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使用组合优化策略描绘小蛋白质结构中的构象变异性

Delineating Conformational Variability in Small Protein Structures Using Combinatorial Refinement Strategies.

作者信息

Kelly Deborah F, Jonaid G M, Kaylor Liam, Solares Maria J, Berry Samantha, DiCecco Liza-Anastasia, Dearnaley William, Casasanta Michael

机构信息

Department of Biomedical Engineering, Pennsylvania State University, University Park, PA 16802, USA.

Center for Structural Oncology, Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Micromachines (Basel). 2023 Sep 29;14(10):1869. doi: 10.3390/mi14101869.

Abstract

As small protein assemblies and even small proteins are becoming more amenable to cryo-Electron Microscopy (EM) structural studies, it is important to consider the complementary dynamic information present in the data. Current computational strategies are limited in their ability to resolve minute differences among low molecular weight entities. Here, we demonstrate a new combinatorial approach to delineate flexible conformations among small proteins using real-space refinement applications. We performed a meta-analysis of structural data for the SARS CoV-2 Nucleocapsid (N) protein using a combination of rigid-body refinement and simulated annealing methods. For the N protein monomer, we determined three new flexible conformers with good stereochemistry and quantitative comparisons provided new evidence of their dynamic properties. A similar analysis performed for the N protein dimer showed only minor structural differences among the flexible models. These results suggested a more stable view of the N protein dimer than the monomer structure. Taken together, the new computational strategies can delineate conformational changes in low molecular weight proteins that may go unnoticed by conventional assessments. The results also suggest that small proteins may be further stabilized for structural studies through the use of solution components that limit the movement of external flexible regions.

摘要

随着小蛋白组装体甚至小蛋白越来越适合进行冷冻电子显微镜(EM)结构研究,考虑数据中存在的互补动态信息变得很重要。当前的计算策略在解析低分子量实体之间的微小差异方面能力有限。在这里,我们展示了一种新的组合方法,使用实空间精修应用来描绘小蛋白之间的灵活构象。我们结合刚体精修和模拟退火方法对严重急性呼吸综合征冠状病毒2(SARS CoV-2)核衣壳(N)蛋白的结构数据进行了荟萃分析。对于N蛋白单体,我们确定了三种具有良好立体化学性质的新的灵活构象体,定量比较为它们的动态特性提供了新证据。对N蛋白二聚体进行的类似分析表明,灵活模型之间只有微小的结构差异。这些结果表明,与单体结构相比,N蛋白二聚体的结构更稳定。综上所述,新的计算策略可以描绘出低分子量蛋白中可能被传统评估忽略的构象变化。结果还表明,可以通过使用限制外部灵活区域移动的溶液成分,进一步稳定小蛋白以进行结构研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7f6/10609307/ede013cc84c1/micromachines-14-01869-g001.jpg

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