首页> 外文期刊>Biochimica et Biophysica Acta. Protein Structure and Molecular Enzymology >Phosphorylation of the minimal inhibitory region at the C-terminus of caldesmon alters its structural and actin binding properties
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Phosphorylation of the minimal inhibitory region at the C-terminus of caldesmon alters its structural and actin binding properties

机译:Caldesmon C末端最小抑制区的磷酸化改变了其结构和肌动蛋白结合特性

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摘要

Caldesmon is an inhibitory protein believed to be involved in the regulation of thin filament activity in smooth muscles and is a major cytoplasmic substrate for MAP kinase. NMR spectroscopy shows that the actin binding properties of the minimal inhibitory region of caldesmon, residues 750-779, alter upon MAP kinase phosphorylation of Ser-759, a residue not involved in actin binding. This phosphorylation leads to markedly diminished actin affinity as a result of the loss of interaction at one of the two sites that bind to F-actin. The structural basis for the altered interaction is identified from the observation that posphorylation destabilises a turn segment linking the two actin binding sites and thereby results in the randomisation of their relative disposition. This modulatory influence of Ser-759 phosphorylation is not merely a function of the bulkiness of the covalent modification since the stability of the turn region is observed to be sensitive to the ionisation state of the phosphate group. The data are discussed in the context of the inhibitory association of the C-terminal domain of caldesmon with F-actin.
机译:Caldesmon是一种抑制蛋白,被认为与平滑肌细丝活性的调节有关,并且是MAP激酶的主要细胞质底物。 NMR光谱表明,Caldesmon的最小抑制区域(残基750-779)的肌动蛋白结合特性随Ser-759(不参与肌动蛋白结合的残基)的MAP激酶磷酸化而改变。由于与F-肌动蛋白结合的两个位点之一的相互作用丧失,这种磷酸化导致肌动蛋白亲和力显着降低。相互作用的改变的结构基础是从以下观察中确定的:正磷酸化使连接两个肌动蛋白结合位点的转弯区段不稳定,从而导致它们相对位置的随机化。 Ser-759磷酸化的这种调节作用不仅取决于共价修饰的体积,因为观察到转向区的稳定性对磷酸基团的电离状态敏感。在卡尔德斯蒙的C末端结构域与F-肌动蛋白的抑制性缔合的背景下讨论了数据。

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