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1 educed in a phospholipase C beta1 (PLCbeta1) knock-out mouse.
2 ha into injured nerves in the TNF-alpha gene knock-out mouse.
3 lls, we established a T-cell-specific S1P(1) knock-out mouse.
4 bly of receptor subunits, we studied a GluR2 knock-out mouse.
5 ons in locomotion and pain perception in the knock-out mouse.
6 zure protection was maintained in the Asic1a knock-out mouse.
7 pecific manner in an inducible, EC-specific, knock-out mouse.
8 d by the unique phenotypes for each TGF-beta knock-out mouse.
9 tibody against MT1-MMP, raised in an MT1-MMP knock-out mouse.
10 ophrenia, the forebrain-specific calcineurin knock-out mouse.
11  is occluded in neurons generated from PICK1 knock-out mouse.
12 ly spliced CFTR mRNA is produced in this CF 'knock-out' mouse.
13                                     The Fmr1 knock-out mouse, a model of fragile X syndrome, exhibits
14 address this question, we generated an AEG-1 knock-out mouse (AEG-1KO) and characterized it.
15          In addition, the mu-opioid receptor knock-out mouse also shows increases in striatal zinc pa
16                              In the ephrinB3 knock-out mouse, although spine synapses are normal, sha
17             We created an ErbB4-JMa specific knock out mouse and demonstrate that RIP-dependent, non-
18 erated an intestinal epithelium-specific Raf knock-out mouse and identified Raf kinase as a key regul
19 ology, we used Sp1 siRNA, a heterozygous Sp1 knock-out mouse, and mithramycin A, a DNA-intercalating
20 ion in DHA-deprived retinas using the Mfsd2a knock-out mouse as animal model.
21 % loss of [Ca(2+)]i responsiveness in betaAR knock-out mouse ASM.
22 s their expression in other brain regions of knock-out mouse brain was the same as wild type.
23  CaR was increased in lysates from GABA-B-R1 knock-out mouse brains and in cultured hippocampal neuro
24 c-8b in vivo, we generated a tissue specific knock-out mouse by crossing OMP-Cre transgenic mice to R
25                                    The TLR11 knock-out mouse can serve as a good animal model to stud
26 nthesis was markedly attenuated in the LOX-1 knock-out mouse cardiac fibroblasts as well as in WT mou
27 as overexpressed in wild-type (WT) and LOX-1 knock-out mouse cardiac fibroblasts by transfection with
28 ossed the BACHD mouse model with a caspase-6 knock-out mouse (Casp6(-/-)).
29           In CNP-Cre;Cdk5(fl/fl) conditional knock-out mouse (Cdk5 cKO), myelin repair was delayed si
30                       More importantly, E6AP knock-out mouse cells and small interfering RNA techniqu
31                                  Adiponectin knock-out mouse colons had markedly reduced proliferatio
32 vents that were attenuated in the caveolin-1 knock-out mouse confirming a role for CEMs in ROS genera
33 ong-term depression occurred in the mGluR(4) knock-out mouse, consistent with its postsynaptic origin
34 2AX was markedly suppressed in the Plk3(-/-) knock-out mouse corneal epithelial layer in response to
35  have generated a T cell-specific Coronin 1a knock-out mouse (Coro1a(fl/fl) x Cd4[Cre]).
36  and the visual blind cone-rod homeobox gene knock out mouse (Crx(-/-) ) with degeneration of the ret
37                          Here, we describe a knock-out mouse deficient in selenoprotein MsrB1, the ma
38 ioenergetics are blunted in insulin receptor knock-out mouse-derived skeletal myoblasts.
39                                      The ARC knock-out mouse developed larger infarct in response to
40                The hepatocyte-specific Hnf4a knock-out mouse develops severe hepatomegaly and steatos
41          However, only in the total receptor knock-out mouse do we see the decreases in serum ferriti
42  inhibited proliferation in both LKB and LKB knock-out mouse embryo fibroblasts to similar extent and
43 ted apoptosis in TNF-alpha-treated caspase-9 knock-out mouse embryo fibroblasts.
