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1 pression of these transcription factors with small hairpin RNA.
2 1alpha, IL-6, and IL-8 compared to scrambled small hairpin RNA.
3 T183A/Y185F) that were not targeted by human small hairpin RNA.
4  were inhibited by knocking down DR5 using a small hairpin RNA.
5 ate cancer cells, we developed GLI2-specific small hairpin RNA.
6  encoding RNA polymerase III promoter-driven small hairpin RNA.
7 g blocking antibody and dedicated lentiviral small hairpin RNA.
8 ed down in cultured CD27(-)CD4(+) cells with small hairpin RNA.
9 variety of RNA-binding ligands with a set of small hairpin RNAs.
10  in cells, in which GAK is down-regulated by small hairpin RNAs.
11 ma cells using lentiviral vectors expressing small hairpin RNAs.
12  cultured human Caco-2/TC7 enterocytes using small hairpin RNAs.
13       HER2 was knocked down by expression of small hairpin RNAs.
14 rger mammospheres and silencing of CK5 using small hairpin RNA abolished this P4-dependent increase i
15  (Ad/CMV/V5-Nor-1), or reduce its level with small hairpin RNAs (Ad/BLOCK-iT/Nor-1(small hairpin RNA)
16 l with small hairpin RNAs (Ad/BLOCK-iT/Nor-1(small hairpin RNA)) after partial hepatectomy.
17 ses, using either dimethyloxalylglycine or a small hairpin RNA against prolyl hydroxylase-2, increase
18  assays in HT-29 and Caco-2 cells expressing small hairpin RNAs against CAP-D3.
19  by injection of adenoviral vectors encoding small hairpin RNAs against Xbp1 messenger RNA.
20                                              Small-hairpin RNA against CSQ1 was introduced into flexo
21 orescence microscopy, and HSP knockout using small hairpin RNA and inhibitors (apoptozole, 17-AAG, an
22 is of mouse embryos electroporated with FMRP small hairpin RNA and knock-out mouse embryos lacking FM
23              We knocked down HNRNPA2B1 using small hairpin RNAs and measured viability, anchorage-ind
24                              Here, we used a small hairpin RNA approach to directly assess AR activit
25          In utero electroporation with Gata2 small hairpin RNAs at E16 into cells along the dorsal me
26 on in human aortic smooth muscle cells using small hairpin RNA attenuates gene and protein expression
27 ese results, stable knockdown of FoxQ1 using small hairpin RNA augmented bCSC inhibition by DATS.
28 a mouse U6 promoter that is separated from a small hairpin RNA by a random DNA stuffer sequence flank
29 tenuation of hCLCA2 expression by lentiviral small hairpin RNA caused cell overgrowth and focus forma
30 w that reduction of LCMT-1 protein levels by small hairpin RNAs causes up to a 70% reduction in PP2A
31 esis by lentiviral infection with HIF-1alpha small hairpin RNAs completely blocked the increase in ex
32 and IRF7 endogenously, expression of a TRAF6 small hairpin RNA construct reduces endogenous ubiquitin
33 pha-actinin function by dominant-negative or small hairpin RNA constructs reduces Ca(V)1.2 surface lo
34 with LPS were similar in wild-type cells and small hairpin RNA-containing cells.
35        Examination of a publically available small hairpin RNA data set confirmed GNAS silencing to b
36 epletion of Hhat with lentivirally delivered small hairpin RNA decreased both anchorage-dependent and
37 s (TRAM-34 and ICA-17043) or KCa3.1-specific small hairpin RNA delivered by adenoviruses.
38           Studies with ATGL-and HSL-directed small hairpin RNAs demonstrate that 1) ATGL activity is
39 Knockdown of KHK by stable transfection with small hairpin RNA demonstrated that these processes were
40 A (rho0 cells) and cells stably expressing a small hairpin RNA directed against the Rieske iron-sulfu
41                                              Small hairpin RNAs directed against CKI revealed that th
42                         Depletion of Pin1 by small hairpin RNA does not significantly affect TGF-beta
43                               Finally, STAT3-small hairpin RNA downregulated miR-155 gene expression,
44 eas knockdown of MEK2 by lentivirus-mediated small hairpin RNAs dramatically inhibited CSFV replicati
45 esigned to trigger RNA interference by using small hairpin RNA driven by polymerase III promoters hav
46 rsely, down-regulation of endogenous PLD1 by small hairpin RNA elevates Abeta production.
47 Knockdown of endogenous CBF-1 using specific small hairpin RNAs expressed on lentiviral vectors resul
48 am signaling pathways were knocked down with small hairpin RNAs, expressed from lentiviral vectors in
49  was eliminated by sequential treatment with small hairpin RNA expressing lentivirus.
