Proline substitutions in a Mip-like peptidyl-prolyl cis-trans isomerase severely affect its structure, stability, shape and activity

Soumitra Polley , Devlina Chakravarty , Gopal Chakrabarti , Rajagopal Chattopadhyaya , Subrata Sau
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引用次数: 9

Abstract

FKBP22, an Escherichia coli-specific peptidyl-prolyl cis-trans isomerase, shows substantial homology with the Mip-like virulence factors. Mip-like proteins are homodimeric and possess a V-shaped conformation. Their N-terminal domains form dimers, whereas their C-terminal domains bind protein/peptide substrates and distinct inhibitors such as rapamycin and FK506. Interestingly, the two domains of the Mip-like proteins are separated by a lengthy, protease-susceptible α-helix. To delineate the structural requirement of this domain-connecting region in Mip-like proteins, we have investigated a recombinant FKBP22 (rFKBP22) and its three point mutants I65P, V72P and A82P using different probes. Each mutant harbors a Pro substitution mutation at a distinct location in the hinge region. We report that the three mutants are not only different from each other but also different from rFKBP22 in structure and activity. Unlike rFKBP22, the three mutants were unfolded by a non-two state mechanism in the presence of urea. In addition, the stabilities of the mutants, particularly I65P and V72P, differed considerably from that of rFKBP22. Conversely, the rapamycin binding affinity of no mutant was different from that of rFKBP22. Of the mutants, I65P showed the highest levels of structural/functional loss and dissociated partly in solution. Our computational study indicated a severe collapse of the V-shape in I65P due to the anomalous movement of its C-terminal domains. The α-helical nature of the domain-connecting region is, therefore, critical for the Mip-like proteins.

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类mip肽基-脯氨酸顺反异构酶中脯氨酸的取代严重影响其结构、稳定性、形状和活性
FKBP22是大肠杆菌特异性肽酰脯氨酸顺式反式异构酶,与mip样毒力因子具有高度同源性。mip样蛋白是同二聚体,具有v形构象。它们的n端结构域形成二聚体,而它们的c端结构域结合蛋白/肽底物和不同的抑制剂,如雷帕霉素和FK506。有趣的是,mip样蛋白的两个结构域被一个长而易受蛋白酶影响的α-螺旋分开。为了描述mip样蛋白中该结构域连接区域的结构要求,我们使用不同的探针研究了重组FKBP22 (rFKBP22)及其三个点突变体I65P, V72P和A82P。每个突变体在铰链区域的不同位置都有一个Pro取代突变。我们报道了这三个突变体不仅彼此不同,而且在结构和活性上也与rFKBP22不同。与rFKBP22不同,这三个突变体在尿素存在下通过非双态机制展开。此外,突变体的稳定性,特别是I65P和V72P,与rFKBP22有很大的不同。相反,没有突变体的雷帕霉素结合亲和力与rFKBP22不同。突变体中,I65P表现出最高水平的结构/功能损失,并在溶液中部分解离。我们的计算研究表明,由于其c端结构域的异常运动,I65P中的v形结构严重坍塌。因此,结构域连接区域的α-螺旋性质对mip样蛋白至关重要。
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