44    ChIP-seq and ATAC-seq analyses using KAP1 knock out mouse embryonic stem cells expressing wild typ
45  apoptosis induction in Akt1 and Akt2 double knock-out mouse embryonic fibroblast cells (MEF-Akt1,2-D
46  VDAC3 knock-out but not VDAC1 and -3 double knock-out mouse embryonic fibroblast cells, confirming t
47 hat when compared with wild-type cells, PTEN knock-out mouse embryonic fibroblasts (PTEN KO MEF) have
48                                       Triple knock-out mouse embryonic fibroblasts (TKO MEFs) had a s
49 r77 transfection into RXRalpha wild-type and knock-out mouse embryonic fibroblasts and subsequent tre
50                          Using both top2beta knock-out mouse embryonic fibroblasts and Top2beta small
51                      Correspondingly, Nelf-b knock-out mouse embryonic fibroblasts exhibited slower p
52                                          LOX knock-out mouse embryonic fibroblasts mirrored the effec
53 ctional connections, we found by using STAT3 knock-out mouse embryonic fibroblasts that RhoA, Rac1, a
54                      We now generated kazrin knock-out mouse embryonic fibroblasts to investigate its
55 l responses are enhanced in Spry1,2,4 triple knock-out mouse embryonic fibroblasts, consistent with n
56 solution microscopy were performed in prkar1 knock-out mouse embryonic fibroblasts, neonatal myocytes
57 solution microscopy were performed in prkar1 knock-out mouse embryonic fibroblasts, neonatal myocytes
58 ased using small interfering RNA and in Msk1 knock-out mouse embryonic fibroblasts, suggesting that t
59                         In wild type and FAK knock-out mouse embryonic fibroblasts, we found by immun
60                                      In G(s) knock-out mouse embryonic fibroblasts, wild-type beta2AR
61  is readily internalized in beta-arrestin1/2 knock-out mouse embryonic fibroblasts.
62  cardiomyocytes cultured from homozygous jmj knock-out mouse embryos (jmj mutants) show increased cel
63    Slice preparations from D1 or D2 receptor knock-out mouse embryos confirm the findings.
64 n the cerebral wall of the dopamine receptor knock-out mouse embryos further confirmed the effects of
65                     MEFs derived from LCMT-1 knock-out mouse embryos have reduced levels of PP2A B re
66                          Previous studies of knock-out mouse embryos have shown that the Wilms' tumor
67 ectroporated with FMRP small hairpin RNA and knock-out mouse embryos lacking FMRP reveals that specif
68                  Characterization using PS-1 knock-out mouse embryos revealed 50 and 80% reductions o
69                                   Using gene knock-out mouse ESCs, we studied the roles of MKK4 and M
70      Furthermore, we generated a conditional knock-out mouse for ERp57 in the nervous system and dete
71 ation and myelination, we used a conditional knock-out mouse for voltage-operated Ca(2+) channels in
72 hermore, since production of a transgenic or knock-out mouse frequently requires cross-breeding, care
73                        By using a galectin-3 knock-out mouse (Gal-3KO), we demonstrated that targeted
74 al in the Esm1 wild-type but not in the Esm1 knock-out mouse GBM model.
75         We analyzed nearly 3900 individually knocked out mouse genes and discovered that the proporti
76 her characterize this region, we generated a knock-out mouse (GREKO(-/-)) with a deletion of the mGnR
77               The FXS animal model, the Fmr1 knock-out mouse, has demonstrated an increased mGluR5-me
78  receptor number and synapse function in xCT knock-out mouse hippocampal CA3-CA1 synapses.
79          These changes are observed in Kv4.2 knock-out mouse hippocampal neurons, which are also sens
80 amined its processing in PC2, 7B2, and PC1/3 knock-out mouse hypothalamic extracts and demonstrated t
81 onal activation in the wild-type (WT) and OT knock-out mouse in olfactory bulbs, piriform cortex, cor
82 ls in the forebrains of the Dlx1/Dlx2 double knock-out mouse in vivo Identification of Gad genes as d
83 n, we took advantage of a unique conditional knock-out mouse in which Lmx1b is genetically deleted in
84 ation, we generated an inducible conditional knock-out mouse in which the Cav1.2 alpha subunit was de
85 ation, we generated an inducible conditional knock-out mouse in which the L-VGCC isoform Cav1.2 was d
86 pment, we generated an inducible conditional knock-out mouse in which the L-VOCC isoform Cav1.2 was p
87 dies, using a novel Casr intestinal-specific knock-out mouse, indicate that the genetic ablation of t
88                             In a conditional knock-out mouse, induced LIS1 deficiency in adulthood al
89                                   The Kir4.1 knock-out mouse is one of the few CNS dysmyelinating or
90 oss of collecting duct P2Y2 receptors in the knock-out mouse is the primary defect leading to increas
91                                          The knock-out mouse is virtually devoid of AChE activity and
92 nced by interacting proteins, we generated a knock-out mouse lacking the HCN channel auxiliary subuni
93 hannels in the corpus cavernosum utilizing a knock-out mouse lacking the Slo gene (Slo-/-) responsibl
94               Further, we used a conditional knock-out mouse lacking vesicular glutamate transporter
95 ential roles of PMP22, we engineered a novel knock-out (-/-) mouse line by replacing the first two co
96 rated an inducible, cell type-specific Ift88 knock-out mouse line (K5rtTA;tetOCre;Ift88(fl/fl)) to di
97 cultures, a postsynaptic density-95 (PSD-95) knock-out mouse line and electrophysiological analysis,
98  this study, we generated a conditional gene knock-out mouse line to specifically nullify Ggamma13 ex
99   We previously generated a conditional Pten knock-out mouse line with Pten loss in limited postmitot
100 c and excitatory neuron-specific conditional knock-out mouse line, and demonstrated that Dab1 is a cr
101 erated a forebrain-specific conditional TrkA knock-out mouse line.
