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使用金属氟化物研究核苷酸在稳定磷蛋白/心脏 Ca²⁺泵抑制复合物中的作用。

Role of nucleotides in stabilization of the phospholamban/cardiac Ca²⁺ pump inhibitory complex examined with use of metal fluorides.

机构信息

Krannert Institute of Cardiology and Department of Medicine, Indiana University School of Medicine, Indianapolis, IN, 46202, USA.

出版信息

FEBS J. 2015 Nov;282(22):4402-14. doi: 10.1111/febs.13506. Epub 2015 Oct 3.

Abstract

Phospholamban (PLB) inhibits the activity of the cardiac calcium pump SERCA2a. We previously showed that PLB with engineered Cys residues only cross-linked with the Ca(2+) -free E2 intermediate of SERCA2a. Formation of E2•PLB prevents Ca(2+) binding at the high-affinity Ca(2+) binding sites, blocking the enzyme kinetic cycle. Here we further studied the synergistic action of PLB and ATP on E2 in terms of prevention of formation of the phosphorylated E2P-like states stabilized by metal fluorides. SERCA2a was co-expressed in insect cell microsomes with PLB mutants of normal or super-inhibitory strength, with cross-linkable mutations at either the cytosolic side (N30C) or the luminal side (V49C) of PLB. For normal-strength PLB mutants, in the absence of nucleotide, metal fluorides totally inhibited both SERCA2a enzyme activity and cross-linking of PLB to SERCA2a at both sites, suggesting that PLB dissociates from SERCA2a in the E2P-like states. However, under the same conditions, super-inhibitory PLB mutants prevented total enzyme inhibition by metal fluorides. Further, the cross-linking of super-inhibitory PLB to SERCA2a was only partially inhibited by metal fluorides, but was drastically restored upon sequential addition of ATP. These results revealed the equilibrium between E2•PLB, E2•ATP, or E2•ATP•PLB states and E2P-like states, suggesting that the synergistic binding of ATP and PLB to SERCA is very strong, sufficient to prevent formation of E2 phosphoenzymes, even when stabilized by metal fluorides.

摘要

肌球蛋白结合蛋白(PLB)抑制心肌钙泵 SERCA2a 的活性。我们之前的研究表明,带有工程化半胱氨酸残基的 PLB 仅与 SERCA2a 的无 Ca2+的 E2 中间态交联。E2•PLB 的形成阻止了 Ca2+在高亲和力 Ca2+结合位点的结合,从而阻断了酶的动力学循环。在这里,我们进一步研究了 PLB 和 ATP 对 E2 的协同作用,特别是在形成由金属氟化物稳定的磷酸化 E2 样状态方面。将正常或超抑制强度的 PLB 突变体与 SERCA2a 在昆虫细胞微粒体中共表达,PLB 的突变位于细胞质侧(N30C)或腔侧(V49C),且可交联。对于正常强度的 PLB 突变体,在没有核苷酸的情况下,金属氟化物完全抑制 SERCA2a 酶活性和 PLB 与 SERCA2a 在两个位点的交联,表明 PLB 在 E2 样状态下从 SERCA2a 上解离。然而,在相同条件下,超抑制 PLB 突变体阻止了金属氟化物对总酶的抑制。此外,金属氟化物仅部分抑制超抑制 PLB 与 SERCA2a 的交联,但在依次添加 ATP 后,交联作用被大大恢复。这些结果揭示了 E2•PLB、E2•ATP 或 E2•ATP•PLB 状态与 E2 样状态之间的平衡,表明 ATP 和 PLB 与 SERCA 的协同结合非常强,足以防止 E2 磷酸化酶的形成,即使被金属氟化物稳定。

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