[初级纤毛和刺猬信号]。

Q4 Medicine
No To Hattatsu Pub Date : 2015-07-01
Katsunori Fujii
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引用次数: 0

摘要

初级纤毛是几乎所有脊椎动物细胞表面突出的一种不动的细胞器。初级纤毛内的许多分子协同起着关键作用,因此这些成分的遗传缺陷导致脑、眼、肝、肾和骨骼的各种先天性畸形。刺猬信号是一个高度保守的调控早期发育和肿瘤发生的途径。近年来,先进的分子生物学研究发现,hedgehog信号的组成部分PTCH1、SMO和GLI等通过与hedgehog蛋白的配体结合,特异性地在初级纤毛内转运,并将生物生长信号从细胞表面转导到细胞核。初级纤毛成分单倍性不足会抑制hedgehog通路,导致腹侧神经管缺陷等发育异常。由于刺猬依赖通路对脊椎动物的发育至关重要,因此阐明刺猬相关蛋白在初级纤毛中的功能作用至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Primary cilia and hedgehog signaling].

The primary cilium is an immotile organelle protruding from the cell surface in almost all vertebrate cells. Many molecules inside the primary cilia coordinately play a pivotal role, so genetic defects of these components result in diverse congenital malformations of the brain, eye, liver, kidney, and skeleton. Hedgehog signaling is a highly conserved pathway regulating morphogenesis in early development and tumorigenesis postnatally. Recently, advanced molecular biology has revealed that components of hedgehog signaling such as PTCH1, SMO, and GLI specifically translocate within the primary cilium upon the ligand binding of the hedgehog protein, and transduce the biological growth signal from the cell surface to the nucleus. Haploinsufficiency of the components in the primary cilium would inhibit the hedgehog pathway, resulting in developmental anomalies like ventral neural tube defects. Since the hedgehog-dependent pathway is critical for vertebrate development, it is crucial to elucidate the functional roles of hedgehog-related proteins in the primary cilium.

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No To Hattatsu
No To Hattatsu Medicine-Pediatrics, Perinatology and Child Health
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