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pH-Jump-Induced Folding and Unfolding Studies of Barstar: Evidence for Multiple Folding and Unfolding Pathways

机译:PH-跳跃诱导的Barstar的折叠和展开研究:多折叠和展开途径的证据

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摘要

Equilibrium and kinetic characterization of the high pH-induced unfolding transition of the small protein barstar have been carried out in the pH range 7-12. A mutant form of barstar, containing a single tryptophan, Trp 53, completely buried in the core of the native protein, has been used. It is shown that the protein undergoes reversible unfolding above pH 10. The pH 12 form (the D form) appears to be as unfolded as the form unfolded by 6 M guanidine hydrochloride (GdnHCl) at pH 7 (the U form): both forms have similar fluorescence and far-UV circular dichroism (CD) signals and have similar sizes, as determined by dynamic light scattering and size-exclusion chromatography. No residual stmcture is detected in the D form: addition of GdnHCl does not alter its fluorescence and far-UV CD properties. The fluorescence signal of Trp 53 has been used to monitor folding and unfolding kinetics. The kinetics of folding of the D form in the pH range 7-Il are complex and are described by four exponential processes, as are the kinetics of unfolding of the native state (N state) in the pH range 10.5-12. Each kinetic phase of folding decreases in rate with increase in pH from 7 to 10.85, and each kinetic phase of unfolding decreases in rate with decrease in pH from 12 to 10.85. At pH 10.85, the folding and unfolding rates for any particular kinetic phase are identical and minimal. The two slowest phases of folding and unfolding have identical kinetics whether measured by Trp 53 fluorescence or by mean residue ellipticity at 222 nm. Direct determination of the increase in the N state with time of folding at pH 7 and of the D form with time of unfolding at pH 12, by means of double-jump assays, show that between 85 and 95% of protein molecules fold or unfold via fast pathways between the two forms. The remaining 5-15% of protein molecules appear to fold or unfold via slower pathways, on which at least two intermediates accumulate. The mechanism of folding from the high pH-denatured D form is remarkably similar to the mechanism of folding from the urea or GdnHCl-denatured U form.
机译:在pH范围7-12中,在pH范围内进行了小pH诱导的小pH诱导的展开过渡的平衡和动力学表征。已经使用含有单个色氨酸,TRP 53的突变形式,其被完全埋在天然蛋白质的核心中。结果表明,该蛋白质经历了以上的pH10的可逆展开。pH 12形式(D形式)似乎展开,因为在pH 7(U形式)在pH7(U形)的6M胍盐酸盐(GdnHCl)展开的形式具有类似的荧光和远UV圆形二色性(CD)信号并具有相似的尺寸,如通过动态光散射和尺寸排阻色谱法所确定的。在D形式中检测到残留的stmcture:添加GdnHCL不会改变其荧光和远UV CD性能。 TRP 53的荧光信号已用于监测折叠和展开动力学。在pH范围7-IL中的D形式的折叠动力学是复杂的,并且由四个指数过程描述,也是在pH范围10.5-12中展开天然状态(n态)的动力学。折叠的每个动力阶段以7至10.85的pH增加,速率增加,并且展开的每个动力阶段在12至10.85的pH值下降时降低。在pH105处,任何特定动力阶段的折叠和展开率是相同的并且最小的。折叠和展开的两个最慢的相位具有相同的动力学,无论是通过TRP 53荧光或在222nm处的平均残留物椭圆形测量的相同动力学。通过双跳测定,在pH7和pH7和pH1中折叠时与pH7和D形式进行折叠时的镍态的增加,表明,在85至95%的蛋白质分子折叠或展开之间通过两种形式之间的快速途径。剩余的5-15%的蛋白质分子似乎通过较慢的途径折叠或展开,至少两个中间体积聚。从高pH值变性的D形式折叠的机制非常类似于从尿素或GDNHCL-变性U形式的折叠机制。

著录项

  • 来源
    《Biochemistry》 |2001年第50期|共13页
  • 作者单位

    National Centre for Biological Sciences Tata Institute of Fundamental Research GKVK Campus Bangalore 560065 India;

    National Centre for Biological Sciences Tata Institute of Fundamental Research GKVK Campus Bangalore 560065 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
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