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基于ABEGO的主链设计的局限性:αα转角和αα发夹之间的模糊性。

Limitations of the ABEGO-based backbone design: ambiguity between αα-corner and αα-hairpin.

作者信息

Sakuma Koya

机构信息

SOKENDAI, The Graduate University for Advanced Studies, Okazaki, Aichi 444-8585, Japan.

Institute for Molecular Science, Okazaki, Aichi 444-8585, Japan.

出版信息

Biophys Physicobiol. 2021 May 28;18:159-167. doi: 10.2142/biophysico.bppb-v18.017. eCollection 2021.

Abstract

ABEGO is a coarse-grained representation for poly-peptide backbone dihedral angles. The Ramachandran map is divided into four segments denoted as A, B, E, and G to represent the local conformation of poly-peptide chains in the character strings. Although the ABEGO representation is widely used in backbone building simulation for de novo protein design, it cannot capture minor differences in backbone dihedral angles, which potentially leads to ambiguity between two structurally distinct fragments. Here, I show a nontrivial example of two local motifs that could not be distinguished by their ABEGO representations. I found that two well-known local motifs αα-hairpins and αα-corners are both represented as α-GBB-α and thus indistinguishable in the ABEGO representation, although they show distinct arrangements of the flanking α-helices. I also found that α-GBB-α motifs caused a loss of efficiency in the ABEGO-based fragment-assembly simulations for de novo protein backbone design. Nevertheless, I was able to design amino-acid sequences that were predicted to fold into the target topologies that contained these α-GBB-α motifs, which suggests such topologies that are difficult to build by ABEGO-based simulations are designable once the backbone structures are modeled by some means. The finding that certain local motifs bottleneck the ABEGO-based fragment-assembly simulations for construction of backbone structures suggests that finer representations of backbone torsion angles are required for efficiently generating diverse topologies containing such indistinguishable local motifs.

摘要

ABEGO是一种用于多肽主链二面角的粗粒度表示方法。拉马钱德兰图被分为四个部分,分别表示为A、B、E和G,以代表字符串中多肽链的局部构象。尽管ABEGO表示法在从头蛋白质设计的主链构建模拟中被广泛使用,但它无法捕捉主链二面角的微小差异,这可能导致两个结构不同的片段之间产生歧义。在这里,我展示了两个局部基序的一个重要例子,它们无法通过ABEGO表示法来区分。我发现两个著名的局部基序αα-发夹和αα-转角在ABEGO表示法中都被表示为α-GBB-α,因此无法区分,尽管它们侧翼的α-螺旋排列不同。我还发现α-GBB-α基序在基于ABEGO的从头蛋白质主链设计的片段组装模拟中导致了效率损失。然而,我能够设计出预测会折叠成包含这些α-GBB-α基序的目标拓扑结构的氨基酸序列,这表明一旦通过某种方式对主链结构进行建模,那么基于ABEGO模拟难以构建的此类拓扑结构是可以设计的。某些局部基序在基于ABEGO的主链结构构建的片段组装模拟中成为瓶颈这一发现表明,为了有效地生成包含此类难以区分的局部基序的多样拓扑结构,需要对主链扭转角进行更精细的表示。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f326/8214924/7d8dad62a0db/18_159-g001.jpg

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