Yoo S, Myszka D G, Yeh C, McMurray M, Hill C P, Sundquist W I
Department of Biochemistry, University of Utah, Salt Lake City 84132, USA.
J Mol Biol. 1997 Jun 27;269(5):780-95. doi: 10.1006/jmbi.1997.1051.
The HIV-1 capsid protein (CA) makes an essential interaction with the human peptidyl prolyl isomerase, cyclophilin A (CypA), that results in packaging of CypA into the virion at a CA to CypA stoichiometry of approximately 10:1. The 231 amino acid residue capsid protein is composed of an amino-terminal CypA binding domain (1 to approximately 151; CA151) and a carboxyl-terminal dimerization domain (approximately 151 to 231). We find that CypA binds dimeric CA and monomeric CA151 with identical intrinsic affinities (K[d] = 16(+/-4) microM). This result demonstrates that capsid dimerization and cyclophilin A binding are not thermodynamically coupled and suggests that the substoichiometric ratio of CypA in the HIV-1 virion results from the intrinsic stability of the CA/CypA complex. In the known co-crystal structure of the CA151/CypA complex, CypA binding is mediated exclusively by an exposed capsid loop that spans residues Pro85 to Pro93. The energetic contributions to CypA binding were quantified for each residue in this loop, and the results demonstrate that the Gly89-Pro90 dipeptide is the primary cyclophilin A recognition motif, with Pro85, Val86, His87, Ala88, and Pro93 also making energetically favorable contacts. These studies reveal that the active site of CypA, which can catalyze the isomerization of proline residues in vitro, also functions as a sequence-specific, protein-binding motif in HIV-1 replication.
HIV-1衣壳蛋白(CA)与人肽基脯氨酰异构酶亲环素A(CypA)发生关键相互作用,导致CypA以约10:1的CA与CypA化学计量比包装进病毒体。由231个氨基酸残基组成的衣壳蛋白由一个氨基末端的CypA结合结构域(1至约151;CA151)和一个羧基末端的二聚化结构域(约151至231)组成。我们发现CypA以相同的固有亲和力(解离常数K[d]=16(±4)微摩尔)结合二聚体CA和单体CA151。这一结果表明衣壳二聚化与亲环素A结合在热力学上并非耦合的,并提示HIV-1病毒体中CypA的亚化学计量比源于CA/CypA复合物的固有稳定性。在已知的CA151/CypA复合物共晶体结构中,CypA的结合完全由一个跨越Pro85至Pro93残基的暴露衣壳环介导。对该环中每个残基与CypA结合的能量贡献进行了量化,结果表明Gly89-Pro90二肽是亲环素A的主要识别基序,Pro85、Val86、His87、Ala88和Pro93也形成了能量有利的接触。这些研究揭示,CypA的活性位点在体外可催化脯氨酸残基的异构化,在HIV-1复制中也作为一个序列特异性的蛋白质结合基序发挥作用。