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首页> 外文期刊>Matrix biology: Journal of the International Society for Matrix Biology >Domains 17-27 of tropoelastin contain key regions of contact for coacervation and contain an unusual turn-containing crosslinking domain.
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Domains 17-27 of tropoelastin contain key regions of contact for coacervation and contain an unusual turn-containing crosslinking domain.

机译:原弹性蛋白的结构域17-27包含用于凝聚的关键接触区域,并且包含不寻常的含匝的交联结构域。

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摘要

The central region of tropoelastin including domains 19-25 of human tropoelastin forms a hot-spot for contacts during the inter-molecular association of tropoelastin by coacervation [Wise, S.G., Mithieux, S.M., Raftery, M.J. and Weiss, A.S (2005). "Specificity in the coacervation of tropoelastin: solvent exposed lysines." Journal of Structural Biology 149: 273-81.]. We explored the physical properties of this central region using a sub-fragment bordered by domains 17-27 of human tropoelastin (SHEL 17-27) and identified the intra- and inter-molecular contacts it forms during coacervation. A homobifunctional amine reactive crosslinker (with a maximum reach of 11 A, corresponding to approximately 7 residues in an extended polypeptide chain) was used to capture these contacts and crosslinked regions were identified after protease cleavage and mass spectrometry (MS) with MS/MS verification. An intermolecular crosslink formed between the lysines at positions 353 of each strand of tropoelastin at the lowest of crosslinker concentrations and was observed in all samples tested, suggesting that this residue forms an important initial contact during coacervation. At higher crosslinker concentrations, residues K425 and K437 showed the highest levels of involvement in crosslinks. An intramolecular crosslink between these K425 and K437, separated by 11 residues, indicated that a structural bend must serve to bring these residues into close proximity. These studies were complemented by small angle X-ray scattering studies that confirmed a bend in this important subfragment of the tropoelastin molecule.
机译:包括人原弹性蛋白的19-25结构域在内的原弹性蛋白的中心区域在原弹性蛋白通过凝聚作用的分子间缔合期间形成接触的热点[Wise,S.G.,Mithieux,S.M.,Raftery,M.J. and Weiss,A.S(2005)。 “原弹性蛋白凝聚的特异性:溶剂暴露的赖氨酸。”结构生物学杂志149:273-81。我们使用以人类原弹性蛋白的结构域17-27(SHEL 17-27)为边界的亚片段探索了该中央区域的物理性质,并确定了在凝聚过程中形成的分子内和分子间接触。使用同双功能胺反应性交联剂(最大范围为11 A,对应于延伸的多肽链中约7个残基)来捕获这些接触,并通过MS / MS验证对蛋白酶进行裂解和质谱分析(MS)后确定了交联区域。在最低交联剂浓度下,在原弹性蛋白的每条链的位置353处的赖氨酸之间形成了分子间交联,并且在所有测试样品中均观察到该分子间交联,表明该残基在凝聚过程中形成了重要的初始接触。在较高的交联剂浓度下,残基K425和K437显示参与交联的水平最高。这些K425和K437之间的分子内交联被11个残基隔开,表明结构弯曲必须起到使这些残基紧密接近的作用。这些研究得到了小角度X射线散射研究的补充,这些研究证实了原弹性蛋白分子的这一重要亚片段发生了弯曲。

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