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Connecting cis-elements and trans-factors with mechanisms of developmental regulation of mRNA translation in meiotic and haploid mammalian spermatogenic cells

机译:在减数分裂和单倍体哺乳动物生精细胞中将顺式元件和反式因子与mRNA翻译的发育调节机制联系起来

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mRNA-specific regulation of translational activity plays major roles in directing the development of meiotic and haploid spermatogenic cells in mammals. Although many RNA-binding proteins (RBPs) have been implicated in normal translational control and sperm development, little is known about the keystone of the mechanisms: the interactions of RBPs and microRNAs with cis -elements in mRNA targets. The problems in connecting factors and elements with translational control originate in the enormous complexity of post-transcriptional regulation in mammalian cells. This creates confusion as to whether factors have direct or indirect and large or small effects on the translation of specific mRNAs. This review argues that gene knockouts, heterologous systems, and overexpression of factors cannot provide convincing answers to these questions. As a result, the mechanisms involving well-studied mRNAs ( Ddx4 / Mvh , Prm1 , Prm2 , and Sycp3 ) and factors (DICER1, CPEB1, DAZL, DDX4/MVH, DDX25/GRTH, translin, and ELAV1/HuR) are incompletely understood. By comparison, mutations in elements can be used to define the importance of specific pathways in regulating individual mRNAs. However, few elements have been studied, because the only reliable system to analyze mutations in elements, transgenic mice, is considered impractical. This review describes advances that may facilitate identification of the direct targets of RBPs and analysis of mutations in cis -elements. The importance of upstream reading frames in the developmental regulation of mRNA translation in spermatogenic cells is also documented.
机译:mRNA特异的翻译活性调控在指导哺乳动物减数分裂和单倍体生精细胞的发育中起主要作用。尽管许多RNA结合蛋白(RBPs)参与了正常的翻译控制和精子发育,但对于该机理的基石知之甚少:RBP和microRNA与mRNA靶标中的顺式相互作用。将因子和元件与翻译控制联系起来的问题源于哺乳动物细胞中转录后调控的巨大复杂性。这会造成混乱,即因素对特定mRNA的翻译是直接的还是间接的,或大或小的影响。这篇评论认为基因敲除,异源系统和因子的过度表达不能为这些问题提供令人信服的答案。结果,对涉及充分研究的mRNA(Ddx4 / Mvh,Prm1,Prm2和Sycp3)和因素(DICER1,CPEB1,DAZL,DDX4 / MVH,DDX25 / GRTH,translin和ELAV1 / HuR)的机制尚不完全了解。 。相比之下,元件中的突变可用于定义特定途径在调节单个mRNA中的重要性。但是,几乎没有研究过任何元素,因为认为唯一可靠的分析元素突变的系统(转基因小鼠)是不切实际的。这篇综述描述了可能有助于鉴定RBPs的直接靶标和分析顺式元件突变的进展。还记载了上游阅读框在生精细胞中mRNA翻译的发育调节中的重要性。

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