102 hed and a number of animal models, including knock-out mouse lines, have been developed that mirror d
103                                    Utilizing knock-out mouse lines, we identified BDNF and tyrosine r
104  protein expression was near normal in PDZK1 knock-out mouse liver.
105 at Fgf21 expression is up-regulated in E4bp4 knock-out mouse liver.
106 unction of TET2 in vivo, we generated a Tet2 knock out mouse model.
107 ddress this, we use a biliverdin reductase-A knock-out mouse model (Blvra(-/-)), which elevates endog
108 se of a conditional, hepatocyte-targeted AHR knock-out mouse model (Cre(Alb)Ahr(Fx/Fx)).
109                Here, we developed a new Cx30 knock-out mouse model (Cx30(Delta/Delta)) in which half
110                 Using a myeloid-specific HuR knock-out mouse model (Elavl1Mo KO), we show that HuR ex
111 s, we conducted experiments using an IP(3)R2 knock-out mouse model (IP(3)R2 KO).
112 athology, we generated a heterozygous Pabpn1 knock-out mouse model (Pabpn1+/Delta).
113 sing a progesterone receptor-cre conditional knock-out mouse model (Tgfbr2(flox/flox);Pgr(cre/+); "Tg
114     We developed a new Formin-like-1 (FMNL1) knock-out mouse model and determined that the cytoskelet
115 We developed and characterized a conditional knock-out mouse model and found that GSKIP deficiency ca
116              We generated a conditional SNX4 knock-out mouse model and report that SNX4 cKO synapses
117 own to ameliorate mitochondrial disease in a knock-out mouse model lacking a nuclear-encoded gene spe
118 analyzed brain structure in a maternal Ube3a knock-out mouse model of AS.
119 e animal models such as the apolipoprotein E knock-out mouse model of atherosclerosis, suggest greate
120                                     The Fmr1 knock-out mouse model of fragile X syndrome (Fmr1(-/y))
121     We explored retinal function in the Fmr1 knock-out mouse model of FXS.
122  To address in vivo function, we generated a knock-out mouse model of G2E3 deficiency that incorporat
123 romotes "off-target" tumorigenesis in a MDR2 knock-out mouse model of hepatocellular carcinoma (HCC)
124                         Here, using the Mlc1 knock-out mouse model of MLC, we demonstrated that MLC1
125                     Whereas the current gene knock-out mouse model of MLII lacks some of the characte
126 u, delta and kappa) and a mu-opioid receptor knock-out mouse model of RLS show circadian motor change
127 function of the NuRD complex, we generated a knock-out mouse model of the Mta2 (metastasis-associated
128     To overcome these issues, an acute Hnf4a knock-out mouse model was generated through use of the t
129      To extend this study in vivo, a Galphaz knock-out mouse model was utilized to determine whether
130                                            A knock-out mouse model with an Ndp gene disruption was st
131 ell as in a neuron-specific Tsc1 conditional knock-out mouse model, and show differential responses t
132 rage in an in vivo constitutive adipose FIT2 knock-out mouse model, but the physiological effects of
133 JB6 deletion as well as in the previous Cx30 knock-out mouse model, defective Cx26 expression is the
134                Here, we utilized a p47(phox) knock-out mouse model, in which an essential cytosolic c
135                               Using an Lzts2 knock-out mouse model, we characterized the biological r
136                                   By using a knock-out mouse model, we here demonstrate that p140Cap
137                          Using a conditional knock-out mouse model, we show that Notch3 receptor acti
138 ses in vivo, we created a cell type-specific knock-out mouse model.
