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Switch-2决定MgADP释放动力学并微调1类肌球蛋白的占空比。

Switch-2 determines MgADP-release kinetics and fine-tunes the duty ratio of class-1 myosins.

作者信息

Diensthuber Ralph P, Hartmann Falk K, Kathmann Daniela, Franz Peter, Tsiavaliaris Georgios

机构信息

Institute for Biophysical Chemistry, OE 4350, Hannover Medical School, Hannover, Germany.

出版信息

Front Physiol. 2024 Jun 3;15:1393952. doi: 10.3389/fphys.2024.1393952. eCollection 2024.

Abstract

Though myosins share a structurally conserved motor domain, single amino acid variations of active site elements, including the P-loop, switch-1 and switch-2, which act as nucleotide sensors, can substantially determine the kinetic signature of a myosin, ., to either perform fast movement or enable long-range transport and tension generation. Switch-2 essentially contributes to the ATP hydrolysis reaction and determines product release. With few exceptions, class-1 myosin harbor a tyrosine in the switch-2 consensus sequence DIYGFE, at a position where class-2 myosins and a selection of myosins from other classes have a substitution. Here, we addressed the role of the tyrosine in switch-2 of class-1 myosins as potential determinant of the duty ratio. We generated constitutively active motor domain constructs of two class-1 myosins from the social amoeba , namely, Myo1E, a high duty ratio myosin and Myo1B, a low duty ratio myosin. In Myo1E we introduced mutation Y388F and in Myo1B mutation F387Y. The detailed functional characterization by steady-state and transient kinetic experiments, combined with motility and landing assays revealed an almost reciprocal relationship of a number of critical kinetic parameters and equilibrium constants between wild-type and mutants that dictate the lifetime of the strongly actin-attached states of myosin. The Y-to-F mutation increased the duty ratio of Moy1B by almost one order of magnitude, while the introduction of the phenylalanine in switch-2 of Myo1E transformed the myosin into a low duty ratio motor. These data together with structural considerations propose a role of switch-2 in fine-tuning ADP release through a mechanism, where the class-specific tyrosine together with surrounding residues contributes to the coordination of Mg and ADP. Our results highlight the importance of conserved switch-2 residues in class-1 myosins for efficient chemo-mechanical coupling, revealing that switch-2 is important to adjust the duty ratio of the amoeboid class-1 myosins for performing movement, transport or gating functions.

摘要

尽管肌球蛋白共享结构保守的运动结构域,但作为核苷酸传感器的活性位点元件(包括P环、开关1和开关2)的单个氨基酸变异,可显著决定肌球蛋白的动力学特征,即要么执行快速运动,要么实现长距离运输和张力产生。开关2主要参与ATP水解反应并决定产物释放。除少数例外,1类肌球蛋白在开关2共有序列DIYGFE中有一个酪氨酸,而在2类肌球蛋白和其他类别的一些肌球蛋白的相应位置存在替换。在此,我们探讨了1类肌球蛋白开关2中酪氨酸作为占空比潜在决定因素的作用。我们构建了来自社会性变形虫的两种1类肌球蛋白的组成型活性运动结构域构建体,即高占空比肌球蛋白Myo1E和低占空比肌球蛋白Myo1B。在Myo1E中我们引入了Y388F突变,在Myo1B中引入了F387Y突变。通过稳态和瞬态动力学实验进行的详细功能表征,结合运动性和着陆分析,揭示了野生型和突变体之间一些关键动力学参数和平衡常数的几乎相反关系,这些参数决定了肌球蛋白与肌动蛋白紧密结合状态的寿命。酪氨酸到苯丙氨酸的突变使Moy1B的占空比增加了近一个数量级,而在Myo1E的开关2中引入苯丙氨酸则将该肌球蛋白转变为低占空比马达。这些数据连同结构方面的考虑,提出了开关2在通过一种机制微调ADP释放中的作用,其中特定类别的酪氨酸与周围残基共同参与Mg和ADP的配位。我们的结果突出了1类肌球蛋白中保守的开关2残基对于有效化学 - 机械偶联的重要性,表明开关2对于调节变形虫1类肌球蛋白的占空比以执行运动、运输或门控功能很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80c7/11181000/c4a1a2d5bbe4/fphys-15-1393952-g001.jpg

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