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3'UTR 依赖性、miR-92 介导的 Tis21 表达限制维持不对称神经干细胞分裂,以确保适当的新皮层大小。

3' UTR-dependent, miR-92-mediated restriction of Tis21 expression maintains asymmetric neural stem cell division to ensure proper neocortex size.

机构信息

Max Planck Institute of Molecular Cell Biology and Genetics, Pfotenhauerstrasse 108, 01307 Dresden, Germany.

Max Planck Institute of Molecular Cell Biology and Genetics, Pfotenhauerstrasse 108, 01307 Dresden, Germany.

出版信息

Cell Rep. 2014 Apr 24;7(2):398-411. doi: 10.1016/j.celrep.2014.03.033. Epub 2014 Apr 13.

Abstract

Mammalian neocortex size primarily reflects the number and mode of divisions of neural stem and progenitor cells. Cortical stem cells (apical progenitors) switching from symmetric divisions, which expand their population, to asymmetric divisions, which generate downstream neuronal progenitors (basal progenitors), start expressing Tis21, a so-called antiproliferative/prodifferentiative gene. Tis21 encodes a small (17.5 kDa), functionally poorly characterized protein and a relatively large (2 kb), highly conserved 3' UTR. Here, we show that mice lacking the Tis21 3' UTR develop a microcephalic neocortex with fewer neurons, notably in the upper layers. This reflects a progressive decrease in basal progenitors, which in turn is due to a fraction of apical progenitors prematurely switching from asymmetric self-renewing to symmetric self-consuming divisions. This switch is caused by the markedly increased Tis21 protein level resulting from lack of microRNA-, notably miR-92-, dependent restriction of Tis21 expression. Our data show that a premature onset of consumptive neural stem cell divisions can lead to microcephaly.

摘要

哺乳动物新皮层的大小主要反映了神经干细胞和祖细胞的分裂数量和模式。皮质干细胞(顶端祖细胞)从对称分裂切换为不对称分裂,后者产生下游神经元祖细胞(基底祖细胞),开始表达 Tis21,这是一种所谓的抗增殖/促分化基因。Tis21 编码一种小的(17.5 kDa)、功能特征不明确的蛋白质和相对较大的(2 kb)、高度保守的 3' UTR。在这里,我们表明缺乏 Tis21 3' UTR 的小鼠发育出一个小头的新皮层,其神经元数量减少,尤其是在上层。这反映了基底祖细胞的逐渐减少,而这反过来又是由于一部分顶端祖细胞过早地从不对称的自我更新分裂切换为对称的自我消耗分裂。这种转变是由于 Tis21 蛋白水平的显著增加引起的,这是由于缺乏 microRNA,特别是 miR-92,对 Tis21 表达的限制。我们的数据表明,消耗性神经干细胞分裂的过早发生可能导致小头畸形。

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