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RTTN 突变将初级纤毛的功能与人类大脑皮层的组织联系起来。

RTTN mutations link primary cilia function to organization of the human cerebral cortex.

机构信息

Department of Clinical Genetics, Erasmus University Medical Center (Erasmus MC), P.O. Box 2040, 3000 CA Rotterdam, The Netherlands.

出版信息

Am J Hum Genet. 2012 Sep 7;91(3):533-40. doi: 10.1016/j.ajhg.2012.07.008. Epub 2012 Aug 30.

DOI:10.1016/j.ajhg.2012.07.008
PMID:22939636
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3511998/
Abstract

Polymicrogyria is a malformation of the developing cerebral cortex caused by abnormal organization and characterized by many small gyri and fusion of the outer molecular layer. We have identified autosomal-recessive mutations in RTTN, encoding Rotatin, in individuals with bilateral diffuse polymicrogyria from two separate families. Rotatin determines early embryonic axial rotation, as well as anteroposterior and dorsoventral patterning in the mouse. Human Rotatin has recently been identified as a centrosome-associated protein. The Drosophila melanogaster homolog of Rotatin, Ana3, is needed for structural integrity of centrioles and basal bodies and maintenance of sensory neurons. We show that Rotatin colocalizes with the basal bodies at the primary cilium. Cultured fibroblasts from affected individuals have structural abnormalities of the cilia and exhibit downregulation of BMP4, WNT5A, and WNT2B, which are key regulators of cortical patterning and are expressed at the cortical hem, the cortex-organizing center that gives rise to Cajal-Retzius (CR) neurons. Interestingly, we have shown that in mouse embryos, Rotatin colocalizes with CR neurons at the subpial marginal zone. Knockdown experiments in human fibroblasts and neural stem cells confirm a role for RTTN in cilia structure and function. RTTN mutations therefore link aberrant ciliary function to abnormal development and organization of the cortex in human individuals.

摘要

脑回细小畸形是一种由于发育中的大脑皮层组织异常而导致的畸形,其特征是存在许多小的脑回和外分子层融合。我们在两个不同的家族中,发现了双侧弥漫性脑回细小畸形患者的 RTTN 基因(编码 Rotatin)存在常染色体隐性突变。Rotatin 决定了早期胚胎的轴向旋转,以及小鼠的前后和背腹模式形成。最近,人类 Rotatin 被鉴定为中心体相关蛋白。果蝇同源物 Rotatin 的 Ana3 对于中心体和基体的结构完整性以及感觉神经元的维持是必需的。我们发现 Rotatin 与初级纤毛的基体共定位。受影响个体的培养成纤维细胞的纤毛结构异常,并表现出 BMP4、WNT5A 和 WNT2B 的下调,这些基因是皮质模式形成的关键调节剂,并且在皮质边缘带(即产生 Cajal-Retzius(CR)神经元的皮质组织中心)表达。有趣的是,我们已经表明,在小鼠胚胎中,Rotatin 与位于软脑膜边缘带的 CR 神经元共定位。在人成纤维细胞和神经干细胞中的敲低实验证实了 RTTN 在纤毛结构和功能中的作用。因此,RTTN 突变将异常纤毛功能与人类个体中皮质的异常发育和组织联系起来。

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