首页> 外文期刊>American journal of medical genetics, Part A >The VACTERL Association as a disturbance of cell fate determination
【24h】

The VACTERL Association as a disturbance of cell fate determination

机译:VACTERL协会干扰了细胞命运的确定

获取原文
获取原文并翻译 | 示例
           

摘要

Cases diagnosed as the VACTERL Association are heterogeneous, and can involve other associations arising from different developmental processes with midline effects. However, these often lack the classic radial ray anomalies that help make VACTERL distinct. A more specific association can be delineated based on teratogenic disturbances affecting vulnerabilities associated with the establishment of cell fate through positional information, with two basic weaknesses: (i) The midline, where topological properties such as reduced lateral information should make information losses more likely; (ii) Increased distal sensitivity at the end of a morphogen gradient in the limbs, where both duplications and deficiencies can arise from similar disturbances. Vertebral, cardiac, anal-rectal, and tracheo-esophaeal findings are primary midline derivatives. While the kidneys are bilateral, they can be influenced by the midline, although there may also be effects on the ureteral buds as distal structures. The pre-axial area is the most distal in limb development, giving radial/tibial deficiencies and duplications. Alternatively, spina bifida and orofacial clefts originate from bilateral structures that are less likely to be affected by problems with midline determination, explaining the rarity of these disorders with VACTERL. Suggested human genetic models typically involve the midline, but lack radial findings, and true Mendelian forms are rare. However, developmental genes such as Sonic Hedgehog may have a pathogenetic role without being causal. (c) 2015 Wiley Periodicals, Inc.
机译:被诊断为VACTERL协会的病例是异类的,并且可能涉及因中线效应而由不同的发育过程引起的其他协会。但是,这些通常缺少经典的径向射线异常,这些异常使VACTERL与众不同。可以基于致畸干扰,通过位置信息影响与细胞命运建立相关的脆弱性,来描述更具体的关联,这有两个基本弱点:(i)中线,其中拓扑特性(例如减少的横向信息)应使信息丢失的可能性更大; (ii)四肢形态发生梯度结束时远端敏感性增加,四肢重复和缺乏可能源于类似的干扰。脊椎,心脏,肛门直肠和气管食管的发现是主要的中线导数。肾脏是双侧的,尽管中位线也可能对输尿管芽产生影响,但它们可能会受到中线的影响。前轴区域是四肢发育中最远端的区域,存在径向/胫骨缺陷和重复。另外,脊柱裂和颌面部裂痕起源于双侧结构,这些双侧结构不太可能受中线确定问题的影响,从而解释了VACTERL对这些疾病的罕见性。建议的人类遗传模型通常涉及中线,但缺乏放射状发现,真正的孟德尔形式很少见。但是,诸如Sonic Hedgehog之类的发育基因可能具有致病作用,而没有因果关系。 (c)2015年威利期刊有限公司

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