Equilibrium Conformational Ensemble of the Intrinsically Disordered Peptide n16N: Linking Subdomain Structures and Function in Nacre

被引:24
作者
Brown, Aaron H. [1 ]
Rodger, P. Mark [2 ]
Evans, John Spencer [4 ,5 ]
Walsh, Tiffany R. [3 ]
机构
[1] Univ Warwick, Dept Chem, Coventry CV4 7AL, W Midlands, England
[2] Univ Warwick, Ctr Sci Comp, Coventry CV4 7AL, W Midlands, England
[3] Deakin Univ, Inst Frontier Mat, Geelong, Vic 3216, Australia
[4] NYU, Dept Craniofacial Biol, New York, NY 10010 USA
[5] NYU, Ctr Skeletal Sci, New York, NY 10010 USA
基金
英国工程与自然科学研究理事会;
关键词
FREE-ENERGY LANDSCAPE; REPLICA-EXCHANGE; CALCIUM-CARBONATE; ORGANIC MATRIX; EXPLICIT SOLVENT; FORCE-FIELDS; PROTEIN; DYNAMICS; BINDING; BIOMINERALIZATION;
D O I
10.1021/bm501263s
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
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.
引用
收藏
页码:4467 / 4479
页数:13
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