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磷酸化诱导平滑肌肌球蛋白调节轻链的结构变化。

Phosphorylation-induced structural changes in smooth muscle myosin regulatory light chain.

机构信息

Department of Biochemistry, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 May 4;107(18):8207-12. doi: 10.1073/pnas.1001941107. Epub 2010 Apr 19.

Abstract

We have performed complementary time-resolved fluorescence resonance energy transfer (TR-FRET) experiments and molecular dynamics (MD) simulations to elucidate structural changes in the phosphorylation domain (PD) of smooth muscle regulatory light chain (RLC) bound to myosin. PD is absent in crystal structures, leaving uncertainty about the mechanism of regulation. Donor-acceptor pairs of probes were attached to three site-directed di-Cys mutants of RLC, each having one Cys at position 129 in the C-terminal lobe and the other at position 2, 3, or 7 in the N-terminal PD. Labeled RLC was reconstituted onto myosin subfragment 1 (S1). TR-FRET resolved two simultaneously populated structural states of RLC, closed and open, in both unphosphorylated and phosphorylated biochemical states. All three FRET pairs show that phosphorylation shifts the equilibrium toward the open state, increasing its mol fraction by approximately 20%. MD simulations agree with experiments in remarkable detail, confirming the coexistence of two structural states, with phosphorylation shifting the system toward the more dynamic open structural state. This agreement between experiment and simulation validates the additional structural details provided by MD simulations: In the closed state, PD is bent onto the surface of the C-terminal lobe, stabilized by interdomain salt bridges. In the open state, PD is more helical and straight, resides farther from the C-terminal lobe, and is stabilized by an intradomain salt bridge. The result is a vivid atomic-resolution visualization of the first step in the molecular mechanism by which phosphorylation activates smooth muscle.

摘要

我们进行了互补的时间分辨荧光共振能量转移(TR-FRET)实验和分子动力学(MD)模拟,以阐明与肌球蛋白结合的平滑肌调节轻链(RLC)磷酸化结构域(PD)的结构变化。PD 在晶体结构中不存在,这使得调节机制存在不确定性。我们将供体-受体探针对连接到 RLC 的三个定点双 Cys 突变体上,每个突变体在 C 端结构域的位置 129 处有一个 Cys,在 N 端 PD 的位置 2、3 或 7 处有另一个 Cys。标记的 RLC 被重新组装到肌球蛋白亚片段 1(S1)上。TR-FRET 解析了未磷酸化和磷酸化生化状态下 RLC 的两种同时存在的结构状态,即关闭和开放。所有三个 FRET 对都表明,磷酸化将平衡向开放状态移动,使其摩尔分数增加约 20%。MD 模拟与实验非常吻合,证实了两种结构状态的共存,磷酸化使系统向更动态的开放结构状态移动。实验和模拟之间的这种一致性验证了 MD 模拟提供的额外结构细节:在关闭状态下,PD 弯曲到 C 端结构域的表面上,由域间盐桥稳定。在开放状态下,PD 更具螺旋性和直性,距离 C 端结构域更远,并由一个域内盐桥稳定。结果是对磷酸化激活平滑肌的分子机制的第一步进行了生动的原子分辨率可视化。

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