Elastin.

Suzanne M Mithieux, Anthony S Weiss
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Abstract

Elastin is a key extracellular matrix protein that is critical to the elasticity and resilience of many vertebrate tissues including large arteries, lung, ligament, tendon, skin, and elastic cartilage. Tropoelastin associates with multiple tropoelastin molecules during the major phase of elastogenesis through coacervation, where this process is directed by the precise patterning of mostly alternating hydrophobic and hydrophilic sequences that dictate intermolecular alignment. Massively crosslinked arrays of tropoelastin (typically in association with microfibrils) contribute to tissue structural integrity and biomechanics through persistent flexibility, allowing for repeated stretch and relaxation cycles that critically depend on hydrated environments. Elastin sequences interact with multiple proteins found in or colocalized with microfibrils, and bind to elastogenic cell surface receptors. Knowledge of the major stages in elastin assembly has facilitated the construction of in vitro models of elastogenesis, leading to the identification of precise molecular regions that are critical to elastin-based protein interactions.

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弹性蛋白。
弹性蛋白是一种关键的细胞外基质蛋白,对许多脊椎动物组织的弹性和恢复力至关重要,包括大动脉、肺、韧带、肌腱、皮肤和弹性软骨。在弹性形成的主要阶段,弹力蛋白通过凝聚与多个弹力蛋白分子结合,这一过程是由几乎交替的疏水和亲水序列的精确模式指导的,这些序列决定了分子间的排列。大规模交联的tropoelastin阵列(通常与微原纤维结合)通过持续的柔韧性有助于组织结构的完整性和生物力学,允许重复的拉伸和松弛循环,这在很大程度上取决于水合环境。弹性蛋白序列与微原纤维中发现的或与微原纤维共定位的多种蛋白相互作用,并与弹性细胞表面受体结合。了解弹性蛋白组装的主要阶段有助于构建体外弹性发生模型,从而鉴定出对弹性蛋白相互作用至关重要的精确分子区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Elastin. RETRACTED: Theory, Methods, and Applications of Coevolution in Protein Contact Prediction Carrageenan and Furcellaran Structural basis of effector regulation and signal termination in heterotrimeric Galpha proteins. How do receptors activate G proteins?
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