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嗜热栖热放线菌纤维素体中II型锚定蛋白模块的结构表征:钙对构象和靶标识别的诱导作用

Structural characterization of type II dockerin module from the cellulosome of Clostridium thermocellum: calcium-induced effects on conformation and target recognition.

作者信息

Adams Jarrett J, Webb Bradley A, Spencer Holly L, Smith Steven P

机构信息

Department of Biochemistry, Queen's University, Kingston, Ontario, Canada K7L 3N6.

出版信息

Biochemistry. 2005 Feb 15;44(6):2173-82. doi: 10.1021/bi048039u.

Abstract

The assembly of a functional cellulose-degrading complex termed the cellulosome involves two specific calcium-dependent cohesin-dockerin interactions: type I and type II. Extensive structural and mutagenesis studies have been performed on the type I modules and their interaction in an attempt to identify the underlying molecular determinants responsible for this specificity. However, very little structural information exists for the type II interaction. We have performed a variety of biophysical studies on the type II dockerin-X-module modular pair (DocX), which comprises the C-terminal region of cellulosomal scaffoldin subunit from Clostridium thermocellum, to determine the effect of calcium on its structure and interaction with type II cohesin. Our results indicate that calcium binding to type II dockerin occurs with an apparent dissociation constant (K(d)) of 7 microM, induces stable secondary and tertiary structure, and leads to the exposure of a hydrophobic surface. Calcium binding also results in the homodimerization of DocX. Analytical ultracentrifugation experiments indicate that the DocX homodimer has an elongated shape and a K(d) of approximately 40 microM. However, addition of the SdbA type II cohesin binding partner led to the dissociation of the DocX homodimer and to the formation of a 1:1 heterodimer. We propose that the exposed hydrophobic surface forms, at least in part, the type II cohesin-binding site, which in the absence of cohesin results in the dimerization of DocX.

摘要

一种称为纤维小体的功能性纤维素降解复合体的组装涉及两种特定的钙依赖性粘着素-坞蛋白相互作用:I型和II型。针对I型模块及其相互作用已开展了广泛的结构和诱变研究,以试图确定造成这种特异性的潜在分子决定因素。然而,关于II型相互作用的结构信息非常少。我们对II型坞蛋白-X模块模块对(DocX)进行了各种生物物理研究,该模块对包含来自嗜热栖热菌的纤维小体支架蛋白亚基的C末端区域,以确定钙对其结构以及与II型粘着素相互作用的影响。我们的结果表明,钙与II型坞蛋白结合的表观解离常数(K(d))为7 microM,诱导稳定的二级和三级结构,并导致疏水表面的暴露。钙结合还导致DocX的同二聚化。分析型超速离心实验表明,DocX同二聚体呈细长形状,K(d)约为40 microM。然而,添加SdbA II型粘着素结合伴侣会导致DocX同二聚体解离并形成1:1异二聚体。我们提出,暴露的疏水表面至少部分形成II型粘着素结合位点,在没有粘着素的情况下,该位点会导致DocX二聚化。

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