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蛋白质环中内在无序性的演变

Evolution of Intrinsic Disorder in Protein Loops.

作者信息

Mughal Fizza, Caetano-Anollés Gustavo

机构信息

Evolutionary Bioinformatics Laboratory, Department of Crop Sciences, University of Illinois, Urbana, IL 61801, USA.

C.R. Woese Institute for Genomic Biology, University of Illinois, Urbana, IL 61801, USA.

出版信息

Life (Basel). 2023 Oct 14;13(10):2055. doi: 10.3390/life13102055.

Abstract

Intrinsic disorder accounts for the flexibility of protein loops, molecular building blocks that are largely responsible for the processes and molecular functions of the living world. While loops likely represent early structural forms that served as intermediates in the emergence of protein structural domains, their origin and evolution remain poorly understood. Here, we conduct a phylogenomic survey of disorder in loop prototypes sourced from the ArchDB classification. Tracing prototypes associated with protein fold families along an evolutionary chronology revealed that ancient prototypes tended to be more disordered than their derived counterparts, with ordered prototypes developing later in evolution. This highlights the central evolutionary role of disorder and flexibility. While mean disorder increased with time, a minority of ordered prototypes exist that emerged early in evolutionary history, possibly driven by the need to preserve specific molecular functions. We also revealed the percolation of evolutionary constraints from higher to lower levels of organization. Percolation resulted in trade-offs between flexibility and rigidity that impacted prototype structure and geometry. Our findings provide a deep evolutionary view of the link between structure, disorder, flexibility, and function, as well as insights into the evolutionary role of intrinsic disorder in loops and their contribution to protein structure and function.

摘要

内在无序性决定了蛋白质环的灵活性,蛋白质环是构成分子的基本单位,在很大程度上决定了生命世界的各种过程和分子功能。虽然环可能代表了早期的结构形式,是蛋白质结构域出现过程中的中间体,但其起源和进化仍知之甚少。在这里,我们对源自ArchDB分类的环原型中的无序性进行了系统发育基因组学调查。沿着进化时间线追踪与蛋白质折叠家族相关的原型发现,古老的原型往往比其衍生的对应物更无序,有序的原型在进化后期才出现。这突出了无序性和灵活性在进化中的核心作用。虽然平均无序性随时间增加,但仍有少数有序原型在进化历史早期出现,这可能是由保留特定分子功能的需求驱动的。我们还揭示了进化约束从较高组织层次向较低组织层次的渗透。渗透导致了灵活性和刚性之间的权衡,影响了原型的结构和几何形状。我们的研究结果提供了一个关于结构、无序性、灵活性和功能之间联系的深入进化视角,以及对环中内在无序性的进化作用及其对蛋白质结构和功能贡献 的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fa1/10608553/68cc3ace8f06/life-13-02055-g001.jpg

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