50 ockdown can be generated through introducing small hairpin RNA-expressing constructs into the mouse a
51 30 cells in which p53 was knocked down using small hairpin RNA failed to be sensitized by pharmacolog
52                We found that transfection of small hairpin RNA for BMPRII and ActRIIA in MC3T3 cells
53 TLG was stably knocked down by expression of small hairpin RNAs from lentiviral vectors in DLD1, HT29
54 re, we report that down-regulation of GAK by small hairpin RNA has two pronounced effects on EGF rece
55                 Partial knockdown of TIN2 by small hairpin RNA in a telomerase-positive cell line res
56 astatic line with a DNA construct encoding a small hairpin RNA in a vector labeled with red fluoresce
57  found that suppression of GAB2 by inducible small hairpin RNA in ovarian cancer cells inhibited tumo
58 using small interfering RNA (siRNA) encoding small hairpin RNA in ovarian cancer cells led to (i) red
59 ) dependent, as depletion of HIF subunits by small hairpin RNA in VHL-deficient ccRCC cells restored
60 449 and PLC5 HCC cells and knocked down with small hairpin RNAs in Hep3B and Huh7 cell lines.
61 tor of transcription 3 was knocked down with small hairpin RNAs in HepG2 cells.
62       Levels of NR1D1 were knocked down with small hairpin RNAs in human primary macrophages.
63        DARPP-32 expression was reduced using small hairpin RNAs in the human gastric cancer cell line
64                Expression of SHIP2-targeting small-hairpin RNA in differentiated C2C12 muscle cells l
65                                 Furthermore, small hairpin RNA-induced silencing of RasGRP1 abrogated
66 BE1L expression with small inhibitory RNA or small hairpin RNA inhibited IFN and RA-induced ISG15 con
67               Targeting NFATc1 with specific small hairpin RNA inhibits DNase I hypersensitive site f
68            We found that PAR1 silencing with small hairpin RNA inhibits MUC18 expression in metastati
69               Following stress exposure, Rit small hairpin RNA interference (shRNAi)-treated cells di
70 , SB-218078, or acute deletion of Chk1 using small hairpin RNA killed mammary tumor cells effectively
71  chloride currents was also lost upon stable small hairpin RNA knockdown of ClC-3 channels indicating
72         THP-1 invasion also was inhibited by small hairpin RNA knockdown of SCN8A.
73                       p16-overexpressing and small hairpin RNA-knockdown cells were generated, and th
74                                    Moreover, small hairpin RNA knockdowns of endogenously overexpress
75                       Knocking down TRPM7 by small hairpin RNA largely eliminates TRPM7 current and C
76 evels of p27(KIP1), and HINT1 knockdown with small hairpin RNA leads to decreased cellular levels of
77 ell lines, depletion of MIF, CD74 or CD44 by small hairpin RNA led to a significant reduction in grow
78 on by knockdown of O-GlcNAc transferase with small hairpin RNA led to increased phosphorylation of ta
79            The role of p53 was assessed with small hairpin RNA lentivirus in both asthmatic patients
80 and IFN-beta, whereas p62 underexpression by small hairpin RNA markedly elevated their expression, in
81                                        TRPM7 small hairpin RNA markedly reduced basal AF fibroblast d
82 In a cell line stably transfected with Mcl-1-small-hairpin-RNA (Mcl-1-shRNA), Mcl-1 depletion sensiti
83                                 In addition, small hairpin RNA-mediated down-regulation of TAP or Aly
84 vity to bortezomib, whereas pharmacologic or small hairpin RNA-mediated IGF-1R suppression enhanced b
85  keratinocytes, in skin cell migration via a small hairpin RNA-mediated knockdown approach.
86 from pancreatic cancer cells were reduced by small hairpin RNA-mediated knockdown of adrenomedullin.
87         These findings were recapitulated by small hairpin RNA-mediated knockdown of HEATR2 in airway
88                                    Moreover, small hairpin RNA-mediated knockdown of human EZH2 in T
89                                 Furthermore, small hairpin RNA-mediated knockdown of Itk in human per
90                                              Small hairpin RNA-mediated knockdown of MYC enhanced the
91                                              Small hairpin RNA-mediated knockdown of NDST1 or modific
92 udex B blocked NTCP transport of bile salts; small hairpin RNA-mediated knockdown of NTCP in HepaRG c
93                   Using a strategy involving small hairpin RNA-mediated knockdown of PICK1 and its re
94                                Additionally, small hairpin RNA-mediated knockdown of presynaptic NMUR
95                                              Small hairpin RNA-mediated knockdown of PYK2 blocks LTD,
96                                   Similarly, small hairpin RNA-mediated knockdown of rictor inhibited
97 that were either activated or repressed upon small hairpin RNA-mediated reduction of COBRA1.
