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磷酸受磷蛋白磷酸化后心肌肌浆网膜中钙-ATP酶结构域元件的重排

Rearrangement of domain elements of the Ca-ATPase in cardiac sarcoplasmic reticulum membranes upon phospholamban phosphorylation.

作者信息

Negash S, Huang S, Squier T C

机构信息

Biochemistry and Biophysics Section, Department of Molecular Biosciences, University of Kansas, Lawrence 66045-2106, USA.

出版信息

Biochemistry. 1999 Jun 22;38(25):8150-8. doi: 10.1021/bi990599j.

Abstract

Phospholamban (PLB) is a major target of the beta-adrenergic cascade in the heart, and functions to modulate rate-limiting conformational transitions involving the transport activity of the Ca-ATPase. To investigate structural changes within the Ca-ATPase that result from the phosphorylation of PLB by cAMP-dependent protein kinase (PKA), we have covalently bound the long-lived phosphorescent probe erythrosin isothiocyanate (Er-ITC) to cytoplasmic sequences within the Ca-ATPase. Under these labeling conditions, the Ca-ATPase remains catalytically active, indicating that observed changes in rotational dynamics reflect normal conformational transitions. Two major Er-ITC labeling sites were identified using electrospray ionization mass spectrometry (ESI-MS), corresponding to Lys464 and Lys650, which are respectively located within the phosphorylation and nucleotide binding domains of the Ca-ATPase. Frequency-domain phosphorescence measurements of the rotational dynamics of Er-ITC bound to these cytoplasmic sequences within the Ca-ATPase permit the resolution of the dynamic structure of individual domain elements relative to the overall rotational motion of the entire Ca-ATPase polypeptide chain. We observe a significant decrease in the rotational dynamics of Er-ITC bound to the Ca-ATPase upon phosphorylation of PLB by PKA, as evidenced by an increase in the residual anisotropy. These results suggest that phosphorylation of PLB results in a structural reorientation of the phosphorylation or nucleotide binding domains with respect to the membrane normal. In contrast, calcium activation of the Ca-ATPase in the presence of dephosphorylated PLB results in no detectable change in the rotational dynamics of Er-ITC, suggesting that calcium binding and PLB phosphorylation have distinct effects on the conformation of the Ca-ATPase. We suggest that PLB functions to alter the efficiency of phosphoenyzme formation following calcium activation of the Ca-ATPase by modulating the spatial arrangement between ATP bound in the nucleotide binding domain and Asp351 in the phosphorylation domain.

摘要

受磷蛋白(PLB)是心脏中β-肾上腺素能级联反应的主要靶点,其功能是调节涉及钙ATP酶转运活性的限速构象转变。为了研究cAMP依赖性蛋白激酶(PKA)对PLB的磷酸化作用导致的钙ATP酶内部结构变化,我们将长寿命磷光探针异硫氰酸赤藓红(Er-ITC)共价连接到钙ATP酶的细胞质序列上。在这些标记条件下,钙ATP酶仍保持催化活性,这表明观察到的旋转动力学变化反映了正常的构象转变。使用电喷雾电离质谱(ESI-MS)鉴定出两个主要的Er-ITC标记位点,分别对应于Lys464和Lys650,它们分别位于钙ATP酶的磷酸化结构域和核苷酸结合结构域内。对结合在钙ATP酶这些细胞质序列上的Er-ITC的旋转动力学进行频域磷光测量,可以解析单个结构域元件相对于整个钙ATP酶多肽链整体旋转运动的动态结构。我们观察到,PKA对PLB进行磷酸化后,结合在钙ATP酶上的Er-ITC的旋转动力学显著降低,残余各向异性增加证明了这一点。这些结果表明,PLB的磷酸化导致磷酸化结构域或核苷酸结合结构域相对于膜法线发生结构重排。相比之下,在去磷酸化的PLB存在的情况下,钙对钙ATP酶的激活不会导致Er-ITC的旋转动力学发生可检测到的变化,这表明钙结合和PLB磷酸化对钙ATP酶的构象有不同的影响。我们认为,PLB通过调节核苷酸结合结构域中结合的ATP与磷酸化结构域中的Asp351之间的空间排列,来改变钙激活钙ATP酶后磷酸酶形成的效率。

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