Zinc finger structures in the human immunodeficiency virus type 1 nucleocapsid protein facilitate efficient minus- and plus-strand transfer

被引:176
作者
Guo, JH
Wu, TY
Anderson, J
Kane, BF
Johnson, DG
Gorelick, RJ
Henderson, LE
Levin, JG
机构
[1] NICHD, Mol Genet Lab, NIH, Bethesda, MD 20892 USA
[2] NCI, AIDS Vaccine Program, SAIC, Frederick Canc Res & Dev Ctr, Frederick, MD 21702 USA
关键词
D O I
10.1128/JVI.74.19.8980-8988.2000
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The nucleocapsid protein (NC) of human immunodeficiency virus type 1 (HIV-1) has two zinc fingers, each containing the invariant metal ion binding residues CCHC, Recent reports indicate that mutations In the CCHC motifs are deleterious for reverse transcription in vivo. To identify reverse transcriptase (RT) reactions affected by such changes, cre have probed zinc finger functions in NC-dependent RT-catalyzed HIV-1 minus- and plus-strand transfer model systems. Our approach was to examine the activities of wild-type NC and a mutant in which all six cysteine residues were replaced by serine (SSHS NC); this mutation severely disrupts zinc coordination. We find that the zinc fingers contribute to the role of NC in complete tRNA primer removal from minus-strand DNA during plus-strand transfer, Annealing of the primer binding site sequences in plus-strand strong-stop DNA [(+) SSDNA] to its complement in minus-strand acceptor DNA is not dependent on SC zinc fingers. In contrast, the rate of annealing of the complementary R regions in (-) SSDNA, and 3' viral RNA during minus-strand transfer is approximately eightfold lower when SSHS NC is used in place of wild-type NC. Moreover, unlike wild-type NC, SSHS SC has only a small stimulatory effect on minus-strand transfer and is essentially unable to block TAR-induced self-priming from (-) SSDNA. Our results strongly suggest that NC zinc finger structures are needed to unfold highly structured RNA and DNA strand transfer intermediates. Thus, it appears that in these cases, zinc finger interactions are important components of NC nucleic acid chaperone activity.
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页码:8980 / 8988
页数:9
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