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2 ice that were genetically altered to produce osteoblast-specific, activated PTH/PTHrP receptors (PPRs
4 steoblasts abolishes the binding of OSF2, an osteoblast-specific activator of transcription that bind
6 er, multimers of this OSE2 at -1347bp confer osteoblast-specific activity to a minimum alpha1(I) coll
7 timers of this alpha2(I) OSE2 element confer osteoblast-specific activity to the minimum alpha1(I) co
9 To address this mechanism, we generated late-osteoblast-specific and osteocyte-specific WNT1 loss- an
11 generation and analysis of chondrocyte- and osteoblast-specific Bmp2 conditional knockout (cKO) mice
12 subunit in osteoblasts in vivo, we generated osteoblast-specific Capn4 knock-out mice using the Cre-L
14 ly of transcription factors that binds to an osteoblast-specific cis-acting element (OSE2) activating
16 transcription that binds to OSE2, a critical osteoblast-specific cis-acting element present in OG1 an
18 is study indicates the existence of multiple osteoblast-specific cis-acting elements of equal importa
19 two mouse osteocalcin genes, identified two osteoblast-specific cis-acting elements, OSE1 and OSE2,
20 aPPR), whose expression was regulated by the osteoblast-specific Col1a1 promoter (Col1a1-caPPR), supp
21 blasts from Col-luc transgenic mice carrying osteoblast-specific Col1alpha1 promoter reporter, lucife
27 es still exist because of the lack of direct osteoblast-specific delivery systems for osteogenic siRN
28 oximal OSE2 element is critical to confer an osteoblast-specific, developmentally regulated pattern o
29 Although Lrp5 is viewed as a Wnt coreceptor, osteoblast-specific disruption of beta-Catenin does not
30 ng bone remodeling, we generated a postnatal osteoblast-specific disruption of Bmpr1a that encodes th
32 sence of 12 putative Cbfa1 binding elements (osteoblast-specific element 2 (OSE(2))), suggesting a po
33 Cbfa1-binding site (-248 base pairs) termed osteoblast-specific element 2 (OSE2) decreased ameloblas
34 to -113, the OCFRE is juxtaposed to OSE2, an osteoblast-specific element that binds Runx2 (Osf2, Cbfa
35 e data represent the first description of an osteoblast-specific element within the bone sialoprotein
39 sis mapped the PC1-responsive region to the "osteoblast-specific" enhancer element between -420 and -
41 fa1 is one of the positive regulators of the osteoblast-specific expression of both type I collagen g
42 -acting element as important as OSE2 for the osteoblast-specific expression of OG2 in cell culture an
45 rated that TNF-alpha enhanced DNA binding of osteoblast specific factor (Osf2), AP1, and CREB, transc
47 Periostin was originally identified as an osteoblast-specific factor and is highly expressed in th
55 struct encoding p204 antisense RNA inhibited osteoblast-specific gene activation by Cbfa1 in an osteo
57 ivation and reduced its ability to stimulate osteoblast-specific gene expression and differentiation
58 LCMV and PVM infections resulted in reduced osteoblast-specific gene expression in bone, loss of ost
59 Runx2 and Osterix, has the ability to induce osteoblast-specific gene expression in non-osteoblastic
60 displayed enhanced osteogenic potential and osteoblast-specific gene expression in vitro and in vivo
61 t the skeleton early during development, and osteoblast-specific gene expression occurs only after th
62 anscription factor, TFIIA gamma, facilitates osteoblast-specific gene expression through interactions
64 - and NH(2)-terminated surfaces up-regulated osteoblast-specific gene expression, alkaline phosphatas
65 Atf4 in non-osteoblastic cells would lead to osteoblast-specific gene expression, one of the most imp
75 nce to the promoter for osteocalcin, another osteoblast-specific gene with a loss-of-function phenoty
80 complexes containing the BRM ATPase repress osteoblast-specific genes to maintain the precursor stat
85 ass in Lrp5-deficient mice, and gut- but not osteoblast-specific Lrp5 inactivation decreases bone for
86 ptors, Bmpr1a and Acvr1, respectively, in an osteoblast-specific manner, increased bone mass in mice.
87 abecular bone and/or stromal cells increases osteoblast-specific marker expression in hyperactive Gja
89 ontributed to the up-regulated expression of osteoblast-specific markers (e.g., Bsp and Ocn) in Gja1(
91 igated the role of IL-3 on the regulation of osteoblast-specific molecules, receptor activator of NF-
92 e the role of osteocalcin, the most abundant osteoblast-specific non-collagenous protein, we have gen
93 tions between ATF4 and Runx2/Cbfa1 stimulate osteoblast-specific Ocn expression and suggests that thi
94 on of the Adar1 gene decreased expression of osteoblast-specific osteocalcin and bone sialoprotein ge
95 homeoprotein, which is able to regulate the osteoblast-specific osteocalcin promoter, can bind this
99 ion and repression of the Runx2 gene via its osteoblast-specific P1 promoter (encoding mRNA for the R
100 tions observed in mice heterozygous for both osteoblast-specific Pdk1 deletion and either Runx2 or Cr
101 capitulation of RTS spectrum phenotypes with osteoblast-specific Pdk1 deletion in mice (Pdk1osx mice)
104 ly via macropinocytosis, and boosted in vivo osteoblast-specific Plekho1 gene silencing, which promot
105 scription factor, CBFA1, and associates with osteoblast-specific promoters in vivo in a CBFA1-depende
106 tic cells alters transcriptional activity of osteoblast-specific promoters, presumably via modulation
108 A segment that abolished the binding of this osteoblast-specific protein also abolished lacZ expressi
110 2 and MINT both target an information-dense, osteoblast-specific regulatory region of the OC proximal
113 decreases the bioactivity of osteocalcin, an osteoblast-specific secreted molecule that enhances secr
114 rBMPR-IB also blocked mRNA expression of the osteoblast specific transcription factor, Osf2/ Cbfa1, a
115 a 3/polyoma enhancer-binding protein 2alphaA/osteoblast-specific transcription factor 2 regulates ost
119 eam signaling molecules Smad1 and -5 and the osteoblast-specific transcription factor core-binding fa
120 stent with an observed downregulation of the osteoblast-specific transcription factor core-binding fa
122 er being the binding site of Cbfa1, the only osteoblast-specific transcription factor known to date.
127 that Foxo1 is a novel negative regulator of osteoblast-specific transcription factor Runx2 and modul
128 consensus sequences which bound CREB and the osteoblast-specific transcription factor Runx2, and when
129 urf1 mediates the protein degradation of the osteoblast-specific transcription factor Runx2/Cbfa1.
134 o demonstrate that phosphorylation of Cbfa1 (osteoblast-specific transcription factor) was not requir
136 xpression of core binding factor alpha-1, an osteoblast-specific transcription factor, increased in p
141 g site is a regulatory element important for osteoblast-specific transcriptional activation of the rO
142 tagenesis established that both sites act as osteoblast-specific transcriptional enhancers and togeth
145 ne development and homeostasis, we generated osteoblast-specific Wls-deficient (Ocn-Cre;Wls-flox) mic
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