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首页> 外文期刊>Biochemistry >The helix located between the two domains of a Mip-like peptidyl-prolyl cis - Trans isomerase is crucial for its structure, stability, and protein folding ability
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The helix located between the two domains of a Mip-like peptidyl-prolyl cis - Trans isomerase is crucial for its structure, stability, and protein folding ability

机译:位于MIP样肽基 - 脯氨酰芳基溶解件 - 反式异构酶的两个结构域之间的螺旋对其结构,稳定性和蛋白质折叠能力至关重要

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摘要

FKBP22, a PPIase (peptidyl-prolyl cis-trans isomerase) produced by Escherichia coli, binds FK506 and rapamycin (both immunosuppressive drugs), shares significant homology with the Mip-like virulence factors, and has been thought to carry a long α-helix (namely α3) between its two domains. To understand whether the length of helix α3 plays any role in the structure, function, and stability of FKBP22-like proteins, we studied a recombinant E. coli FKBP22 (rFKBP22) and its four helix α3 mutant variants by various in vitro probes. Of the helix α3 mutants, two were deletion mutants (rFKBP22D5 and rFKBP22D30), whereas the two others were insertion mutants (rFKBP22I3 and rFKBP22I6). Our investigations revealed that the molecular dimensions, dimerization efficiencies, secondary structures, tertiary structures, stabilities, and protein folding abilities of all mutant proteins are different from those of rFKBP22. Conversely, the rapamycin binding affinities of the mutant proteins were affected very little. Urea-induced unfolding of each protein followed a two-state mechanism and was reversible in nature. Interestingly, rFKBP22D30 was the least stable, whereas rFKBP22I3 appeared to be the most stable of the five proteins. The data together suggest that length of helix α3 contributes significantly to the preservation of the structure, function, and stability of E. coli FKBP22.
机译:FKBP22,由大肠杆菌生产的PPIASE(肽基脯氨酰CIS-TRASS异构酶)结合FK506和雷帕霉素(两种免疫抑制药物),与MIP样的毒力因子分享显着的同源性,并且已被认为携带长期α-螺旋(即α3)其两个域之间。为了了解螺旋α3的长度是否在FKBP22样蛋白的结构,功能和稳定性中起任何作用,通过各种体外探针研究了重组大肠杆菌FKBP22(RFKBP22)及其四个螺旋α3突变体变体。在螺旋α3突变体中,两种是缺失突变体(RFKBP22D5和RFKBP22D30),而另外两种是插入突变体(RFKBP22I3和RFKBP22I6)。我们的研究表明,所有突变蛋白的分子尺寸,二聚化效率,二次结构,二级结构,三级结构,稳定性和蛋白质折叠能力不同于RFKBP22的蛋白质。相反,突变蛋白的雷帕霉素结合亲和力影响很少。尿素诱导的每种蛋白质的展开遵循双状态机制,本质上是可逆的。有趣的是,RFKBP22D30是最不稳定的,而RFKBP22I3似乎是五种蛋白质最稳定的。数据在一起表明螺旋α3的长度显着贡献了大肠杆菌FKBP22的结构,功能和稳定性的贡献。

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