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N2144S突变对来自人原纤蛋白-1的结核杆菌钙结合表皮生长因子(TB-cbEGF)结构域对主链动力学的影响。

Effects of the N2144S mutation on backbone dynamics of a TB-cbEGF domain pair from human fibrillin-1.

作者信息

Yuan Xuemei, Werner Jörn M, Lack Jeremy, Knott Vroni, Handford Penny A, Campbell Iain D, Downing A Kristina

机构信息

Department of Biochemistry, University of Oxford, UK.

出版信息

J Mol Biol. 2002 Feb 8;316(1):113-25. doi: 10.1006/jmbi.2001.5329.

Abstract

The calcium-binding epidermal growth factor-like (cbEGF) module and the transforming growth factor beta-binding protein-like (TB) module are the two major structural motifs found in fibrillin-1, the extracellular matrix (ECM) protein defective in the Marfan syndrome (MFS). An MFS-causing mutation, N2144S, which removes a calcium ligand in cbEGF32, does not detectably affect fibrillin-1 biosynthesis, rate of secretion, processing, or deposition of reducible fibrillin-1 into the ECM. Since the residue at position 2144 is normally engaged in calcium ligation, it is unable to mediate intermolecular interactions. We have shown previously that this mutation does not affect the folding properties of the TB or cbEGF domains in vitro, but does decrease calcium-binding in cbEGF and TB-cbEGF domain constructs. Here, we use NMR spectroscopy to probe the effects of the N2144S mutation on backbone dynamic properties of TB6-cbEGF32. Analysis of the backbone (15)N relaxation data of wild-type TB6-cbEGF32 has revealed a flexible inter-domain linkage. Parallel dynamics analysis of the N2144S mutant has shown increased flexibility in the region joining the two domains as well as in the calcium-binding site at the N terminus of cbEGF32. This research demonstrates that a small change in peptide backbone flexibility, which does not enhance proteolytic susceptibility of the domain pair, is associated with an MFS phenotype. Flexibility of the TB-cbEGF linkage is likely to contribute to the biomechanical properties of fibrillin-rich connective tissue microfibrils, and may play a role in the microfibril assembly process.

摘要

钙结合表皮生长因子样(cbEGF)模块和转化生长因子β结合蛋白样(TB)模块是原纤维蛋白-1中发现的两个主要结构基序,原纤维蛋白-1是马凡综合征(MFS)中细胞外基质(ECM)缺陷蛋白。一种导致MFS的突变N2144S,它去除了cbEGF32中的一个钙配体,并未可检测地影响原纤维蛋白-1的生物合成、分泌速率、加工过程或可还原原纤维蛋白-1向ECM中的沉积。由于2144位的残基通常参与钙连接,它无法介导分子间相互作用。我们之前已经表明,这种突变在体外不影响TB或cbEGF结构域的折叠特性,但确实会降低cbEGF和TB-cbEGF结构域构建体中的钙结合。在这里,我们使用核磁共振光谱来探究N2144S突变对TB6-cbEGF32主链动力学性质的影响。对野生型TB6-cbEGF32的主链(15)N弛豫数据的分析揭示了一个灵活的结构域间连接。对N2144S突变体的平行动力学分析表明,在连接两个结构域的区域以及cbEGF32 N端的钙结合位点处的灵活性增加。这项研究表明,肽主链灵活性的微小变化,虽不增强结构域对的蛋白水解敏感性,但与MFS表型相关。TB-cbEGF连接的灵活性可能有助于富含原纤维蛋白的结缔组织微原纤维的生物力学性质,并可能在微原纤维组装过程中发挥作用。

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