139                Thus, we generated a Slc25a46 knock-out mouse model.
140 e generated a cardiac-specific and inducible knock-out mouse model.
141 nt lymphocytes generated using a conditional knock-out mouse model.
142  by studying an inducible SC-specific Gpr126 knock-out mouse model.
143 te in a newly generated Tmem106b CRISPR/cas9 knock-out mouse model.
144 c allele compared to a new loss-of-function (knock-out) mouse model.
145 es released from proteins of three different knock-out mouse models associated with O-mannosylation (
146 igration whereas subsequent work with double knock-out mouse models for both Kiaa0319 and its paralog
147 mmals by generating and using a range of new knock-out mouse models for the hypusine-modifying enzyme
148                            Using conditional knock-out mouse models to delete Ikaros at different loc
149 : Due to the development of numerous genetic knock-out mouse models, the identification of specific r
150              Using complementation assays in knock-out mouse models, we established the contributions
151 fication of key enzymes, as revealed by gene knock-out mouse models.
152 dies and to limitations of existing p75(NTR)-knock-out mouse models.
153 h other ADAMTS proteoglycanase combinatorial knock-out mouse models.
154                        Ankyrin-G conditional knock-out mouse myocytes display decreased Nav1.5 expres
155  that genetic inactivation of the 5-HTT in a knock-out mouse not only failed to prevent ethanol-induc
156 cific for ANGPTL4, recapitulated the Angptl4 knock-out (-/-) mouse phenotype of reduced serum TG leve
157                                        PKG I knock-out mouse platelets and PKG inhibitor-treated huma
158           The AP-2alpha transcription factor knock-out mouse provides an exceptional tool to understa
159 -dominant neural retina leucine zipper (Nrl) knock-out mouse retinas compared with wild type rod-domi
160 der excitotoxic condition, cell loss in Cx45 knock-out mouse retinas was similar to that seen in wild
161 ring by low pHo were maintained in an Asic1a knock-out mouse ruling out this acid-sensing channel as
162                        Fibroblasts from Optn knock-out mouse showed reduced LC3-II formation and a lo
163                                The Gclm(-/-) knock-out mouse shows tissue levels of GSH that are betw
164                     We produced an LRAT gene knock-out mouse strain and assessed whether LRAT-/- mice
165 d in control (C57BL/6) mice and two congenic knock-out mouse strains with deletions of either TRPV1 o
166 eurons in behavior, we generated conditional knock-out mouse strains with the primary protein compone
167 s effect was differentially impaired in both knock-out mouse strains.
168   Pharmacological inhibition and conditional knock-out mouse studies showed that Presenilin 1 and Not
169                                              Knock-out mouse studies, in combination with pharmacolog
170                     Studies in the AFABP/aP2 knock-out mouse suggest that the protein may have roles
171 and in a brain-restricted alpha-dystroglycan knock-out mouse that is similar to that seen in patients
172              In cells from the specific STAT knock-out mouse, the signature cytokine locus is unable
173  AMPA receptors, we have used the GluR2(-/-) knock out mouse to determine whether the expression of m
174 For this purpose, we generated a conditional knock-out mouse to address the functions of the NMDA-R i
175                               We generated a knock-out mouse to characterize calsyntenin-1 function i
176             We generated a conditional GLT-1 knock-out mouse to uncover cell-type-specific functional
177                         We generated a Casz1 knock-out mouse using Casz1-trapped embryonic stem cells
178                                            A knock-out mouse was generated for GP2 to study the impac
179                       This astrocytic Cav1.2 knock-out mouse was tested in the cuprizone model of mye
180              The olfactory epithelium of the knock-out mouse was thinner and showed lower expression
181 c-selective ankyrin-G(-/-) mice (conditional knock-out mouse), we report that ankyrin-G targets Nav1.
182                                      Using a knock-out mouse, we found that c-rel, one of the transcr
183 ld(s)) mouse and the chemokine receptor CCR2 knock-out mouse, we report that macrophage accumulation
184     Using a new alphaII spectrin conditional knock-out mouse, we show that alphaII spectrin is requir
185 lasts derived from the NF-kappaB1 (p105/p50) knock-out mouse were used to demonstrate that p50 expres
186 rther examined the role of COX2 using a COX2-knock-out mouse where pFUS was unable to increase MSC tr
187  only, with a nitric oxide synthase 2 (NOS2) knock-out mouse, which develops no AD-like pathology.
188 man mutation, we generated a new conditional knock-out mouse with a brain-specific deletion of Adk (A

 
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