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果蝇生殖系中Nanos对母体细胞周期蛋白B mRNA的翻译调控。

Translational control of maternal Cyclin B mRNA by Nanos in the Drosophila germline.

作者信息

Kadyrova Lyudmila Y, Habara Yasuaki, Lee Tammy H, Wharton Robin P

机构信息

Howard Hughes Medical Institute, Department of Molecular Genetics and Microbiology, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Development. 2007 Apr;134(8):1519-27. doi: 10.1242/dev.002212. Epub 2007 Mar 14.

Abstract

In the Drosophila embryo, Nanos and Pumilio collaborate to repress the translation of hunchback mRNA in the somatic cytoplasm. Both proteins are also required for repression of maternal Cyclin B mRNA in the germline; it has not been clear whether they act directly on Cyclin B mRNA, and if so, whether regulation in the presumptive somatic and germline cytoplasm proceeds by similar or fundamentally different mechanisms. In this report, we show that Pumilio and Nanos bind to an element in the 3' UTR to repress Cyclin B mRNA. Regulation of Cyclin B and hunchback differ in two significant respects. First, Pumilio is dispensable for repression of Cyclin B (but not hunchback) if Nanos is tethered via an exogenous RNA-binding domain. Nanos probably acts, at least in part, by recruiting the CCR4-Pop2-NOT deadenylase complex, interacting directly with the NOT4 subunit. Second, although Nanos is the sole spatially limiting factor for regulation of hunchback, regulation of Cyclin B requires another Oskar-dependent factor in addition to Nanos. Ectopic repression of Cyclin B in the presumptive somatic cytoplasm causes lethal nuclear division defects. We suggest that a requirement for two spatially restricted factors is a mechanism for ensuring that Cyclin B regulation is strictly limited to the germline.

摘要

在果蝇胚胎中,Nanos和Pumilio共同作用以抑制驼背(hunchback)mRNA在体细胞细胞质中的翻译。这两种蛋白质对于生殖系中母体细胞周期蛋白B(Cyclin B)mRNA的抑制也是必需的;目前尚不清楚它们是否直接作用于Cyclin B mRNA,如果是,那么在假定的体细胞和生殖系细胞质中的调控是通过相似的机制还是根本不同的机制进行。在本报告中,我们表明Pumilio和Nanos与3'UTR中的一个元件结合以抑制Cyclin B mRNA。Cyclin B和驼背的调控在两个重要方面有所不同。首先,如果通过外源RNA结合结构域拴系Nanos,那么Pumilio对于Cyclin B(而非驼背)的抑制是可有可无的。Nanos可能至少部分地通过招募CCR4-Pop2-NOT去腺苷酸化酶复合物起作用,该复合物直接与NOT4亚基相互作用。其次,尽管Nanos是驼背调控的唯一空间限制因子,但Cyclin B的调控除了Nanos之外还需要另一个依赖于Oskar的因子。在假定的体细胞细胞质中异位抑制Cyclin B会导致致命的核分裂缺陷。我们认为对两个空间受限因子的需求是确保Cyclin B调控严格限于生殖系的一种机制。

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