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舒张状态下天然心脏细肌丝连接区域的高分辨率冷冻电镜结构

High-resolution cryo-EM structure of the junction region of the native cardiac thin filament in relaxed state.

作者信息

Risi Cristina M, Belknap Betty, White Howard D, Dryden Kelly, Pinto Jose R, Chase P Bryant, Galkin Vitold E

机构信息

Department of Physiological Sciences, Eastern Virginia Medical School, Norfolk, VA 23507, USA.

Department of Molecular Physiology and Biological Physics, University of Virginia, Charlottesville, VA 22904, USA.

出版信息

PNAS Nexus. 2022 Dec 16;2(1):pgac298. doi: 10.1093/pnasnexus/pgac298. eCollection 2023 Jan.

Abstract

Cardiac contraction depends on molecular interactions among sarcomeric proteins coordinated by the rising and falling intracellular Ca levels. Cardiac thin filament (cTF) consists of two strands composed of actin, tropomyosin (Tm), and equally spaced troponin (Tn) complexes forming regulatory units. Tn binds Ca to move Tm strand away from myosin-binding sites on actin to enable actomyosin cross-bridges required for force generation. The Tn complex has three subunits-Ca-binding TnC, inhibitory TnI, and Tm-binding TnT. Tm strand is comprised of adjacent Tm molecules that overlap "head-to-tail" along the actin filament. The N-terminus of TnT (e.g., TnT1) binds to the Tm overlap region to form the cTF junction region-the region that connects adjacent regulatory units and confers to cTF internal cooperativity. Numerous studies have predicted interactions among actin, Tm, and TnT1 within the junction region, although a direct structural description of the cTF junction region awaited completion. Here, we report a 3.8 Å resolution cryo-EM structure of the native cTF junction region at (pCa 8) Ca conditions. We provide novel insights into the "head-to-tail" interactions between adjacent Tm molecules and interactions between the Tm junction with F-actin. We demonstrate how TnT1 stabilizes the Tm overlap region via its interactions with the Tm C- and N-termini and actin. Our data show that TnT1 works as a joint that anchors the Tm overlap region to actin, which stabilizes the state of the cTF. Our structure provides insight into the molecular basis of cardiac diseases caused by missense mutations in TnT1.

摘要

心脏收缩依赖于由细胞内钙离子水平的升降所协调的肌节蛋白之间的分子相互作用。心脏细肌丝(cTF)由两条链组成,这两条链由肌动蛋白、原肌球蛋白(Tm)和等间距的肌钙蛋白(Tn)复合物构成,形成调节单元。Tn结合钙离子,使Tm链从肌动蛋白上的肌球蛋白结合位点移开,从而使产生力量所需的肌动球蛋白横桥得以形成。Tn复合物有三个亚基——钙离子结合亚基TnC、抑制性亚基TnI和Tm结合亚基TnT。Tm链由相邻的Tm分子组成,这些分子沿肌动蛋白丝“头对头”重叠。TnT的N端(如TnT1)与Tm重叠区域结合,形成cTF连接区域——该区域连接相邻的调节单元并赋予cTF内部协同性。尽管cTF连接区域的直接结构描述尚未完成,但许多研究已经预测了连接区域内肌动蛋白、Tm和TnT1之间的相互作用。在这里,我们报告了在(pCa 8)钙离子条件下天然cTF连接区域的3.8埃分辨率冷冻电镜结构。我们对相邻Tm分子之间的“头对头”相互作用以及Tm连接与F-肌动蛋白之间的相互作用提供了新的见解。我们证明了TnT1如何通过其与Tm的C端和N端以及肌动蛋白的相互作用来稳定Tm重叠区域。我们的数据表明,TnT1起到了将Tm重叠区域锚定到肌动蛋白上的接头作用,从而稳定了cTF的状态。我们的结构为TnT错义突变引起的心脏病的分子基础提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dee0/9832952/044e999b7391/pgac298fig1.jpg

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