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NMR Studies of the Structure and Function of the HIV-1 5′-Leader

机译:NMR研究HIV-1 5-Leader的结构和功能

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摘要

The 5′-leader of the human immunodeficiency virus type 1 (HIV-1) genome plays several critical roles during viral replication, including differentially establishing mRNA versus genomic RNA (gRNA) fates. As observed for proteins, the function of the RNA is tightly regulated by its structure, and a common paradigm has been that genome function is temporally modulated by structural changes in the 5′-leader. Over the past 30 years, combinations of nucleotide reactivity mapping experiments with biochemistry, mutagenesis, and phylogenetic studies have provided clues regarding the secondary structures of stretches of residues within the leader that adopt functionally discrete domains. More recently, nuclear magnetic resonance (NMR) spectroscopy approaches have been developed that enable direct detection of intra- and inter-molecular interactions within the intact leader, providing detailed insights into the structural determinants and mechanisms that regulate HIV-1 genome packaging and function.
机译:人类1型免疫缺陷病毒(HIV-1)基因组的5'-leader在病毒复制过程中起着至关重要的作用,包括差异确定mRNA与基因组RNA(gRNA)的命运。正如对蛋白质所观察到的那样,RNA的功能受其结构严格调节,一种常见的范例是基因组功能在时间上受5'-leader的结构变化调节。在过去的30年中,核苷酸反应性作图实验与生物化学,诱变和系统发育研究相结合,提供了有关采用功能性离散域的前导序列中残基延伸片段二级结构的线索。最近,已经开发了核磁共振(NMR)光谱方法,可以直接检测完整前导分子内的分子内和分子间相互作用,从而提供了对调节HIV-1基因组包装和功能的结构决定因素和机制的详细见解。

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