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新型骨形态发生蛋白(Bmp)-2调控等位基因的特征分析

Characterization of new bone morphogenetic protein (Bmp)-2 regulatory alleles.

作者信息

Shah Tapan A, Zhu Youhua, Shaikh Nadia N, Harris Marie A, Harris Stephen E, Rogers Melissa B

机构信息

Department of Microbiology, Biochemistry, and Molecular Genetics, Rutgers NJMS, Newark, New Jersey.

Department of Periodontics, University of Texas Health Science Centre, San Antonio, Texas.

出版信息

Genesis. 2017 Jul;55(7). doi: 10.1002/dvg.23035. Epub 2017 May 22.

Abstract

Bone morphogenetic protein 2 (BMP2, HGNC:1069, GeneID: 650) is a classical morphogen; a molecule that acts at a distance and whose concentration influences cell proliferation, differentiation, and apoptosis. Key events requiring precise Bmp2 regulation include heart specification and morphogenesis and neural development. In mesenchymal cells, the concentration of BMP2 influences myogenesis, adipogenesis, chondrogenesis, and osteogenesis. Because the amount, timing, and location of BMP2 synthesis influence pattern formation and organogenesis, the mechanisms that regulate Bmp2 are crucial. A sequence within the 3'UTR of the Bmp2 mRNA termed the "ultra-conserved sequence" (UCS) has been largely unchanged since fishes and mammals diverged. Cre-lox mediated deletion of the UCS in a reporter transgene revealed that the UCS may repress Bmp2 in proepicardium, epicardium, and epicardium-derived cells (EPDC) and in tissues with known epicardial contributions (coronary vessels and valves). The UCS also repressed the transgene in the aorta, outlet septum, posterior cardiac plexus, cardiac and extra-cardiac nerves, and neural ganglia. We used homologous recombination and conditional deletion to generate three new alleles in which the Bmp2 3'UTR was altered as follows: a UCS flanked by loxP sites with or without a neomycin resistance targeting vector, or a deleted UCS. Deletion of the UCS was associated with elevated Bmp2 mRNA and BMP signaling levels, reduced fitness, and embryonic malformations.

摘要

骨形态发生蛋白2(BMP2,HGNC编号:1069,基因ID:650)是一种经典的形态发生素;它是一种在远距离起作用的分子,其浓度会影响细胞增殖、分化和凋亡。需要精确调控Bmp2的关键事件包括心脏特化、形态发生和神经发育。在间充质细胞中,BMP2的浓度会影响肌生成、脂肪生成、软骨生成和成骨。由于BMP2合成的量、时间和位置会影响模式形成和器官发生,因此调节Bmp2的机制至关重要。自鱼类和哺乳动物分化以来,Bmp2 mRNA 3'UTR内的一段称为“超保守序列”(UCS)的序列基本未变。通过Cre-lox介导的报告转基因中UCS的缺失表明,UCS可能在原心外膜、心外膜和心外膜衍生细胞(EPDC)以及已知有心外膜贡献的组织(冠状血管和瓣膜)中抑制Bmp2。UCS在主动脉、流出道间隔、心脏后丛、心脏和心脏外神经以及神经节中也抑制转基因。我们使用同源重组和条件性缺失来产生三个新的等位基因,其中Bmp2 3'UTR发生了如下改变:带有或不带有新霉素抗性靶向载体的loxP位点侧翼的UCS,或缺失的UCS。UCS的缺失与Bmp2 mRNA和BMP信号水平升高、适应性降低和胚胎畸形有关。

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