tRNA accommodation during protein
181 ir regulatory elements that are essential to fundamental processes of amniote development and biologi
185 upied by microbial assemblages formed by the fundamental processes of community ecology: dispersal, l
187 al specialization of cells is among the most fundamental processes of higher organism ontogenesis.
192 s that have given us memorable insights into fundamental processes of male and female gametogenesis a
195 tor in hemoproteins that participates in the fundamental processes of photosynthesis and respiration
196 or that regulates numerous genes involved in fundamental processes of potential relevance to cardiova
197 , suggesting that they play key roles in the fundamental processes of prion propagation or clearance.
198 ery of other proenzyme activators to explore fundamental processes of proenzyme activation and their
199 rent bodies is critical for constraining the fundamental processes of protoplanet accretion and diffe
200 tochrome oxidase and for plastocyanin in the fundamental processes of respiration and photosynthesis.
202 ensive research in recent years, many of the fundamental processes of SOA formation and evolution rem
204 o investigate, are important elements in the fundamental processes of synaptic integration and plasti
206 ology of alpha2MG with enhancing outcomes on fundamental processes of the innate immune response pavi
207 ng excitability and synaptic transmission in fundamental processes of the nervous system such as slee
208 g and its functional evolution in supporting fundamental processes of vascular plant development.
210 e propose that climatic niche evolution is a fundamental process regulating the link between climate
213 s a new opportunity to better understand the fundamental processes required for virion formation.
216 tric positioning of the mitotic spindle is a fundamental process responsible for creating sibling cel
218 r quantitative framework exists to model the fundamental processes responsible for the continuous for
221 on in the nervous system and are involved in fundamental processes such as attention, learning, and m
222 r membranes and functionally associated with fundamental processes such as cell differentiation, neur
223 translation, and plays an essential role in fundamental processes such as cell growth and proliferat
224 lphabeta-tubulin that play critical roles in fundamental processes such as chromosome segregation and
225 siveness, but it also provides insights into fundamental processes such as dispersal and adaptation.
227 ymbiotic event and playing a role in several fundamental processes such as energy production, metabol
228 ences from common model organisms, including fundamental processes such as mitochondrial translation.
230 avenue for future investigations surrounding fundamental processes such as precipitate nucleation on
231 d proteins are pervasive in biology, driving fundamental processes such as protein translation and pa
232 rm are then excellent model cells to dissect fundamental processes such as regulated exocytosis.
233 (+) permeates the plasma membrane to control fundamental processes such as secretion, neuronal commun
234 suggests potential functions for lncRNAs in fundamental processes such as spermatogenesis and synapt
235 c polymers, plays a central role in numerous fundamental processes, such as development, reproduction
236 anelle that plays a central role in numerous fundamental processes, such as development, reproduction
238 odextrin models of proteins participating in fundamental processes, such as enzymatic catalysis, resp
239 l-cell adhesion molecules implicated in many fundamental processes, such as morphogenesis, cell growt
240 dulate the expression of genes that regulate fundamental processes, such as organogenesis and cell gr
241 ing a number of cellular functions, but some fundamental processes, such as protein secretion, have b
244 f CENP-A may be responsible for generating a fundamental process that contributes to increased chroma
245 re molecular machinery of membrane fusion, a fundamental process that drives inter- and intracellular
253 eplication, Okazaki fragment maturation is a fundamental process that joins discontinuously synthesiz
254 Global DNA demethylation in humans is a fundamental process that occurs in pre-implantation embr
259 ophila within protozoa is considered to be a fundamental process that supports its survival in nature
261 epithelial-mesenchymal transition (EMT) is a fundamental process that underlies development and cance
262 nt an invaluable tool for characterizing the fundamental processes that affect platelet homeostasis a
265 Yet we still lack understanding of many fundamental processes that determine microbiome composit
267 port licenses use of methionine for multiple fundamental processes that drive T lymphocyte proliferat
269 enine dinucleotide (NAD(+)) to carry out the fundamental processes that fuel respiration and mediate
270 h efforts have provided unique insights into fundamental processes that govern myocardial extracellul
273 eous condition in an effort to elucidate the fundamental processes that govern soot particle-particle
274 The evolution of proteins is one of the fundamental processes that has delivered the diversity a
275 ticide-contaminated environments because the fundamental processes that regulate growth-linked biodeg
276 gress has been made toward understanding the fundamental processes that regulate this family of prote
278 the potential to enter quiescence are three fundamental processes that underlie the development of a
279 , these findings provide key insights into a fundamental process the brain uses to maximize the infor
281 otosynthesis are often limited by one of two fundamental processes: the conversion of solar energy in
284 The canonical Wnt pathway regulates numerous fundamental processes throughout development and adult p
285 ribution of metabolically active bacteria in fundamental processes triggering environmental and publi
286 modelling has yielded mechanistic details of fundamental processes unavailable through experiments al
289 cess complex spatiotemporal information is a fundamental process underlying the behavior of all highe
290 ement learning has made it possible to model fundamental processes underlying schema encoding and sto
292 imilar preference have been suggested as the fundamental processing units of the cerebral cortex.
298 ave established on land, mosses, which share fundamental processes with flowering plants but underwen
299 omplex carbohydrates and proteins drive many fundamental processes within biological systems, includi
300 he crucial functions of this modification in fundamental processes within the context of the whole an