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双-ANS与分离的GroEL顶端结构域片段的结合诱导形成一种折叠中间体,其具有在十四聚体GroEL中未观察到的增加的疏水表面。

The binding of bis-ANS to the isolated GroEL apical domain fragment induces the formation of a folding intermediate with increased hydrophobic surface not observed in tetradecameric GroEL.

作者信息

Smoot A L, Panda M, Brazil B T, Buckle A M, Fersht A R, Horowitz P M

机构信息

Department of Biochemistry, University of Texas Health Science Center at San Antonio, San Antonio, Texas 78229-3900, USA.

出版信息

Biochemistry. 2001 Apr 10;40(14):4484-92. doi: 10.1021/bi001822b.

Abstract

The extent of hydrophobic exposure upon bis-ANS binding to the functional apical domain fragment of GroEL, or minichaperone (residues 191-345), was investigated and compared with that of the GroEL tetradecamer. Although a total of seven molecules of bis-ANS bind cooperatively to this minichaperone, most of the hydrophobic sites were induced following initial binding of one to two molecules of probe. From the equilibrium and kinetics studies at low bis-ANS concentrations, it is evident that the native apical domain is converted to an intermediate conformation with increased hydrophobic surfaces. This intermediate binds additional bis-ANS molecules. Tyrosine fluorescence detected denaturation demonstrated that bis-ANS can destabilize the apical domain. The results from (i) bis-ANS titrations, (ii) urea denaturation studies in the presence and absence of bis-ANS, and (iii) intrinsic tyrosine fluorescence studies of the apical domain are consistent with a model in which bis-ANS binds tightly to the intermediate state, relatively weakly to the native state, and little to the denatured state. The results suggest that the conformational changes seen in apical domain fragments are not seen in the intact GroEL oligomer due to restrictions imposed by connections of the apical domain to the intermediate domain and suppression of movement due to quaternary structure.

摘要

研究了双-ANS与GroEL功能顶端结构域片段(即小伴侣蛋白,残基191 - 345)结合时疏水暴露的程度,并与GroEL十四聚体进行了比较。虽然共有七个双-ANS分子协同结合到这个小伴侣蛋白上,但大多数疏水位点是在一到两个探针分子初始结合后被诱导产生的。从低双-ANS浓度下的平衡和动力学研究可以明显看出,天然顶端结构域转变为具有增加的疏水表面的中间构象。这种中间构象会结合额外的双-ANS分子。酪氨酸荧光检测的变性表明双-ANS会使顶端结构域不稳定。(i)双-ANS滴定、(ii)在有和没有双-ANS存在下尿素变性研究以及(iii)顶端结构域的内在酪氨酸荧光研究结果与一个模型一致,即双-ANS与中间状态紧密结合,与天然状态结合相对较弱,与变性状态几乎不结合。结果表明,由于顶端结构域与中间结构域连接所施加的限制以及四级结构对运动的抑制,在完整的GroEL寡聚体中看不到顶端结构域片段中所见的构象变化。

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