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高度稳定的卵形TIM桶的从头设计:解锁口袋形状以实现功能设计。

De Novo Design of a Highly Stable Ovoid TIM Barrel: Unlocking Pocket Shape towards Functional Design.

作者信息

Chu Alexander E, Fernandez Daniel, Liu Jingjia, Eguchi Raphael R, Huang Po-Ssu

机构信息

Biophysics Program, Stanford University, Stanford, CA, USA.

Department of Bioengineering, Stanford University, Stanford, CA, USA.

出版信息

Biodes Res. 2022 Oct 10;2022:9842315. doi: 10.34133/2022/9842315. eCollection 2022.

Abstract

The ability to finely control the structure of protein folds is an important prerequisite to functional protein design. The TIM barrel fold is an important target for these efforts as it is highly enriched for diverse functions in nature. Although a TIM barrel protein has been designed de novo, the ability to finely alter the curvature of the central beta barrel and the overall architecture of the fold remains elusive, limiting its utility for functional design. Here, we report the de novo design of a TIM barrel with ovoid (twofold) symmetry, drawing inspiration from natural beta and TIM barrels with ovoid curvature. We use an autoregressive backbone sampling strategy to implement our hypothesis for elongated barrel curvature, followed by an iterative enrichment sequence design protocol to obtain sequences which yield a high proportion of successfully folding designs. Designed sequences are highly stable and fold to the designed barrel curvature as determined by a 2.1 Å resolution crystal structure. The designs show robustness to drastic mutations, retaining high melting temperatures even when multiple charged residues are buried in the hydrophobic core or when the hydrophobic core is ablated to alanine. As a scaffold with a greater capacity for hosting diverse hydrogen bonding networks and installation of binding pockets or active sites, the ovoid TIM barrel represents a major step towards the de novo design of functional TIM barrels.

摘要

精确控制蛋白质折叠结构的能力是功能性蛋白质设计的重要前提。TIM桶状折叠是这些研究工作的重要目标,因为它在自然界中具有丰富多样的功能。尽管已经从头设计出了一种TIM桶状蛋白,但精确改变中央β桶的曲率和折叠的整体结构的能力仍然难以捉摸,限制了其在功能设计中的应用。在这里,我们报告了一种具有卵形(双重)对称性的TIM桶状蛋白的从头设计,灵感来自具有卵形曲率的天然β桶和TIM桶。我们使用自回归主链采样策略来实现我们关于细长桶状曲率的假设,随后采用迭代富集序列设计方案来获得能够产生高比例成功折叠设计的序列。通过2.1 Å分辨率的晶体结构确定,设计的序列高度稳定,并折叠成设计的桶状曲率。这些设计对剧烈突变具有鲁棒性,即使多个带电荷的残基被埋入疏水核心或疏水核心被替换为丙氨酸时,仍保持高熔点温度。作为一种能够容纳多种氢键网络以及安装结合口袋或活性位点的支架,卵形TIM桶状蛋白代表了朝着功能性TIM桶状蛋白的从头设计迈出的重要一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4132/10521652/67d79402d0ae/9842315.fig.001.jpg

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