首页> 外文期刊>Journal de la Societe de biologie >Cis-ruptions d'elements genomiques hautement conserves non codants a distance du gene SOX9 dans la sequence de Pierre Robin
【24h】

Cis-ruptions d'elements genomiques hautement conserves non codants a distance du gene SOX9 dans la sequence de Pierre Robin

机译:Pierre Robin序列中距SOX9基因一定距离的高度保守的非编码基因组元件的顺式断裂

获取原文
获取原文并翻译 | 示例
           

摘要

Cis-ruptions of highly conserved non-coding genomic elements distant from the SOX9 gene in the Pierre Robin sequence. Major developmental genes, exhibiting complex expression patterns, are often embedded within a genie desert particularly rich in regions, which though non-coding are highly conserved. The developmental expression of these genes in many areas requires coordinated regulation in time and space, which is orchestrated by some of these conserved non-coding regions, acting as transcriptional regulators. SOX9 is an essential gene for many developmental processes, such as chondrogenesis, migration and differentiation of neural crest cells and testis development. In agreement with these major expression areas, SOX9 haploinsufficiency, linked to alterations in coding sequence, leads to a polymorphic malformation syndrome - campomelic dysplasia -whose major symptoms are a bone anomaly, a Pierre Robin sequence, and a sexual differentiation anomaly (Disorder of Sex Development, DSD). SOX9 is located in a approx2.5 Mb gene desert extremely rich in conserved sequences. We have used the SOX9 locus and campomelic dysplasia as a model to show that one or several endophenotypes within a complex syndrome may arise from a tissue-specific deregulation of a major developmental gene transcription. Our work has focused on one of these endophenotypes, SPR, characterized by the triad micro- and/or retrognathy, glossoptosis and cleft palate. Here we report in detail how we identified alterations (translocations, deletions, point mutations) in non-coding regions, located far away (more than 1.2 Mb) upstream and downstream of SOX9, in clustered or sporadic SPR cases.
机译:Pierre Robin序列中远离SOX9基因的高度保守的非编码基因组元件的顺式断裂。表现出复杂表达模式的主要发育基因通常被嵌入到一个特别丰富的地区的精灵沙漠中,尽管这些地区的非编码性却非常保守。这些基因在许多区域的发育表达需要在时间和空间上进行协调调节,这由这些保守的非编码区中的一些作为转录调节剂进行协调。 SOX9是许多发育过程的必需基因,例如软骨形成,神经rest细胞的迁移和分化以及睾丸发育。与这些主要表达区域相一致,与编码序列的改变有关的SOX9单倍体不足会导致多态性畸形综合症-坎波型发育不良-其主要症状是骨骼异常,皮埃尔·罗宾序列和性别分化异常开发,DSD)。 SOX9位于一个约2.5 Mb的基因沙漠中,该沙漠中的保守序列极为丰富。我们已经使用SOX9基因座和Campomicic发育不良作为模型来显示复杂综合征中的一个或多个内表型可能是由于主要发育基因转录的组织特异性去调控而引起的。我们的工作集中在这些内表型之一,即SPR,其特征是三联征的微和/或逆行性,光泽度高和and裂。在这里,我们详细报告如何在成簇或零星的SPR案例中,在SOX9上游和下游(远大于1.2 Mb)的非编码区中识别出变化(易位,缺失,点突变)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号