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在二聚体4-α-螺旋蛋白ROP的环的第31位引入一个脯氨酸残基会导致严重的不稳定。

Introduction of a proline residue into position 31 of the loop of the dimeric 4-alpha-helical protein ROP causes a drastic destabilization.

作者信息

Peters K, Hinz H J, Cesareni G

机构信息

Institut für Physikalische Chemie, Westfälischen Wilhelms-Universität, Münster, Germany.

出版信息

Biol Chem. 1997 Oct;378(10):1141-52. doi: 10.1515/bchm.1997.378.10.1141.

Abstract

The exchange of an alanine with a proline residue in position 31 of the loop region of the dimeric 4-alpha-helical-bundle protein ROP causes a reduction in the alpha-helix content of 7% and a reduction in stability of about 40% compared to the wild type parameters. The Gibbs energy of unfolding by denaturants extrapolated linearly to zero denaturant concentration, delta G0D (buffer, 25 degrees C), has been determined to be 43 kJ (mol dimer)-1. The corresponding ROPwt value is 72 kJ (mol dimer)-1 (Steif et al., 1993). The extrapolated delta G0D values obtained from urea and GdmHCI un- and refolding studies are identical within error limits. Deconvolution of the stability values into enthalpy and entropy terms resulted in the following parameters. At T1/2 = 43 degrees C (Cprotein = 0.05 mg.ml-1) the ROP A31P mutant is characterized by delta Hv.H.0 = 272 kJ (mol dimer)-1, delta Cp = 7.2 kJ (mol dimer)-1 K-1, delta S0 = 762 J (mol dimer)-1 K-1. These parameters are only approximately 50% as large as the corresponding values of ROPwt. We assume that the significant reduction in stability reflects the absence of at least one hydrogen bond as well as deformation of the protein structure. This interpretation is supported by the reduction in the change in heat capacity observed for the A31P mutant relative to ROPwt, by the increased aggregation tendency of the mutant and by the reduced specific CD absorption at 222 nm. All results support the view that in the case of ROP protein the loop region plays a significant role in the maintenance of native structure and conformational stability.

摘要

在二聚体4-α-螺旋束蛋白ROP的环区31位,丙氨酸与脯氨酸残基的交换导致α-螺旋含量降低7%,与野生型参数相比稳定性降低约40%。通过将变性剂使蛋白展开的吉布斯自由能线性外推至零变性剂浓度,已确定ΔG0D(缓冲液,25℃)为43 kJ·(mol二聚体)-1。相应的ROPwt值为72 kJ·(mol二聚体)-1(Steif等人,1993年)。从尿素和盐酸胍的去折叠和重折叠研究中获得的外推ΔG0D值在误差范围内是相同的。将稳定性值解卷积为焓和熵项得到以下参数。在T1/2 = 43℃(C蛋白 = 0.05 mg·ml-1)时,ROP A31P突变体的特征为ΔHv.H.0 = 272 kJ·(mol二聚体)-1,ΔCp = 7.2 kJ·(mol二聚体)-1·K-1,ΔS0 = 762 J·(mol二聚体)-1·K-1。这些参数仅约为ROPwt相应值的50%。我们假设稳定性的显著降低反映了至少一个氢键的缺失以及蛋白质结构的变形。相对于ROPwt,A31P突变体观察到的热容变化降低、突变体聚集倾向增加以及在222 nm处特异性圆二色吸收降低均支持这一解释。所有结果均支持以下观点:对于ROP蛋白而言,环区在维持天然结构和构象稳定性方面起着重要作用。

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