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首页> 外文期刊>Biomacromolecules >Effect of Chain Topology on the Self-Organization and Dynamics of Block Copolypeptides: From Diblock Copolymers to Stars
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Effect of Chain Topology on the Self-Organization and Dynamics of Block Copolypeptides: From Diblock Copolymers to Stars

机译:链拓扑结构对嵌段共肽自组织和动力学的影响:从二嵌段共聚物到星形

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摘要

The effect of chain topology on (i) the peptide secondary structure, (ii) the nanophase self-assembly, and (iii) the local segmental and global peptide relaxations has been studied in a series of model diblock and 3-arm star copolypeptides of poly(ε-carbobenzyloxy-L-lysine) (PZLL) and poly(γ-benzyl-L-glutamate) (PBLG) with PZLL forming the core. Diblock copolypeptides are nanophase separated with PBLG and PZLL domains comprising α-helices packed in a hexagonal lattice. Star copolypeptides are only weakly phase separated, comprising PBLG and PZLL α-helices in a pseudohexagonal lattice. Phase mixing has profound consequences on the local and global dynamics. The relaxation of the peptide secondary structure speeds up, and the helix persistence length is further reduced in the stars, signifying an increased concentration of helical defects.
机译:链拓扑对(i)肽二级结构,(ii)纳米相自组装和(iii)局部节段性和整体性肽松弛的影响已在一系列模型的diblock和3-arm star共多肽中进行了研究聚(ε-羰基苄氧基-L-赖氨酸)(PZLL)和聚(γ-苄基-L-谷氨酸)(PBLG),其中PZLL形成核心。二嵌段共多肽被PBLG和PZLL结构域纳米相分离,PBLG和PZLL结构域包含堆积在六角形晶格中的α-螺旋。星形共多肽仅被弱相分离,包括伪六边形晶格中的PBLG和PZLLα螺旋。相混合对局部和全局动力学具有深远的影响。肽二级结构的松弛加快,并且恒星中的螺旋持续长度进一步减小,这表明螺旋缺陷的浓度增加。

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