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Functional Interactions of Human Immunodeficiency Virus Type 1 Integrase with Human and Yeast HSP60

机译:人类免疫缺陷病毒1型与人类和酵母HSP60整合的功能相互作用。

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摘要

Integration of human immunodeficiency virus type 1 (HIV-1) proviral DNA in the nuclear genome is catalyzed by the retroviral integrase (IN). In addition to IN, viral and cellular proteins associated in the high-molecular-weight preintegration complex have been suggested to be involved in this process. In an attempt to define host factors interacting with IN, we used an in vitro system to identify cellular proteins in interaction with HIV-1 IN. The yeast Saccharomyces cerevisiae was chosen since (i) its complete sequence has been established and the primary structure of all the putative proteins from this eucaryote has been deduced, (ii) there is a significant degree of homology between human and yeast proteins, and (iii) we have previously shown that the expression of HIV-1 IN in yeast induces a lethal phenotype. Strong evidences suggest that this lethality is linked to IN activity in infected human cells where integration requires the cleavage of genomic DNA. Using IN-affinity chromatography we identified four yeast proteins interacting with HIV-1 IN, including the yeast chaperonin yHSP60, which is the counterpart of human hHSP60. Yeast lethality induced by HIV-1 IN was abolished when a mutated HSP60 was coexpressed, therefore suggesting that both proteins interact in vivo. Besides interacting with HIV-1 IN, the hHSP60 was able to stimulate the in vitro processing and joining activities of IN and protected this enzyme from thermal denaturation. In addition, the functional human HSP60-HSP10 complex in the presence of ATP was able to recognize the HIV-1 IN as a substrate.
机译:人类免疫缺陷病毒1型(HIV-1)前病毒DNA在核基因组中的整合是由逆转录病毒整合酶(IN)催化的。除IN外,高分子量预整合复合物中的病毒和细胞蛋白也被认为参与了这一过程。为了定义与IN相互作用的宿主因子,我们使用了体外系统来鉴定与HIV-1 IN相互作用的细胞蛋白。选择了酿酒酵母(Saccharomyces cerevisiae),因为(i)已确定其完整序列,并已推断出该真核生物所有推定蛋白的一级结构,(ii)人与酵母蛋白之间存在高度同源性,并且( iii)我们以前已经证明,HIV-1 IN在酵母中的表达诱导了致命的表型。有力的证据表明,这种致死性与受感染的人类细胞的IN活性有关,其中整合需要基因组DNA的切割。使用IN-亲和色谱,我们鉴定了与HIV-1 IN相互作用的四种酵母蛋白,包括与人hHSP60对应的酵母伴侣蛋白yHSP60。当突变的HSP60共表达时,由HIV-1 IN诱导的酵母致死性被消除,因此表明这两种蛋白在体内相互作用。除了与HIV-1 IN相互作用外,hHSP60还能够刺激IN的体外加工和连接活性,并保护该酶免于热变性。另外,在ATP存在下的功能性人HSP60-HSP10复合物能够识别HIV-1 IN作为底物。

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