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产生空洞的突变对二聚体4-α-螺旋蛋白ROP构象稳定性和结构的影响:热变性研究

Effects of cavity-creating mutations on conformational stability and structure of the dimeric 4-alpha-helical protein ROP: thermal unfolding studies.

作者信息

Steif C, Hinz H J, Cesareni G

机构信息

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

出版信息

Proteins. 1995 Sep;23(1):83-96. doi: 10.1002/prot.340230110.

Abstract

The structural and energetic perturbations caused by cavity-creating mutations (Leu-41-->Val and Leu-41-->Ala) in the dimeric 4-alpha-helical-bundle protein ROP have been characterized by CD spectroscopy and differential scanning calorimetry (DSC). Deconvolution of the CD spectra showed a decrease in alpha-helicity as a result of the amino acid exchanges that follows qualitatively the overall decrease in conformational stability. Transition enthalpies are sensitive probes of the energetic change associated with point mutations. delta H zero values at the respective transition temperatures, T 1/2 (71.0, 65.3, and 52.9 degrees C at 0.5 mg/ml) decrease from 580 +/- 20 to 461 +/- 20 kJ/(mol of dimer) and 335 +/- 20 kJ/(mol of dimer) for wild-type ROP (Steif, C., Weber, P., Hinz, H.-J., Flossdorf, J., Cesareni, G., Kokkinidis, M. Biochemistry 32:3867-3876, 1993), L41V, and L41A, respectively. The conformational stabilities at 25 degrees C expressed by the standard Gibbs energies of denaturation, delta GzeroD, are 71.7, 61.1, and 46.1 kJ/(mol of dimer). The corresponding transition enthalpies have been obtained from extrapolation using the cDp(T) and cNp(T) functions. Their values at 25 degrees C are 176.3, 101.9, and 141.7 kJ/(mol of dimer) for wild-type ROP, L41V, and L41A, respectively. When the stability perturbation resulting from the cavity creating mutations is referred to the exchange of 1 mol of CH2 group, the average delta delta GzeroD value is -5.0 +/- 1 kJ/(mol of CH2 group). This decrease in conformation stability suggests that dimeric ROP exhibits the same susceptibility to Leu-->Val and Leu-->Ala exchanges as small monomeric proteins. Careful determinations of the partial specific heat capacities of wild-type and mutated protein solutions suggest that the mutational effects are predominantly manifested in the native rather than the unfolded state.

摘要

通过圆二色光谱(CD)和差示扫描量热法(DSC)对二聚体4-α-螺旋束蛋白ROP中由产生空洞的突变(Leu-41→Val和Leu-41→Ala)引起的结构和能量扰动进行了表征。CD光谱的去卷积显示,由于氨基酸交换导致α-螺旋度降低,这在定性上与构象稳定性的总体降低一致。转变焓是与点突变相关的能量变化的敏感探针。在各自的转变温度T 1/2(0.5 mg/ml时为71.0、65.3和52.9℃)下,野生型ROP(Steif, C., Weber, P., Hinz, H.-J., Flossdorf, J., Cesareni, G., Kokkinidis, M. Biochemistry 32:3867 - 3876, 1993)、L41V和L41A的ΔH零值分别从580±20降至461±20 kJ/(二聚体摩尔)和335±20 kJ/(二聚体摩尔)。由变性标准吉布斯自由能ΔGzeroD表示的25℃下的构象稳定性分别为71.7、61.1和46.1 kJ/(二聚体摩尔)。相应的转变焓是使用cDp(T)和cNp(T)函数通过外推获得的。它们在25℃下的值,野生型ROP、L41V和L41A分别为分别为176.3、101.9和141.7 kJ/(二聚体摩尔)。当将由产生空洞的突变引起的稳定性扰动与1摩尔CH2基团的交换相关联时,平均ΔΔGzeroD值为 -5.0±1 kJ/(CH2基团摩尔)。构象稳定性的这种降低表明,二聚体ROP对Leu→Val和Leu→Ala交换的敏感性与小单体蛋白相同。对野生型和突变蛋白溶液的偏比热容的仔细测定表明,突变效应主要在天然状态而非未折叠状态中表现出来。

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