98                                    Likewise, small hairpin RNA-mediated silencing of adipose tissue t
99                                              Small hairpin RNA-mediated silencing of Ccdc80 in 3T3-L1
100                                              Small hairpin RNA-mediated silencing of DLC1 was insuffi
101 d-type PTEN or dominant-negative PI3K; or by small hairpin RNA-mediated silencing of mTORC1/2 subunit
102                                              Small hairpin RNA-mediated silencing of p38alpha or p38g
103                      Both overexpression and small hairpin RNA-mediated suppression of RhoGDI strongl
104 n cultured WT and mutant Htt striatal cells, small hairpin RNA-mediated TORC1 knockdown resulted in d
105 CBL-1 cells, sustained vFLIP expression with small hairpin RNAs-mediated vCyclin depletion resulted i
106 completely dependent on FATP1 expression, as small-hairpin RNA-mediated knock down of FATP1 abrogated
107                                     In vitro small-hairpin-RNA-mediated knockdown of Rab39b resulted
108 -alpha36 expression in these cells using the small hairpin RNA method diminished their responsiveness
109 rough the use of a dominant-negative mutant, small hairpin RNA or a small molecule inhibitor in NF2-d
110     We demonstrate that c-Myc suppression by small hairpin RNA or pharmacologic approaches prevents l
111    Genetic inhibition of Runx1 expression by small hairpin RNA or pharmacological inhibition of Runx1
112 emonstrate that the inhibition of GD3S using small hairpin RNA or triptolide compromises the initiati
113  suppression of BCL6 by two independent BCL6 small hairpin RNAs or by prolactin.
114     Expression of KLF5 was knocked down with small hairpin RNAs or CRISPR/Cas9 strategies; cells were
115       MFSD2A was knocked down in HIMECs with small hairpin RNAs or overexpressed from a lentiviral ve
116 o and in vivo inhibition of NADK with either small-hairpin RNA or thionicotinamide inhibited prolifer
117 y a small molecule inhibitor, JSI-124, STAT3 small hairpin RNAs, or dominant negative STAT3 resulted
118           Reducing Gadd45gamma expression by small hairpin RNAs partially enhanced paclitaxel resista
119                   CHOP silencing by specific small hairpin RNA prevented lopinavir- and ritonavir-ind
120 knocking down expression of these genes with small hairpin RNA promoted cell invasion and migration i
121 minant-negative mutant or lentivirus-encoded small hairpin RNA promotes generation of insulin-positiv
122                   Knockdown of PLCbeta1 with small hairpin RNA reduced both store-operated PLC activi
123 ogenous PIAS3 protein using a specific PIAS3 small hairpin RNA reduced the augmentation of Zimp7 on A
124 infection of CLL cells with lentiviral STAT3-small hairpin RNA reduced the expression of several STAT
125            A reduction of TRIM expression by small hairpin RNAs reduced the expression of surface CTL
126                                     Ad-Nor-1(small hairpin RNA) reduced the hepatocyte proliferation
127    Knockdown of p50 expression with specific small hairpin RNAs reduces HDAC1 binding to the latent H
128 atlastin-1 expression in these neurons using small hairpin RNAs reduces the number of neuronal proces
129 es, whereas knockdown of BAD expression with small hairpin RNA rendered cells insensitive to apoptosi
130 Conversely, suppression of beta-catenin with small hairpin RNAs restored plasma cell sensitivity to l
131  survivin expression by lentivirus-delivered small hairpin RNA resulted in loss of cell proliferation
132 show that silencing of Gal-3 expression with small hairpin RNA results in a loss of tumorigenic and m
133 al cell line Madin-Darby canine kidney II by small hairpin RNA results in defects in tight junction f
134             Targeted depletion of NRP2 using small hairpin RNA revealed that NRP2 can function in the
135  cultured hippocampal neurons with septin 11 small hairpin RNAs showed (i) reduced dendritic arboriza
136                    We performed whole-genome small hairpin RNA (shRNA) "dropout screens" on 77 breast
137       Lentiviral-mediated delivery of Sema6A small hairpin RNA (shRNA) abrogates the defective retina
138   By contrast, downregulation of SUMO1 using small hairpin RNA (shRNA) accelerated pressure-overload-
139  lentiviral plasmids (pLK0.1puro) generating small hairpin RNA (shRNA) against CXCR1 mRNA.
