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本文引用的文献

1
Guidelines for assessment of bone microstructure in rodents using micro-computed tomography.骨组织形态计量学分析的鼠类骨骼microCT 评估指南
J Bone Miner Res. 2010 Jul;25(7):1468-86. doi: 10.1002/jbmr.141.
2
HES1 and HES5 are dispensable for cartilage and endochondral bone formation.HES1 和 HES5 对于软骨和软骨内骨形成是可有可无的。
Cells Tissues Organs. 2010;192(1):17-27. doi: 10.1159/000280416. Epub 2010 Feb 4.
3
Notch and the skeleton.Notch 与骨骼。
Mol Cell Biol. 2010 Feb;30(4):886-96. doi: 10.1128/MCB.01285-09. Epub 2009 Dec 7.
4
Direct inhibition of the NOTCH transcription factor complex.直接抑制 NOTCH 转录因子复合物。
Nature. 2009 Nov 12;462(7270):182-8. doi: 10.1038/nature08543.
5
The Notch-responsive transcription factor Hes-1 attenuates osteocalcin promoter activity in osteoblastic cells.Notch反应性转录因子Hes-1减弱成骨细胞中骨钙素启动子的活性。
J Cell Biochem. 2009 Oct 15;108(3):651-9. doi: 10.1002/jcb.22299.
6
Notch pathway regulation of chondrocyte differentiation and proliferation during appendicular and axial skeleton development.Notch信号通路在附肢和中轴骨骼发育过程中对软骨细胞分化和增殖的调控
Proc Natl Acad Sci U S A. 2009 Aug 25;106(34):14420-5. doi: 10.1073/pnas.0902306106. Epub 2009 Jul 9.
7
Repression of chondrogenesis through binding of notch signaling proteins HES-1 and HEY-1 to N-box domains in the COL2A1 enhancer site.通过Notch信号蛋白HES-1和HEY-1与COL2A1增强子位点的N-box结构域结合来抑制软骨形成。
Arthritis Rheum. 2008 Sep;58(9):2754-63. doi: 10.1002/art.23730.
8
Connective tissue growth factor enhances osteoblastogenesis in vitro.结缔组织生长因子在体外增强成骨细胞生成。
J Biol Chem. 2008 Aug 15;283(33):22690-9. doi: 10.1074/jbc.M710140200. Epub 2008 Jun 25.
9
Hes genes and neurogenin regulate non-neural versus neural fate specification in the dorsal telencephalic midline.Hes基因和神经生成素调节端脑背侧中线处的非神经与神经命运特化。
Development. 2008 Aug;135(15):2531-41. doi: 10.1242/dev.021535. Epub 2008 Jun 25.
10
Notch signaling in osteoblasts.成骨细胞中的Notch信号通路。
Sci Signal. 2008 Apr 29;1(17):pe17. doi: 10.1126/stke.117pe17.

HES1(头发和分裂增强子 1)是骨量的决定因素。

HES1 (hairy and enhancer of split 1) is a determinant of bone mass.

机构信息

Department of Research, Saint Francis Hospital and Medical Center, Hartford, Connecticut 06105, USA.

出版信息

J Biol Chem. 2011 Jan 28;286(4):2648-57. doi: 10.1074/jbc.M110.183038. Epub 2010 Nov 17.

DOI:10.1074/jbc.M110.183038
PMID:21084301
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3024760/
Abstract

HES1 (hairy and enhancer of split) is a transcription factor that regulates osteoblastogenesis in vitro. The skeletal effects of HES1 misexpression were studied. Transgenic mice where a 3.6-kilobase fragment of the collagen type 1 α1 promoter directs HES1 overexpression were created. Transgenics were osteopenic due to decreased osteoblast function in female and increased bone resorption in male mice. HES1 impaired osteoblastogenesis in vitro, and transgenic osteoblasts enhanced the resorptive activity of co-cultured osteoclast precursors. Mice homozygous for a Hes1 loxP-targeted allele were bred to transgenics, where the paired-related homeobox gene enhancer or the osteocalcin promoter direct Cre recombinase expression to inactivate Hes1 in the limb bud or in osteoblasts. To avoid genetic compensation, Hes1 was inactivated in the context of the global deletion of Hes3 and Hes5. Hes3 and Hes5 null mice had no skeletal phenotype. Hes1 inactivation in the limb bud increased femoral length and trabecular number. Hes1 inactivation in osteoblasts increased trabecular bone volume, number, and connectivity due to increased mineral apposition rate and suppressed bone resorption. Hes1 inactivation in vitro increased alkaline phosphatase expression and suppressed the resorptive activity of co-cultured osteoclast precursors. In conclusion, by inhibiting osteoblast function and inducing bone resorption, HES1 is an intracellular determinant of bone mass and structure.

摘要

HES1(毛发和分裂增强子)是一种转录因子,可调节体外成骨细胞的生成。研究了 HES1 过表达的骨骼效应。创建了一种转基因小鼠,其中胶原类型 1α1 启动子的 3.6 千碱基片段指导 HES1 过表达。由于雌性小鼠成骨细胞功能下降和雄性小鼠骨吸收增加,转基因小鼠出现骨质疏松症。HES1 可体外抑制成骨细胞生成,并且转基因成骨细胞增强了共培养的破骨细胞前体的吸收活性。将具有 Hes1 loxP 靶向等位基因的纯合子小鼠与转基因小鼠交配,其中成对相关同源盒基因增强子或骨钙蛋白启动子指导 Cre 重组酶表达,以在肢芽或成骨细胞中失活 Hes1。为避免遗传补偿,在 Hes3 和 Hes5 全局缺失的背景下失活 Hes1。Hes3 和 Hes5 缺失小鼠没有骨骼表型。Hes1 在肢芽中的失活增加了股骨长度和小梁数量。由于矿化率增加和骨吸收受到抑制,Hes1 在成骨细胞中的失活增加了小梁骨体积、数量和连通性。HES1 在体外失活增加碱性磷酸酶表达并抑制共培养的破骨细胞前体的吸收活性。总之,通过抑制成骨细胞功能和诱导骨吸收,HES1 是骨量和结构的细胞内决定因素。