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精氨酸肽长度对 siRNA-肽复合物结构和结合强度的影响。

Effect of arginine-rich peptide length on the structure and binding strength of siRNA-peptide complexes.

机构信息

Bio Research Center, Samsung Advanced Institute of Technology (SAIT), Samsung Electronics Co., Ltd., Yongin, 446-712, South Korea.

出版信息

J Phys Chem B. 2013 Jun 13;117(23):6917-26. doi: 10.1021/jp402868g. Epub 2013 May 30.

DOI:10.1021/jp402868g
PMID:23697608
Abstract

Heparin decomplexation experiments, as well as all-atom (AA) and coarse-grained (CG) molecular dynamics (MD) simulations, were performed to determine the effect of the size of arginine(Arg)-rich peptides on the structure and binding strength of the siRNA-peptide complex. At a fixed peptide/siRNA mole ratio of 5:1 or 10:1, the siRNA complexes with peptides longer than nine Arg residues are more easily decomplexed by heparin than are those with nine Arg residues. At these mole ratios, peptides longer than nine Arg residues have cationic/anionic charge ratios in excess of unity, and produce more weakly bound complexes than nine Arg residue ones do. AA simulations of mixtures of peptides with a single siRNA show formation of an electrostatically induced complex, and the longer peptides produce a larger complex, but with no significant increase in the number of Arg residues bound to the siRNA. Larger-scale CG-MD simulations show that multiple siRNAs can be linked together by peptides into a large complex, as observed in the experiments. The peptides longer than nine residues, which at mole ratio 5:1 yield a peptide/siRNA charge ratio in excess of unity, include many noninteracting Arg residues, which repel each other electrostatically. This leads to a less dense complex than for 9-residue peptides, which can explain why these longer complexes are more easily decomplexed by heparin molecules, as observed in the experiments. The key role of the charge ratio is supported by simulations that show that, at a mole ratio of 2.5 peptides per siRNA, the longer 18-residue peptide has a charge ratio of roughly unity and also shows a tight complex, just as the 9-residue peptide does at a 5:1 mole ratio, where its charge ratio is also unity.

摘要

肝素解络合实验以及全原子(AA)和粗粒化(CG)分子动力学(MD)模拟,以确定精氨酸(Arg)丰富肽的大小对siRNA-肽复合物的结构和结合强度的影响。在固定肽/siRNA摩尔比为 5:1 或 10:1 的情况下,Arg 残基长于 9 的肽与 siRNA 复合比 Arg 残基长为 9 的肽更容易被肝素解络合。在这些摩尔比下,Arg 残基长于 9 的肽具有超过 1 的阳离子/阴离子电荷比,并且产生比 Arg 残基长为 9 的肽更弱的结合复合物。带有单个 siRNA 的肽混合物的 AA 模拟显示形成静电诱导复合物,并且较长的肽产生较大的复合物,但与结合到 siRNA 的 Arg 残基数量没有显著增加。更大规模的 CG-MD 模拟表明,多个 siRNA 可以通过肽连接在一起形成一个大的复合物,如实验中观察到的那样。在摩尔比为 5:1 时,Arg 残基长于 9 的肽产生超过 1 的肽/siRNA 电荷比,包含许多非相互作用的 Arg 残基,这些 Arg 残基彼此静电排斥。这导致比 9 个残基肽的复合物密度更小,这可以解释为什么在实验中观察到这些较长的复合物更容易被肝素分子解络合。模拟结果表明,在摩尔比为 2.5 个肽/siRNA 时,更长的 18 个残基肽的电荷比约为 1,并且也显示出紧密的复合物,就像在 5:1 摩尔比下的 9 个残基肽一样,其电荷比也为 1,这支持了电荷比的关键作用。

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