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葡萄球菌核酸酶的动力学折叠和顺式/反式脯氨酰异构化。通过停流吸收、停流圆二色性和分子动力学模拟进行的研究。

Kinetic folding and cis/trans prolyl isomerization of staphylococcal nuclease. A study by stopped-flow absorption, stopped-flow circular dichroism, and molecular dynamics simulations.

作者信息

Ikura T, Tsurupa G P, Kuwajima K

机构信息

Department of Physics, School of Science, University of Tokyo, Japan.

出版信息

Biochemistry. 1997 May 27;36(21):6529-38. doi: 10.1021/bi963174v.

Abstract

We studied the urea-induced unfolding transition of staphylococcal nuclease (SNase) and its five proline mutants (P47A, P47T, P117G, P47T/P117G, and P47A/P117G) [corrected] by peptide and aromatic circular dichroism and aromatic absorption spectroscopy at equilibrium and the refolding-unfolding kinetics of the proteins by stopped-flow circular dichroism and stopped-flow absorption techniques. Recent studies have revealed that the cis/trans isomerizations about the Pro47 and Pro117 peptide bonds of SNase occur not only in the unfolded state but also in the native state. The mutational effects on the stability and the refolding-unfolding kinetics of SNase were, however, remarkably different between the two sites. The substitution of Ala or Thr for Pro47 neither changed the stability nor affected the refolding-unfolding kinetics of SNase, whereas the substitution of Gly for Pro117 increased the protein stability by 1.2 kcal/mol (pH 7.0 and 20 degrees C) and affected the kinetics. These results have been attributed to the high flexibility of the loop around Pro47, which has been revealed by molecular dynamics simulations of native SNase. Under every condition studied, cooperative refolding-unfolding kinetics of SNase were observed. Refolding of wild-type SNase was represented by two urea concentration-dependent fast phases and a urea concentration-independent slow phase. The double mutant (P47T/P117G) [corrected] of SNase still showed multiphasic refolding kinetics that involved two urea concentration-independent slow phases, suggesting that isomerization of proline residues other than Pro47 and Pro117 may occur in the unfolded state of the mutant. Two phases were observed in the unfolding of the wild-type and mutant proteins that contained Pro117, a fast phase corresponding to the unfolding of the trans isomer and a slow phase corresponding to that of the cis isomer. On the basis of these results, the folding scheme of SNase is discussed.

摘要

我们通过肽和芳香族圆二色性以及平衡态下的芳香族吸收光谱研究了葡萄球菌核酸酶(SNase)及其五个脯氨酸突变体(P47A、P47T、P117G、P47T/P117G和P47A/P117G)[已修正]的尿素诱导的去折叠转变,并通过停流圆二色性和停流吸收技术研究了蛋白质的重折叠-去折叠动力学。最近的研究表明,SNase中Pro47和Pro117肽键的顺/反异构化不仅发生在未折叠状态,也发生在天然状态。然而,两个位点对SNase稳定性和重折叠-去折叠动力学的突变效应却显著不同。用丙氨酸或苏氨酸取代Pro47既不改变SNase的稳定性,也不影响其重折叠-去折叠动力学,而用甘氨酸取代Pro117则使蛋白质稳定性在pH 7.0和20℃时提高了1.2千卡/摩尔,并影响了动力学。这些结果归因于Pro47周围环的高灵活性,这已通过天然SNase的分子动力学模拟得到揭示。在所研究的每种条件下,均观察到SNase的协同重折叠-去折叠动力学。野生型SNase的重折叠由两个尿素浓度依赖性快速相和一个尿素浓度非依赖性慢速相表示。SNase的双突变体(P47T/P??117G)[已修正]仍显示多相重折叠动力学,其中涉及两个尿素浓度非依赖性慢速相,这表明在突变体的未折叠状态下可能发生Pro47和Pro117以外的脯氨酸残基的异构化。在含有Pro117的野生型和突变型蛋白质的去折叠过程中观察到两个相,一个快速相对应于反式异构体的去折叠,一个慢速相对应于顺式异构体的去折叠。基于这些结果,对SNase的折叠方案进行了讨论。

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