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从构象集合估算复杂连接子架构强制的有效浓度。

Estimation of Effective Concentrations Enforced by Complex Linker Architectures from Conformational Ensembles.

机构信息

Department of Molecular Biology and Genetics, Aarhus University, Aarhus 8000, Denmark.

The Danish Research Institute for Translational Neuroscience (DANDRITE), Nordic EMBL Partnership for Molecular Medicine, Aarhus University, Aarhus 8000, Denmark.

出版信息

Biochemistry. 2022 Feb 1;61(3):171-182. doi: 10.1021/acs.biochem.1c00737. Epub 2022 Jan 21.

DOI:10.1021/acs.biochem.1c00737
PMID:35061369
Abstract

Proteins and protein assemblies often tether interaction partners to strengthen interactions, to regulate activity through auto-inhibition or -activation, or to boost enzyme catalysis. Tethered reactions are regulated by the architecture of the tether, which defines an effective concentration of the interactor. Effective concentrations can be estimated theoretically for simple linkers via polymer models, but there is currently no general method for estimating effective concentrations for complex linker architectures consisting of both flexible and folded domains. We describe how effective concentrations can be estimated computationally for any protein linker architecture by defining a realistic conformational ensemble. We benchmark against prediction from a worm-like chain and values measured by competition experiments and find minor differences likely due to excluded volume effects. Systematic variation of the properties of flexible and folded segments shows that the effective concentration is mainly determined by the combination of the total length of flexible segments and the distance between the termini of the folded domains. We show that a folded domain in a disordered linker can increase the effective concentration beyond what can be achieved by a fully disordered linker by focusing the end-to-end distance at the appropriate spacing. This suggests that complex linker architecture may have advantages over simple flexible linkers and emphasizes that annotation as a linker should depend on the molecular context.

摘要

蛋白质和蛋白质复合物通常通过连接(tether)相互作用的伙伴,以增强相互作用,通过自我抑制或激活来调节活性,或提高酶催化效率。连接反应受到连接(tether)结构的调控,它决定了相互作用者的有效浓度。对于简单的连接物,可以通过聚合物模型从理论上估计有效浓度,但对于由柔性和折叠结构域组成的复杂连接结构,目前尚无一般的方法来估计有效浓度。我们通过定义一个现实的构象集合,描述了如何通过计算为任何蛋白质连接物结构估计有效浓度。我们与基于蠕虫状链的预测和竞争实验测量的值进行了基准测试,发现差异较小,可能是由于排除体积效应所致。对柔性和折叠结构域的性质进行系统的变化表明,有效浓度主要由柔性片段的总长度和折叠结构域末端之间的距离决定。我们表明,在无序连接物中的折叠结构域可以通过将末端到末端的距离聚焦在适当的间隔处,将有效浓度提高到完全无序连接物所无法达到的水平。这表明复杂的连接结构可能比简单的柔性连接具有优势,并强调了连接物的注释应该取决于分子环境。

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