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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Molecular modeling of the elastomeric properties of repeating units and building blocks of resilin, a disordered elastic protein
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Molecular modeling of the elastomeric properties of repeating units and building blocks of resilin, a disordered elastic protein

机译:重复单元的弹性特性的分子建模和Resilin的构建块,无序的弹性蛋白质

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The mechanisms responsible for the properties of disordered elastomeric proteins are not well known. To better understand the relationship between elastomeric behavior and amino acid sequence, we investigated resilin, a disordered rubber-like protein, found in specialized regions of the cuticle of insects. Resilin of Drosophila melanogaster contains Glyrich repetitive motifs comprised of the amino acids, PSSSYGAPGGGNGGR, which confer elastic properties to resilin. The repetitive motifs of insect resilin can be divided into smaller partially conserved building blocks: PSS, SYGAP, GGGN and GGR. Using molecular dynamics (MD) simulations, we studied the relative roles of SYGAP, and its less common variants SYSAP and TYGAP, on the elastomeric properties of resilin. Results showed that SYGAP adopts a bent structure that is one-half to one-third the end-to-end length of the other motifs having an equal number of amino acids but containing SYSAP or TYGAP substituted for SYGAP. The bent structure of SYGAP forms due to conformational freedom of glycine, and hydrogen bonding within the motif apparently plays a role in maintaining this conformation. These structural features of SYGAP result in higher extensibility compared to other motifs, which may contribute to elastic properties at the macroscopic level. Overall, the results are consistent with a role for the SYGAP building block in the elastomeric properties of these disordered proteins. What we learned from simulating the repetitive motifs of resilin may be applicable to the biology and mechanics of other elastomeric biomaterials, and may provide us the deeper understanding of their unique properties. (C) 2016 Elsevier Ltd. All rights reserved.
机译:负责无序弹性体蛋白质的性质的机制是不公知的。为了更好地了解弹性体行为和氨基酸序列之间的关系,我们研究了在昆虫的角质层的专门区域中发现的无序橡胶状蛋白质的Resilin。果蝇的Resilin含有由氨基酸,PSSsygapGGGGGR组成的Glyrich重复基序,其赋予Resilin的弹性性能。昆虫resilin的重复基序可分为较小的部分保守的构建块:PSS,Sygap,GGGN和GGR。使用分子动力学(MD)模拟,我们研究了Sygap的相对作用及其较少的常见变体Sysap和Tygap,对Resilin的弹性体特性。结果表明,Sygap采用弯曲结构,该结构是具有相同数量的氨基酸但含有Sysap或Tygap取代的Sygap的其他基序的另一个基序的一半到最终长度的弯曲结构。由于构象的甘氨酸自由度,Sygap形式的弯曲结构和基序内的氢键合显然在保持这种构象时起作用。与其他基序相比,Sygap的这些结构特征导致较高的可伸展性,这可能有助于在宏观水平处有助于弹性性质。总体而言,结果与这些无序蛋白质弹性体特性的Sygap结构块的作用一致。我们从模拟Resilin的重复图案中学到的是,可以适用于其他弹性体生物材料的生物学和机制,并且可以为我们提供对其独特性质的更深层次的理解。 (c)2016 Elsevier Ltd.保留所有权利。

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