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人亲环素A与HIV-1 Vpr的宿主-病原体相互作用需要特定的N端和新的C端结构域。

The host-pathogen interaction of human cyclophilin A and HIV-1 Vpr requires specific N-terminal and novel C-terminal domains.

作者信息

Solbak Sara M Ø, Wray Victor, Horvli Ole, Raae Arnt J, Flydal Marte I, Henklein Petra, Henklein Peter, Nimtz Manfred, Schubert Ulrich, Fossen Torgils

机构信息

Centre of Pharmacy, University of Bergen, N-5007 Bergen Norway.

出版信息

BMC Struct Biol. 2011 Dec 20;11:49. doi: 10.1186/1472-6807-11-49.

Abstract

BACKGROUND

Cyclophilin A (CypA) represents a potential key molecule in future antiretroviral therapy since inhibition of CypA suppresses human immunodeficiency virus type 1 (HIV-1) replication. CypA interacts with the virus proteins Capsid (CA) and Vpr, however, the mechanism through which CypA influences HIV-1 infectivity still remains unclear.

RESULTS

Here the interaction of full-length HIV-1 Vpr with the host cellular factor CypA has been characterized and quantified by surface plasmon resonance spectroscopy. A C-terminal region of Vpr, comprising the 16 residues 75GCRHSRIGVTRQRRAR90, with high binding affinity for CypA has been identified. This region of Vpr does not contain any proline residues but binds much more strongly to CypA than the previously characterized N-terminal binding domain of Vpr, and is thus the first protein binding domain to CypA described involving no proline residues. The fact that the mutant peptide Vpr75-90 R80A binds more weakly to CypA than the wild-type peptide confirms that Arg-80 is a key residue in the C-terminal binding domain. The N- and C-terminal binding regions of full-length Vpr bind cooperatively to CypA and have allowed a model of the complex to be created. The dissociation constant of full-length Vpr to CypA was determined to be approximately 320 nM, indicating that the binding may be stronger than that of the well characterized interaction of HIV-1 CA with CypA.

CONCLUSIONS

For the first time the interaction of full-length Vpr and CypA has been characterized and quantified. A non-proline-containing 16-residue region of C-terminal Vpr which binds specifically to CypA with similar high affinity as full-length Vpr has been identified. The fact that this is the first non-proline containing binding motif of any protein found to bind to CypA, changes the view on how CypA is able to interact with other proteins. It is interesting to note that several previously reported key functions of HIV-1 Vpr are associated with the identified N- and C-terminal binding domains of the protein to CypA.

摘要

背景

亲环素A(CypA)是未来抗逆转录病毒治疗中一个潜在的关键分子,因为抑制CypA可抑制1型人类免疫缺陷病毒(HIV-1)复制。CypA与病毒蛋白衣壳(CA)和病毒蛋白R(Vpr)相互作用,然而,CypA影响HIV-1感染性的机制仍不清楚。

结果

在此,通过表面等离子体共振光谱对全长HIV-1 Vpr与宿主细胞因子CypA的相互作用进行了表征和定量。已鉴定出Vpr的一个C末端区域,其包含16个残基75GCRHSRIGVTRQRRAR90,对CypA具有高结合亲和力。Vpr的该区域不包含任何脯氨酸残基,但与CypA的结合比先前表征的Vpr的N末端结合域强得多,因此是第一个被描述的不涉及脯氨酸残基的与CypA结合的蛋白质结合域。突变肽Vpr75-90 R80A与CypA的结合比野生型肽弱,这一事实证实精氨酸-80是C末端结合域中的关键残基。全长Vpr的N末端和C末端结合区域协同结合CypA,并得以建立复合物模型。全长Vpr与CypA的解离常数测定约为320 nM,表明这种结合可能比HIV-1 CA与CypA的已充分表征的相互作用更强。

结论

首次对全长Vpr和CypA的相互作用进行了表征和定量。已鉴定出C末端Vpr的一个不含脯氨酸的16个残基区域,其与CypA特异性结合,亲和力与全长Vpr相似。这是发现的第一个与CypA结合的任何蛋白质的不含脯氨酸的结合基序,这一事实改变了对CypA如何与其他蛋白质相互作用的看法。值得注意的是,HIV-1 Vpr先前报道的几个关键功能与该蛋白质与CypA已鉴定的N末端和C末端结合域相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/965b/3269379/3c5f19eb9e17/1472-6807-11-49-1.jpg

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