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首页> 外文期刊>Journal of Molecular Biology >Modulation of Homo- and Heterodimerization of Harvey Sarcoma Virus RNA by GACG Tetraloops and Point Mutations in Palindromic Sequences.
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Modulation of Homo- and Heterodimerization of Harvey Sarcoma Virus RNA by GACG Tetraloops and Point Mutations in Palindromic Sequences.

机译:GACG四环和回文序列中的点突变对Harvey肉瘤病毒RNA的同源和异源二聚化的调节。

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Retroviruses harbour a diploid genome of two plus-strand RNAs linked non-covalently at the dimer linkage structure. Co-packaging of two parental RNAs is a prerequisite for recombination in retroviruses, but formation of heterodimers has not been demonstrated directly in vivo. Here, we explore elements in Harvey sarcoma virus (HaSV) RNA involved in homodimerization and heterodimerization with RNA of Moloney (Mo) and Akv murine leukemia viruses (MLV).By an in vitro assay, we found that HaSV dimerization specificity could be modulated by mutations in a decanucleotide palindrome (Pal) probably folded into a kissing-loop. Autocomplementary and non-autocomplementary sequences introduced into the putative loop directed the specificity towards formation of homodimers and heterodimers, respectively. Two stem-loop (SL) structures, both exposing a GACG tetraloop, enhanced the formation of stable HaSV dimers.A similar decanucleotide palindrome has been implicated in homodimerization of MLVs. Heterodimers between HaSV RNA and Mo- or Akv MLV were unstable, but could be stabilized by introduction of two point mutations in the putative HaSV kissing-loop, creating exact complementarity with Mo/Akv MLV palindromes. Moreover, such changes increased the HaSV RNA affinity for the two MLV RNAs. Similar to HaSV RNA homodimers, formation of heterodimers with Mo- or Akv MLV RNAs was induced by the presence of GACG loops.On the basis of these results, we propose that palindromic sequences act as variable determinants of specificity and GACG tetraloops as conserved determinants in the formation of homodimers and heterodimers of gamma-retrovirus retroviral RNAs in vivo. The complementarity of loop sequences in the packaging signal upstream of the GACG tetraloops might therefore determine homo- and heterodimerization specificity and recombination activity of these viruses.
机译:逆转录病毒具有在二聚体连接结构处非共价连接的两个正链RNA的二倍体基因组。两种亲本RNA的共同包装是逆转录病毒重组的先决条件,但尚未直接在体内证明异二聚体的形成。在这里,我们探索了哈维肉瘤病毒(HaSV)RNA中与Moloney(Mo)和Akv鼠白血病病毒(MLV)的RNA同源二聚化和异二聚化相关的元素。通过体外测定,我们发现HaSV的二聚化特异性可以通过调节十核苷酸回文(Pal)中的突变可能折叠成一个接吻环。引入推定环的自互补序列和非自互补序列分别将特异性指向同二聚体和异二聚体的形成。两种暴露于GACG四环的茎环(SL)结构增强了稳定的HaSV二聚体的形成.MLVs的二聚化也涉及类似的十核苷酸回文。 HaSV RNA和Mo-或Akv MLV之间的异二聚体是不稳定的,但可以通过在假定的HaSV接吻环中引入两个点突变来稳定,从而与Mo / Akv MLV回文形成精确的互补性。而且,这样的改变增加了对两个MLV RNA的HaSV RNA亲和力。与HaSV RNA同型二聚体类似,通过GACG环的存在可诱导Mo-或Akv MLV RNA形成异源二聚体。基于这些结果,我们提出回文序列可作为特异性的可变决定簇,而GACG四环可作为保守的决定簇。在体内形成逆转录病毒逆转录病毒RNA的同二聚体和异二聚体。因此,GACG四环上游包装信号中环序列的互补性可能决定了这些病毒的同源二聚体和异源二聚体特异性以及重组活性。

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