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Role of distal zinc finger of nucleocapsid protein in genomic RNAdimerization of human immunodeficiency virus Type 1; No role for thepalindrome crowning the R-U5 hairpin

机译:核衣壳蛋白远端锌指在人类1型免疫缺陷病毒的基因组RNA二聚化中的作用;回文对加冕R-U5发夹没有作用

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摘要

Genomic RNA isolated from HIV-1 variously mutated in nucleocapsid protein (NC) was characterized by nondenaturing gel electrophoresis. Mutations in the C-terminal, the N-terminal, and the linker regions had no effect on genomic RNA dimerization [they are R7R10K11S, P31L, R32G, S3(32-34), and K59L], while a C36S/C39S mutation in the distal zinc knuckle (Cys-His box or zinc finger) inhibited genome dimerization as much as disrupting the kissing-loop domain. The four mutations which inhibited tRNA(Lys3) genomic placement (i.e., the in vivo placement of tRNA(Lys3) on the primer binding site) had no effect on genome dimerization. Among five mutations which inhibited genome packaging, four had no effect on genome dimerization. Thus the N-terminal and linker regions of NC control genome packaging/tRNA(Lys3) placement (two processes which do not require mature NC) but have little influence on genome dimerization and 2-base extension of tRNA(Lys3) (two processes which are likely to require mature NC). It has been suggested, based on electron microscopy, that the AAGCUU82 palindrome crowning the R-U5 hairpin stimulates genomic RNA dimerization. To test this hypothesis, we deleted AGCU81 from wild-type viruses and from viruses bearing a disrupted kissing-loop hairpin or kissing-loop domain; in another mutant, we duplicated AGCU81. The loss of AGCU81 reduced dimerization by 2.5 +/- 4%; its duplication increased it by 3 +/- 6%. Dissociation temperature was left unchanged. We reach two conclusions. First, the palindrome crowning the R-U5 hairpin has no impact on HIV-1 genome dimerization. Second, genomic RNA dimerization is differentially influenced by NC sequence: it is Zn finger dependent but independent of the basic nature of the N-terminal and linker subdomains. We propose that the NC regions implicated in 2-base extension of tRNA(Lys3) are required for a second (maturation) step of tRNA placement. Genome dimerization and mature tRNA placement would then become two RNA-RNA interactions sharing similar NC sequence requirements.
机译:分离自HIV-1的核衣壳蛋白(NC)中各种突变的基因组RNA的特征是非变性凝胶电泳。 C端,N端和接头区域的突变对基因组RNA二聚化没有影响[它们是R7R10K11S,P31L,R32G,S3(32-34)和K59L],而C36S / C39S突变远侧的锌指关节(Cys-His盒或锌指)抑制基因组二聚化,甚至破坏了接吻环结构域。抑制tRNA(Lys3)基因组位置(即体内tRNA(Lys3)在引物结合位点上的位置)的四个突变对基因组二聚化没有影响。在抑制基因组包装的五个突变中,四个对基因组二聚化没有影响。因此,NC控制基因组包装/ tRNA(Lys3)放置的N末端和接头区域(不需要成熟NC的两个过程),但对基因组二聚化和tRNA(Lys3)的2-碱基延伸几乎没有影响(两个过程可能需要成熟的NC)。基于电子显微镜,已经提出,冠以R-U5发夹的AAGCUU82回文刺激了基因组RNA二聚化。为了验证这一假设,我们从野生型病毒和带有破坏性的亲吻环发夹或亲吻环域的病毒中删除了AGCU81;在另一个突变体中,我们复制了AGCU81。 AGCU81的损失使二聚作用降低了2.5 +/- 4%。它的重复使它增加了3 +/- 6%。解离温度保持不变。我们得出两个结论。首先,加冕到R-U5发夹的回文对HIV-1基因组二聚化没有影响。其次,基因组RNA二聚化受NC序列的影响不同:它是Zn指依赖性的,但与N末端和接头亚结构域的基本性质无关。我们建议涉及tRNA(Lys3)的2-碱基延伸的NC区是tRNA放置的第二个步骤(成熟)。然后,基因组二聚化和成熟的tRNA放置将成为共享相似NC序列要求的两个RNA-RNA相互作用。

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