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The Role of Shox2 in SAN Development and Function

机译:Shox2在SAN开发和功能中的作用

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摘要

Embryonic development is a tightly regulated process, and many families of genes functions to provide a regulatory genetic network to achieve such a program. The homeobox genes are an extensive family that encodes transcription factors with a characteristic 60-amino acid homeodomain. Mutations in these genes or in the encoded proteins might result in structural malformations, physiological defects, and even embryonic death. Mutations in the short-stature homeobox gene (SHOX) is associated with idiopathic short stature in humans, as observed in patients with Turner syndrome and/or Leri-Weill dyschondrosteosis. A closely related human homolog, SHOX2, has not been linked to any syndrome or defect so far. In mice, a SHOX ortholog gene is not present in the genome; however, a true SHOX2 ortholog has been identified. Analyses of Shox2 knockout mouse models have showed crucial functions during embryonic development, including limb skeletogenesis, palatogenesis, temporomandibular joint formation, and cardiovascular development. During embryonic cardiac development, Shox2 is restrictedly expressed in the sinus venosus region, including the sinoatrial node (SAN) and the sinus valves. Shox2 null mutant is embryonically lethal due to cardiovascular defects, including a severely hypoplastic SAN and sinus valves attributed to a significantly decreased level of cell proliferation in addition to an abnormal low heartbeat rate (bradycardia). In addition, it has been demonstrated that Shox2 regulates a genetic network through the repression of Nkx2.5 to maintain the SAN fate and thus plays essential roles in its proper formation and differentiation.
机译:胚胎发育是一个严格调控的过程,许多基因家族发挥作用以提供一个调控性遗传网络来实现这种程序。同源盒基因是一个广泛的家族,其编码具有特征性的60个氨基酸的同源域的转录因子。这些基因或编码蛋白中的突变可能导致结构畸形,生理缺陷甚至胚胎死亡。正如特纳综合征和/或Leri-Weill软骨异常患者所观察到的那样,矮小同源盒基因(SHOX)的突变与人类特发性矮小相关。到目前为止,人类同源基因SHOX2尚未与任何综合征或缺陷相关。在小鼠中,SHOX直系同源基因不存在于基因组中。但是,已经确定了真正的SHOX2直系同源物。 Shox2基因敲除小鼠模型的分析显示了胚胎发育过程中的关键功能,包括肢体骨骼生成,pa骨形成,颞下颌关节形成和心血管发育。在胚胎心脏发育过程中,Shox2在窦静脉区域(包括窦房结(SAN)和窦瓣)中表达受限。 Shox2 null突变体由于心血管缺陷而在胚胎方面具有致死性,包括严重的增生性SAN和窦瓣膜,这归因于异常低的心跳率(心动过缓)以及明显的细胞增殖水平降低。另外,已经证实Shox2通过抑制Nkx2.5来调节遗传网络以维持SAN的命运,因此在其正确形成和分化中起着至关重要的作用。

著录项

  • 来源
    《Pediatric Cardiology 》 |2012年第6期| p.882-889| 共8页
  • 作者单位

    Department of Cell and Molecular Biology, Tulane University, New Orleans, LA, 70118, USA;

    Division of Cardiology, Children’s Hospital Boston, Harvard Medical School, Boston, MA, 21115, USA;

    Department of Cell and Molecular Biology, Tulane University, New Orleans, LA, 70118, USA;

    College of Life Science, Fujian Normal University, Fuzhou, Fujian Province, 350108, People’s Republic of China;

    College of Life Science, Fujian Normal University, Fuzhou, Fujian Province, 350108, People’s Republic of China;

    Department of Cell and Molecular Biology, Tulane University, New Orleans, LA, 70118, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Shox2; SAN; Pacemaker; Development; Mouse;

    机译:Shox2;SAN;Pacemaker;开发;鼠标;

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