Institute of Chemistry and Center for Computing in Engineering & Science, Universidade Estadual de Campinas (UNICAMP), 13083-861 Campinas, SP, Brazil.
J Chem Inf Model. 2024 Apr 22;64(8):3350-3359. doi: 10.1021/acs.jcim.3c01822. Epub 2024 Apr 2.
The B domain of protein A (BdpA), a small three-helix bundle, folds on a time scale of a few microseconds with heterogeneous native and unfolded states. It is widely used as a model for understanding protein folding mechanisms. In this work, we use structure-based models (SBMs) and atomistic simulations to comprehensively investigate how BdpA folding is associated with the formation of its secondary structure. The energy landscape visualization method (ELViM) was used to characterize the pathways that connect the folded and unfolded states of BdpA as well as the sets of structures displaying specific ellipticity patterns. We show that the native state conformational diversity is due mainly to the conformational variability of helix I. Helices I, II, and III occur in a weakly correlated manner, with Spearman's rank correlation coefficients of 0.1539 (I and II), 0.1259 (I and III), and 0.2561 (II and III). These results, therefore, suggest the highest cooperativity between helices II and III. Our results allow the clustering of partially folded structures of folding of the B domain of protein A on the basis of its secondary structure, paving the way to an understanding of environmental factors in the relative stability of the basins of the folding ensemble, which are illustrated by the structural dependency of the protein hydration structures, as computed with minimum-distance distribution functions.
蛋白 A 的 B 结构域(BdpA)是一个由三个螺旋组成的小结构域,其折叠时间尺度为数微秒,具有异质的天然状态和无规则卷曲状态。它被广泛用作理解蛋白质折叠机制的模型。在这项工作中,我们使用基于结构的模型(SBMs)和原子模拟来全面研究 BdpA 折叠如何与二级结构的形成相关联。能量景观可视化方法(ELViM)用于描述连接 BdpA 折叠态和无规则卷曲态的途径,以及显示特定椭圆度模式的结构集合。我们表明,天然状态构象多样性主要归因于螺旋 I 的构象可变性。螺旋 I、II 和 III 以弱相关的方式出现,Spearman 秩相关系数分别为 0.1539(I 和 II)、0.1259(I 和 III)和 0.2561(II 和 III)。因此,这些结果表明螺旋 II 和 III 之间的协同性最高。我们的结果允许根据其二级结构对 BdpA 折叠的部分折叠结构进行聚类,为理解折叠集合中环境因素对基态相对稳定性的影响铺平了道路,这可以通过计算最小距离分布函数得到的蛋白质水合结构的结构依赖性来体现。