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Emergence and evolution of Zfp36l3

机译:Zfp36l3的出现和进化

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In most mammals, the Zfp36 gene family consists of three conserved members, with a fourth member, Zfp36l3, present only in rodents. The ZFP36 proteins regulate post-transcriptional gene expression at the level of mRNA stability in organisms from humans to yeasts, and appear to be expressed in all major groups of eukaryotes. In Mus musculus, Zfp36l3 expression is limited to the placenta and yolk sac, and is important for overall fecundity. We sequenced the Zfp36l3 gene from more than 20 representative species, from members of the Muridae, Cricetidae and Nesomyidae families. Zfp36l3 was not present in Dipodidae, or any families that branched earlier, indicating that this gene is exclusive to the Muroidea superfamily. We provide evidence that Zfp36l3 arose by retrotransposition of an mRNA encoded by a related gene, Zfp36l2 into an ancestral rodent X chromosome. Zfp36l3 has evolved rapidly since its origin, and numerous modifications have developed, including variations in start codon utilization, de nova intron formation by mechanisms including a nested retrotransposition, and the insertion of distinct repetitive regions. One of these repeat regions, a long alanine rich-sequence, is responsible for the full-time cytoplasmic localization of Mus musculus ZFP36L3. In contrast, this repeat sequence is lacking in Peromyscus maniculatus ZFP36L3, and this protein contains a novel nuclear export sequence that controls shuttling between the nucleus and cytosol. Zfp36l3 is an example of a recently acquired, rapidly evolving gene, and its various orthologues illustrate several different mechanisms by which new genes emerge and evolve. Published by Elsevier Inc.
机译:在大多数哺乳动物中,Zfp36基因家族由三个保守成员组成,而第四个成员Zfp36l3仅存在于啮齿动物中。 ZFP36蛋白在从人类到酵母的生物体中,在mRNA稳定水平上调节转录后基因的表达,并且似乎在所有主要的真核生物类中都有表达。在小家鼠中,Zfp36l3的表达仅限于胎盘和卵黄囊,并且对整体生殖力很重要。我们从Muridae,Cricetidae和Nesomyidae家族成员的20多个代表性物种中测序了Zfp36l3基因。 Zfp36l3不存在于双足纲动物或任何较早分支的家族中,这表明该基因是Muroidea超家族所独有的。我们提供的证据表明,Zfp36l3是由相关基因Zfp36l2编码的mRNA逆转录成祖先啮齿动物X染色体而产生的。 Zfp36l3自其起源以来已迅速发展,并且已开发出许多修饰,包括起始密码子利用的变化,通过包括嵌套逆转座子在内的机制形成的新内含子以及插入不同的重复区域。这些重复区域之一,一个长的丙氨酸丰富序列,负责小家鼠ZFP36L3的全时细胞质定位。相反,在Peromyscus maniculatus ZFP36L3中缺少此重复序列,并且该蛋白包含控制核与细胞质之间穿梭的新型核输出序列。 Zfp36l3是最近获得的,快速进化的基因的一个例子,其各种直向同源物说明了新基因出现和进化的几种不同机制。由Elsevier Inc.发布

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