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F99 对于南非 HIV-1 亚型 C 蛋白酶的二聚化和激活至关重要。

F99 is critical for dimerization and activation of South African HIV-1 subtype C protease.

机构信息

Protein Structure-Function Research Unit, School of Molecular and Cell Biology, University of the Witwatersrand, Johannesburg, 2050, South Africa.

出版信息

Protein J. 2013 Oct;32(7):560-7. doi: 10.1007/s10930-013-9517-y.

Abstract

HIV-1 protease (PR) is an obligate homodimer which plays a pivotal role in the maturation and hence propagation of HIV. Although successful developments on PR active site inhibitors have been achieved, the major limiting factor has been the emergence of HIV drug-resistant strains. Disruption of the dimer interface serves as an alternative mechanism to inactivate the enzyme. The terminal residue, F99, was mutated to an alanine to investigate its contribution to dimer stability in the South African HIV-1 subtype C (C-SA) PR. The F99A PR and wild-type C-SA PR were overexpressed and purified. The activities of the PRs and their ability to bind an active site inhibitor, acetyl-pepstatin, were determined in vitro. The F99A PR showed no activity and the inability to bind to the inhibitor. Secondary and quaternary structure analysis were performed and revealed that the F99A PR is monomeric with reduced β-sheet content. The mutation of F99 to alanine disrupted the presumed 'lock-and-key' motif at the terminal dimer interface, in turn creating a cavity at the N- and C-terminal antiparallel β-sheet. These findings support the design of inhibitors targeting the C-terminus of the C-SA PR, centered on interactions with the bulky F99.

摘要

HIV-1 蛋白酶(PR)是一种必需的同二聚体,在 HIV 的成熟和繁殖中起着关键作用。尽管在 PR 活性位点抑制剂的开发方面取得了成功,但主要的限制因素是 HIV 耐药株的出现。破坏二聚体界面是使酶失活的另一种机制。末端残基 F99 突变为丙氨酸,以研究其对南非 HIV-1 亚型 C(C-SA)PR 二聚体稳定性的贡献。F99A PR 和野生型 C-SA PR 被过表达和纯化。在体外测定 PR 的活性及其与活性位点抑制剂乙酰-肽酶抑制剂结合的能力。F99A PR 没有活性,也不能与抑制剂结合。进行了二级和四级结构分析,结果表明 F99A PR 是单体,β-折叠含量减少。F99 突变为丙氨酸破坏了末端二聚体界面上假定的“锁钥”基序,从而在 N 端和 C 端反平行β-折叠处形成一个空腔。这些发现支持以与大体积 F99 的相互作用为中心,针对 C-SA PR C 端设计抑制剂的设计。

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