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MysTR: an Endogenous Retrovirus Family in Mammals That Is Undergoing Recent Amplifications to Unprecedented Copy Numbers

机译:MysTR:哺乳动物中的内源性逆转录病毒家族,最近正在扩增到前所未有的拷贝数

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摘要

A large percentage of the repetitive elements in mammalian genomes are retroelements, which have been moved primarily by LINE-1 retrotransposons and endogenous retroviruses. Although LINE-1 elements have remained active throughout the mammalian radiation, specific groups of endogenous retroviruses generally remain active for comparatively shorter periods of time. Identification of an unusual extinction of LINE-1 activity in a group of South American rodents has opened a window for examination of the interplay in mammalian genomes between these ubiquitous retroelements. In the course of a search for any type of repetitive sequences whose copy numbers have substantially changed in Oryzomys palustris, a species that has lost LINE-1 activity, versus Sigmodon hispidus, a closely related species retaining LINE-1 activity, we have identified an endogenous retrovirus family differentially amplified in these two species. Analysis of three full-length, recently transposed copies, called mysTR elements, revealed gag, pro, and pol coding regions containing stop codons which may have accumulated either before or after retrotransposition. Isolation of related sequences in S. hispidus and the LINE-1 active outgroup species, Peromyscus maniculatus, by PCR of a pro-pol region has allowed determination of copy numbers in each species. Unusually high copy numbers of approximately 10,000 in O. palustris versus 1,000 in S. hispidus and 4,500 in the more distantly related P.maniculatus leave open the question of whether there is a connection between endogenous retrovirus activity and LINE-1 inactivity. Nevertheless, these independent expansions of mysTR represent recent amplifications of this endogenous retrovirus family to unprecedented levels.
机译:哺乳动物基因组中大部分重复元件是反转录元件,主要由LINE-1逆转座子和内源性逆转录病毒转移。尽管LINE-1元素在整个哺乳动物辐射中一直保持活性,但是特定种类的内源性逆转录病毒通常在较短的时间内保持活性。在一组南美啮齿动物中,LINE-1活性异常消失的鉴定为检查这些普遍存在的反刍元件之间的哺乳动物基因组之间的相互作用打开了一个窗口。在寻找任何类型的重复序列的过程中,这些序列的拷贝数在丧失了LINE-1活性的物种Oryzomys palustris与拥有LINE-1活性的密切相关物种Sigmodon hispidus的过程中,已经显着改变了。内源性逆转录病毒家族在这两个物种中差异扩增。对三个全长,最近转座的拷贝(称为mysTR元件)的分析显示,gag,pro和pol编码区包含可能在逆转座之前或之后积累的终止密码子。通过pro-pol区的PCR分离S.hipidus和LINE-1活性外群物种Peromyscus maniculatus中的相关序列,可以确定每种物种的拷贝数。 palustris的异常高拷贝数约为10,000,而S.hispidus的拷贝数高达1,000,而更远缘的P. maniculatus则为4,500,这使得内源性逆转录病毒活性与LINE-1失活之间是否存在联系成为了一个问题。尽管如此,mysTR的这些独立扩增代表了这种内源性逆转录病毒家族最近的扩增至前所未有的水平。

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