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蜘蛛丝蛋白Spidroin-1的结构模型

Structural Model for the Spider Silk Protein Spidroin-1.

作者信息

dos Santos-Pinto José Roberto Aparecido, Arcuri Helen Andrade, Priewalder Helga, Salles Heliana Clara, Palma Mario Sergio, Lubec Gert

机构信息

Center of the Study of Social Insects, Department of Biology, Institute of Biosciences of Rio Claro, São Paulo State University , Rio Claro, SP 13500, Brazil.

Department of Pediatrics, Medical University of Vienna , Vienna 1090, Austria.

出版信息

J Proteome Res. 2015 Sep 4;14(9):3859-70. doi: 10.1021/acs.jproteome.5b00243. Epub 2015 Aug 11.

Abstract

Most reports about the 3-D structure of spidroin-1 have been proposed for the protein in solid state or for individual domains of these proteins. A gel-based mass spectrometry strategy using collision-induced dissociation (CID) and electron-transfer dissociation (ETD) fragmentation methods was used to completely sequence spidroins-1A and -1B and to assign a series of post-translational modifications (PTMs) on to the spidroin sequences. A total of 15 and 16 phosphorylation sites were detected on spidroin-1A and -1B, respectively. In this work, we present the nearly complete amino acid sequence of spidroin-1A and -1B, including the nonrepetitive N- and C-terminal domains and a highly repetitive central core. We also described a fatty acid layer surrounding the protein fibers and PTMs in the sequences of spidroin-1A and -1B, including phosphorylation. Thus, molecular models for phosphorylated spidroins were proposed in the presence of a mixture fatty acids/water (1:1) and submitted to molecular dynamics simulation. The resulting models presented high content of coils, a higher percentage of α-helix, and an almost neglected content of 310-helix than the previous models. Knowledge of the complete structure of spidroins-1A and -1B would help to explain the mechanical features of silk fibers. The results of the current investigation provide a foundation for biophysical studies of the mechanoelastic properties of web-silk proteins.

摘要

大多数关于蛛丝蛋白-1三维结构的报道都是针对固态蛋白质或其单个结构域提出的。采用基于凝胶的质谱策略,结合碰撞诱导解离(CID)和电子转移解离(ETD)碎裂方法,对蛛丝蛋白-1A和-1B进行了完全测序,并在蛛丝蛋白序列上确定了一系列翻译后修饰(PTM)。在蛛丝蛋白-1A和-1B上分别检测到总共15个和16个磷酸化位点。在这项工作中,我们展示了蛛丝蛋白-1A和-1B几乎完整的氨基酸序列,包括非重复的N端和C端结构域以及高度重复的中央核心。我们还描述了围绕蛋白质纤维的脂肪酸层以及蛛丝蛋白-1A和-1B序列中的翻译后修饰,包括磷酸化。因此,在存在脂肪酸/水混合物(1:1)的情况下提出了磷酸化蛛丝蛋白的分子模型,并进行了分子动力学模拟。与之前的模型相比,所得模型呈现出高含量的卷曲结构、更高比例的α螺旋以及几乎可忽略不计的310螺旋含量。了解蛛丝蛋白-1A和-1B的完整结构将有助于解释丝纤维的力学特性。当前研究结果为蛛网丝蛋白机械弹性特性的生物物理研究奠定了基础。

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