140                       Knockdown of Rab22 via small hairpin RNA (shRNA) blocks NGF-induced pTrkA endoc
141      Independently, depletion of vimentin by small hairpin RNA (shRNA) completely inhibited beta3AR-m
142  of TAZ expression using specific lentivirus small hairpin RNA (shRNA) decreased TAZ mRNA by 80% and
143 116 p53+/+ cell line stably transfected with small hairpin RNA (shRNA) designed to specifically inhib
144                                   Adenoviral small hairpin RNA (shRNA) for TORC2 reduced PGC-1alpha e
145                Inhibiting PUMA expression by small hairpin RNA (shRNA) impairs gefitinib-induced apop
146  profound growth inhibition induced by c-Myc small hairpin RNA (shRNA) implied their c-Myc addiction.
147 ch to ablate plexin-A1 gene expression using small hairpin RNA (shRNA) in primary bone marrow-derived
148 thermore, reduction of the level of SEL1L by small hairpin RNA (shRNA) inhibits the degradation of a
149                                              Small hairpin RNA (shRNA) is a powerful tool for inhibit
150 on of beta-catenin-mediated transcription or small hairpin RNA (shRNA) knockdown of beta-catenin decr
151 ining HIV latency was investigated following small hairpin RNA (shRNA) knockdown of the NELF-E subuni
152                                          The small hairpin RNA (shRNA) knockdown of Trask results in
153     Either silencing of Ikaros expression by small hairpin RNA (shRNA) knockdown or ectopic expressio
154          Depletion of TACC3 from cells using small hairpin RNA (shRNA) knockdown or small-molecule ta
155 duction of Tert, via suppression of Nanog by small hairpin RNA (shRNA) knockdown, or via enforced exp
156                            We prepared 3,686 small hairpin RNA (shRNA) lentiviruses targeting 734 kin
157 a loss-of-function screen using an inducible small hairpin RNA (shRNA) library in an alveolar and an
158 ee HNSCC cell lines expressing a genome-wide small hairpin RNA (shRNA) library were treated with AZ80
159 tify drivers of vascular invasion by panning small hairpin RNA (shRNA) library-transduced noninvasive
160 prostate cancer cells, which is abrogated by small hairpin RNA (shRNA) or the dominant-negative mutan
161 ypoxic tumor environment, transformed with a small hairpin RNA (shRNA) plasmid against the immunosupp
162 at silencing Survivin by lentiviral-mediated small hairpin RNA (shRNA) represses IGF-I-stimulated cel
163                         Here, we conducted a small hairpin RNA (shRNA) screen of the phosphatome and
164 rtex-rich isolated blebs, and a localization/small hairpin RNA (shRNA) screen searching for phenotype
165                           We used an in vivo small hairpin RNA (shRNA) screening approach to identify
166 breast (T47D) cancer cells by DNMT1-specific small hairpin RNA (shRNA) targeting.
167      When vimentin expression is silenced by small hairpin RNA (shRNA) to reduce vimentin by 90%, the
168                                          Bim small hairpin RNA (shRNA) was shown to attenuate caspase
169 Ewing sarcoma cell lines using DDX3-specific small hairpin RNA (shRNA), and assessed oncogenic activi
170 of which was stably transfected to express a small hairpin RNA (shRNA), which gives rise to siRNA tha
171                                        Using small hairpin RNA (shRNA), which was validated in cultur
172 irms the potential therapeutic effect of AAV-small hairpin RNA (shRNA)-Atp6i/TIRC7.
173 throid maturation and/or function, we used a small hairpin RNA (shRNA)-based loss-of-function strateg
174                                              Small hairpin RNA (shRNA)-mediated CD63 downregulation e
175                                    Moreover, small hairpin RNA (shRNA)-mediated depletion of Tet2 in
176                 Pharmacologic inhibition and small hairpin RNA (shRNA)-mediated knockdown of Hsc70 im
177 ession of I-kappaBalpha superrepressor or by small hairpin RNA (shRNA)-mediated knockdown of p65/RelA
178                                              Small hairpin RNA (shRNA)-mediated knockdown of PP2Cm re
179 alpha-induced RelB expression and lentiviral small hairpin RNA (shRNA)-mediated knockdown of RelB, bu
180 ucts expressing tetracycline (TET)-inducible small hairpin RNA (shRNA).
181 elium-specific expression of stanniocalcin-1 small hairpin RNA (shRNA).
