Panse V G, Swaminathan C P, Aloor J J, Surolia A, Varadarajan R
Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560 012, India.
Biochemistry. 2000 Mar 7;39(9):2362-9. doi: 10.1021/bi992484l.
SecB is a cytosolic tetrameric chaperone in Escherichia coli, which maintains polypeptides, destined for export in a translocation competent state. The thermodynamics of unfolding of SecB was studied as a function of protein concentration, by using high sensitivity-differential scanning calorimetry and spectroscopic methods. The thermal unfolding of tetrameric SecB is reversible and can be well described as a two-state transition in which the folded tetramer is converted directly to unfolded monomers. Increasing the pH decreases the stability of the tetramer significantly, the T(m) changing from 341.3 K at pH 6.5 to 332.6 K at pH 9.5. The value of DeltaC(p) obtained from measurements of DeltaH(m) as a function of T(m) was 10.7 +/- 0.7 kcal mol(-1) K(-1). The value of DeltaC(p) is among the highest measured for a multimeric protein. At 298 K, pH 7.4, the DeltaG degrees (u) for the SecB tetramer is 27.9 +/- 2 kcal mol(-1). Denaturant-mediated unfolding of SecB was found to be irreversible. The reactivity of the four solvent-exposed free thiols in tetrameric SecB is salt dependent. The kinetics of reactivity suggests that these four cysteines are in close proximity to each other and that these residues on each monomer are in chemically identical environments. The thermodynamic data suggest that SecB is a stable, well-folded, and tightly packed tetramer and that substrate binding occurs at a surface site rather than at an interior cavity.
SecB是大肠杆菌中的一种胞质四聚体伴侣蛋白,它能使注定要输出的多肽保持易位活性状态。通过使用高灵敏度差示扫描量热法和光谱方法,研究了SecB解折叠的热力学与蛋白质浓度的关系。四聚体SecB的热解折叠是可逆的,并且可以很好地描述为一种两态转变,即折叠的四聚体直接转变为未折叠的单体。提高pH值会显著降低四聚体的稳定性,其熔点(Tm)从pH 6.5时的341.3 K变为pH 9.5时的332.6 K。根据测得的焓变(ΔHm)随熔点(Tm)变化而得到的恒压热容变化值(ΔCp)为10.7±0.7 kcal·mol⁻¹·K⁻¹。该ΔCp值是多聚体蛋白中测得的最高值之一。在298 K、pH 7.4条件下,SecB四聚体的标准自由能变化(ΔG°u)为27.9±2 kcal·mol⁻¹。发现变性剂介导的SecB解折叠是不可逆的。四聚体SecB中四个溶剂暴露的游离巯基的反应性取决于盐浓度。反应动力学表明这四个半胱氨酸彼此靠近,并且每个单体上的这些残基处于化学性质相同的环境中。热力学数据表明SecB是一个稳定、折叠良好且紧密堆积的四聚体,底物结合发生在表面位点而非内部腔室。