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首页> 外文期刊>Biomacromolecules >Equilibrium Conformational Ensemble of the Intrinsically Disordered Peptide n16N: Linking Subdomain Structures and Function in Nacre
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Equilibrium Conformational Ensemble of the Intrinsically Disordered Peptide n16N: Linking Subdomain Structures and Function in Nacre

机译:本征混乱的肽n16N的平衡构象合奏:珍珠母中的链接子域结构和功能。

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摘要

n16 is a framework protein family associated with biogenic mineral stabilization, thought to operate at three key interfaces in nacre: protein/beta-chitin, protein/protein, and protein/CaCO3. The N-terminal half of this protein, n16N, is known to be active in conferring this mineral stabilization and organization. While some details relating to the stabilization and organization of the mineral are known, the molecular mechanisms that underpin these processes are not yet established. To provide these molecular-scale details, here we explore current hypotheses regarding the possible subdomain organization of n16N, as related to these three interfaces in nacre, by combining outcomes of Replica Exchange with Solute Tempering molecular dynamics simulations with NMR experiments, to investigate the conformational ensemble of n16N in solution. We verify that n16N lacks a well-defined secondary structure, both with and without the presence of Ca2+ ions, as identified from previous experiments. Our data support the presence of three different, functional subdomains within n16N. Our results reveal that tyrosine, chiefly located in the center of the peptide, plays a multifunctional role in stabilizing conformations of n16N, for intrapeptide and possibly interpeptide interactions. Complementary NMR spectroscopy data confirm the participation of tyrosine in this stabilization. The C-terminal half of n16N, lacking in tyrosine and highly charged, shows substantive conformational diversity and is proposed as a likely site for nucleation of calcium carbonate. Finally, dominant structures from our predicted conformational ensemble suggest the presentation of key residues thought to be critical to the selective binding to beta-chitin surfaces.
机译:n16是与生物矿物质稳定相关的框架蛋白家族,被认为可以在珍珠质的三个关键界面上起作用:蛋白质/β-甲壳素,蛋白质/蛋白质和蛋白质/ CaCO3。已知该蛋白质的N末端一半为n16N,可有效赋予矿物质稳定和组织。尽管已知一些有关矿物稳定和组织的细节,但尚未确定支撑这些过程的分子机制。为了提供这些分子尺度的细节,在这里,我们通过将副本交换与溶质回火分子动力学模拟与NMR实验相结合,探索与珍珠质中这三个界面相关的n16N可能亚域组织的当前假说,以研究构象。溶液中n16N的集合。我们验证了n16N缺乏明确定义的二级结构,无论是否存在Ca2 +离子,如先前实验所述。我们的数据支持在n16N中存在三个不同的功能子域。我们的结果表明,酪氨酸主要位于肽的中心,对于内肽和可能的肽间相互作用,在稳定n16N构象中起着多功能作用。互补的NMR光谱数据证实了酪氨酸参与了这种稳定作用。 n16N的C末端一半缺乏酪氨酸,电荷很高,显示出构象上的多样性,被认为是碳酸钙成核的可能部位。最后,来自我们预测的构象整体的优势结构表明关键残基的呈现被认为对选择性结合至β-甲壳质表面至关重要。

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