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匍枝根霉RNase Rs的平衡去折叠:化学变性和热变性的pH依赖性

Equilibrium unfolding of RNase Rs from Rhizopus stolonifer: pH dependence of chemical and thermal denaturation.

作者信息

Deshpande Rajashree A, Khan M Islam, Shankar Vepatu

机构信息

Division of Biochemical Sciences, National Chemical Laboratory, Pune 411 008, India.

出版信息

Biochim Biophys Acta. 2003 May 30;1648(1-2):184-94. doi: 10.1016/s1570-9639(03)00133-x.

Abstract

The conformational stability of RNase Rs was determined with chemical and thermal denaturants over the pH range of 1-10. Equilibrium unfolding with urea showed that values of D(1/2) (5.7 M) and DeltaG(H(2)O) (12.8 kcal/mol) were highest at pH 5.0, its pI and the maximum conformational stability of RNase Rs was observed near pH 5.0. Denaturation with guanidine hydrochloride (GdnHCl), at pH 5.0, gave similar values of DeltaG(H(2)O) although GdnHCl was 2-fold more potent denaturant with D(1/2) value of 3.1 M. The curves of fraction unfolded (f(U)) obtained with fluorescence and CD measurements overlapped at pH 5.0. Denaturation of RNase Rs with urea in the pH range studied was reversible but the enzyme denatured irreversibly >pH 11.0. Thermal denaturation of RNase Rs was reversible in the pH range of 2.0-3.0 and 6.0-9.0. Thermal denaturation in the pH range 4.0-5.5 resulted in aggregation and precipitation of the protein above 55 degrees C. The aggregate was amorphous or disordered precipitate as observed in TE micrographs. Blue shift in emission lambda(max) and enhancement of fluorescence intensity of ANS at 70 degrees C indicated the presence of solvent exposed hydrophobic surfaces as a result of heat treatment. Aggregation could be prevented partially with alpha-cyclodextrin (0.15 M) and completely with urea at concentrations >3 M. Aggregation was probably due to intermolecular hydrophobic interaction favored by minimum charge-charge repulsion at the pI of the enzyme. Both urea and temperature-induced denaturation studies showed that RNase Rs unfolds through a two-state F right arrow over left arrow U mechanism. The pH dependence of stability described by DeltaG(H(2)O) (urea) and DeltaG (25 degrees C) suggested that electrostatic interactions among the charged groups make a significant contribution to the conformational stability of RNase Rs. Since RNase Rs is a disulfide-containing protein, the major element for structural stability are the covalent disulfide bonds.

摘要

在pH值1 - 10范围内,使用化学变性剂和热变性剂测定了核糖核酸酶Rs的构象稳定性。用尿素进行的平衡去折叠实验表明,在pH 5.0(其pI值)时,D(1/2)(5.7 M)和ΔG(H₂O)(12.8 kcal/mol)的值最高,并且在pH 5.0附近观察到核糖核酸酶Rs的最大构象稳定性。在pH 5.0时,用盐酸胍(GdnHCl)进行变性实验得到的ΔG(H₂O)值相似,尽管GdnHCl的变性能力是尿素的2倍,其D(1/2)值为3.1 M。通过荧光和圆二色性测量得到的未折叠分数(f(U))曲线在pH 5.0时重叠。在所研究的pH范围内,用尿素使核糖核酸酶Rs变性是可逆的,但在pH > 11.0时酶不可逆变性。核糖核酸酶Rs在pH 2.0 - 3.0和6.0 - 9.0范围内的热变性是可逆的。在pH 4.0 - 5.5范围内的热变性导致蛋白质在55℃以上聚集和沉淀。如透射电子显微镜照片所示,聚集体是无定形或无序沉淀。在70℃时,发射λ(max)的蓝移和ANS荧光强度的增强表明由于热处理存在溶剂暴露的疏水表面。用α - 环糊精(0.15 M)可部分防止聚集,用浓度>3 M的尿素可完全防止聚集。聚集可能是由于在酶的pI处最小的电荷 - 电荷排斥有利于分子间疏水相互作用。尿素和温度诱导的变性研究均表明,核糖核酸酶Rs通过两态F⇌U机制去折叠。由ΔG(H₂O)(尿素)和ΔG(25℃)描述的稳定性的pH依赖性表明,带电基团之间的静电相互作用对核糖核酸酶Rs的构象稳定性有重要贡献。由于核糖核酸酶Rs是一种含二硫键的蛋白质,结构稳定性的主要因素是共价二硫键。

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