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首页> 外文期刊>Acta Oto-Laryngologica >Nature versus design: the conformational propensities of d-amino acids and the importance of side chain chirality
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Nature versus design: the conformational propensities of d-amino acids and the importance of side chain chirality

机译:自然与设计:D-氨基酸的构象施力和侧链手性的重要性

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摘要

d-amino acids are useful building blocks for de novo peptide design and they play a role in aging-related diseases associated with gradual protein racemization. For amino acids with achiral side chains, one should be able to presume that the conformational propensities of l- and d-amino acids are a reflection of one another due to the straightforward geometric inversion at the C alpha atom. However, this presumption does not account for the directionality of the backbone dipole and the inverted propensities have never been definitively confirmed in this context. Furthermore, there is little known of how alternative side chain chirality affects the backbone conformations of isoleucine and threonine. Using a GGXGG host-guest pentapeptide system, we have completed exhaustive sampling of the conformational propensities of the d-amino acids, including d-allo-isoleucine and d-allo-threonine, using atomistic molecular dynamics simulations. Comparison of these simulations with the same systems hosting the cognate l-amino acids verifies that the intrinsic backbone conformational propensities of the d-amino acids are the inverse of their cognate l-enantiomers. Where amino acids have a chiral center in their side chain (Thr, Ile) the beta-configuration affects the backbone sampling, which in turn can confer different biological properties.
机译:D-氨基酸是De Novo Peptide设计的有用积木,它们在与逐渐蛋白质外消旋化相关的衰老相关疾病中起作用。对于具有成型侧链的氨基酸,应该能够假设Lα和D-氨基酸的构象施力是由于Cα原子的直接几何反转而彼此的反射。但是,该假设不考虑骨干偶极子的方向性,并且在这种情况下从未明确地确认了倒置的拟收。此外,替代侧链手性如何影响异亮氨酸和苏氨酸的骨干构象。使用GGXGG主机 - 客户五肽系统,我们使用原子分子动力学模拟完成了D-氨基酸的构象施力的详尽取样,包括D- allo-异亮氨酸和D- allo-ruleNine。这些模拟与托管同源L-氨基酸的相同系统的比较验证了D-氨基酸的内在骨干构象施力是其同源L-对映体的倒数。其中氨基酸在其侧链(Thr,ILe)中具有手性中心(Thr,ILE),β-配置影响骨架采样,其又可以赋予不同的生物学性质。

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