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1型和2型人类免疫缺陷病毒逆转录酶同型二聚体的差异加工是病毒蛋白酶不同特异性的结果。

The differential processing of homodimers of reverse transcriptases from human immunodeficiency viruses type 1 and 2 is a consequence of the distinct specificities of the viral proteases.

作者信息

Fan N, Rank K B, Leone J W, Heinrikson R L, Bannow C A, Smith C W, Evans D B, Poppe S M, Tarpley W G, Rothrock D J

机构信息

Upjohn Laboratories, Kalamazoo, Michigan 49001, USA.

出版信息

J Biol Chem. 1995 Jun 2;270(22):13573-9.

PMID:7539431
Abstract

Active, recombinant p68 reverse transcriptase (RT) from human immunodeficiency virus type 2 (HIV-2), with an NH2-terminal extension containing a hexahistidine sequence was isolated from extracts of Escherichia coli by immobilized metal affinity chromatography. Treatment of the purified p68/p68 homodimer of HIV-2 RT with recombinant HIV-2 protease generates stable, active heterodimer (p68/p58) that is resistant to further hydrolysis. Analysis of this p68/p58 HIV-2 RT heterodimer revealed that while one subunit is intact p68, the p58 subunit is COOH-terminally truncated by cleavage, not at Phe440 as is seen in processing of the p66/p66 HIV-1 RT homodimer by HIV-1 protease, but at Met484. The expected COOH-terminal p10 fragment resulting from hydrolysis of p68 at Met484 is not released intact, but undergoes further cleavage at Asn494, Met503, and Tyr532. Processing of p68/p68 HIV-2 RT with the HIV-1 protease led to cleavage of the Phe440-Tyr441 bond, exactly as is seen with p66/p66 HIV-1 RT, to give the analogous p53 subunit. Studies of a peptide substrate modeled after residues 437-444 in HIV-2 RT showed that while the HIV-1 protease was able to cleave the Phe440 bond, this bond was resistant to cleavage by the HIV-2 enzyme. Our findings provide a rationale for the previous observation that the RT heterodimer isolated from HIV-2 lysates is larger than that from HIV-1. We conclude that the p68/p58 HIV-2 RT heterodimer, containing the Met484 truncated p58 subunit, is a biologically relevant form of the enzyme in vivo.

摘要

从人免疫缺陷病毒2型(HIV - 2)中获得的具有活性的重组p68逆转录酶(RT),其NH2末端带有含六组氨酸序列的延伸部分,通过固定化金属亲和层析从大肠杆菌提取物中分离得到。用重组HIV - 2蛋白酶处理纯化的HIV - 2 RT的p68/p68同二聚体,可产生稳定、有活性的异二聚体(p68/p58),该异二聚体对进一步水解具有抗性。对这种p68/p58 HIV - 2 RT异二聚体的分析表明,一个亚基是完整的p68,而p58亚基在COOH末端被切割截短,切割位点不是HIV - 1蛋白酶处理p66/p66 HIV - 1 RT同二聚体时所见的Phe440,而是Met484。由p68在Met484处水解产生的预期COOH末端p10片段并非完整释放,而是在Asn494、Met503和Tyr532处进一步切割。用HIV - 1蛋白酶处理p68/p68 HIV - 2 RT会导致Phe440 - Tyr441键的切割,这与p66/p66 HIV - 1 RT的情况完全相同,从而产生类似的p53亚基。对以HIV - 2 RT中437 - 444位残基为模型的肽底物的研究表明,虽然HIV - 1蛋白酶能够切割Phe440键,但该键对HIV - 2酶的切割具有抗性。我们的研究结果为先前观察到的从HIV - 2裂解物中分离的RT异二聚体比从HIV - 1中分离的更大这一现象提供了理论依据。我们得出结论,含有Met484截短的p58亚基的p68/p58 HIV - 2 RT异二聚体是该酶在体内的一种生物学相关形式。

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The differential processing of homodimers of reverse transcriptases from human immunodeficiency viruses type 1 and 2 is a consequence of the distinct specificities of the viral proteases.1型和2型人类免疫缺陷病毒逆转录酶同型二聚体的差异加工是病毒蛋白酶不同特异性的结果。
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