182 ting multiple testing plasmids which express small hairpin RNAs (shRNA) targeting different regions o
183                      We encoded promoterless small-hairpin RNA (shRNA) within the intron of a recombi
184  inducible expression of transgenes encoding small hairpin RNAs (shRNAs) against Anln messenger RNA a
185           The process of how Dicer substrate small hairpin RNAs (shRNAs) are loaded into different ma
186                                              Small hairpin RNAs (shRNAs) having duplex lengths of 25-
187 t concern when applying siRNAs or expressing small hairpin RNAs (shRNAs) in human cells is activation
188 ate erythropoiesis and that its depletion by small hairpin RNAs (shRNAs) inhibits the maturation of l
189  To ensure the success of RNAi therapeutics, small hairpin RNAs (shRNAs) must co-opt sufficient quant
190                         In this study, using small hairpin RNAs (shRNAs) or PKC inhibitor, we show th
191 t that synemin down-regulation with specific small hairpin RNAs (shRNAs) sharply decreased the migrat
192                     We screened a library of small hairpin RNAs (shRNAs) targeting 500 protein kinase
193             By screening a custom library of small hairpin RNAs (shRNAs) targeting known chromatin re
194 ible retroviral vector for the expression of small hairpin RNAs (shRNAs) to construct a library targe
195  relevant system, we expressed exon-specific small hairpin RNAs (shRNAs) to selectively knockdown spe
196 ng L1 retrotransposition, we first generated small hairpin RNAs (shRNAs) to suppress endogenous A3 mR
197                    In this study we utilized small hairpin RNAs (shRNAs), also referred to as small i
198       The use of polIII promoters to express small hairpin RNAs (shRNAs), combined with the versatili
199 OS2 cells depleted of p107 and p130 by using small hairpin RNAs (shRNAs), WT TAg still mediated Akt p
200 eceptor antagonists and adenovirus delivered small hairpin RNAs (shRNAs).
201  reduced levels of CypA in these cells using small hairpin RNAs (shRNAs).
202 -Met inhibitor XL184 or c-Met knockdown with small hairpin RNAs significantly inhibited tumor sphere
203                   Significantly, using Hic-5 small hairpin RNA silencing and overexpression systems,
204        Receptor candidates were evaluated by small hairpin RNA silencing in HepaRG cells; the ability
205 nc-1 cells increased, whereas adrenomedullin small hairpin RNA silencing in MPanc96 cells inhibited t
206                                              Small hairpin RNA silencing of ADMR in pancreatic cancer
207                          Lentiviral-mediated small-hairpin RNA silencing of endogenous Hic-5 reduced
208                 We show that the SP-C-driven small hairpin RNAs specifically depress the expression o
209 to short oligonucleotides and also cleaves a small hairpin RNA substrate.
210 NK1/2 activities with chemical inhibitors or small hairpin RNA, suggesting that TSC1 negatively contr
211 trast, transfection of MC3T3 cells with ALK3 small hairpin RNA suppressed Smad signaling induced by a
212                                              Small hairpin RNA targeted knock-down of TNKS1 enhanced
213                          Pharmacological and small hairpin RNA-targeted inhibition of cathepsin B att
214 , using a lentivirus with a silencing shRNA (small hairpin RNA targeting A2AR (shA2AR)), impaired fea
215 n adeno-associated virus vector expressing a small hairpin RNA targeting ERalpha.
216                          Here we show that a small hairpin RNA targeting the dominant mutant form of
217 escence, we conducted an unbiased screen for small hairpin RNAs that extend the life span of primary
218                               A panel of 100 small hairpin RNAs that target essential kinases in many
219 extinguishing TRAF6 expression with specific small-hairpin RNA that resulted in diminished spontaneou
220 in HEK293 cells stably transfected with CHD1 small hairpin RNA, these data suggest a causal relations
221 hibition of PP2A-B56alpha holoenzymes, using small hairpin RNA to knock down B56alpha, results in c-M
222 es were treated with GSI or vehicle and with small hairpin RNAs to reduce ATOH1.
223                       In this study, we used small-hairpin RNA to determine whether knockdown of CSQ1
224 e by synthetic small interfering RNAs and by small-hairpin RNAs transcribed in vivo from DNA template
225 ouse insulinoma 6 (MIN6) cells by delivering small hairpin RNAs using a lentiviral vector.
226                                         When small hairpin RNA was used to decrease XBP-1 expression
227                    Using lentivirus-mediated small hairpin RNA, we demonstrate that EB1, an adaptor p
228                 Using a lentivirus-delivered small hairpin RNA, we demonstrate that endogenous CPG15

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