Maack Christoph, Ganesan Anand, Sidor Agnieszka, O'Rourke Brian
Johns Hopkins University, Institute of Molecular Cardiobiology, Division of Cardiology, Baltimore, Md 21205-2195, USA.
Circ Res. 2005 Jan 7;96(1):91-9. doi: 10.1161/01.RES.0000151334.48676.68. Epub 2004 Nov 18.
The sarcolemmal Na+-Ca2+ exchanger (NCX) is the main Ca2+ extrusion mechanism in cardiac myocytes and is thus essential for the regulation of Ca2+ homeostasis and contractile function. A cytosolic region (f-loop) of the protein mediates regulation of NCX function by intracellular factors including inhibition by exchanger inhibitory peptide (XIP), a 20 amino acid peptide matching the sequence of an autoinhibitory region involved in allosteric regulation of NCX by intracellular Na+, Ca2+, and phosphatidylinositol-4,5-biphosphate (PIP2). Previous evidence indicates that the XIP interaction domain can be eliminated by large deletions of the f-loop that also remove activation of NCX by intracellular Ca2+. By whole-cell voltage clamping experiments, we demonstrate that deletion of residues 562-679, but not 440- 456, 498-510, or 680-685 of the f-loop selectively eliminates XIP-mediated inhibition of NCX expressed either heterologously (HEK293 and A549 cells) or in guinea pig cardiac myocytes. In contrast, by plotting I(NCX) against reverse-mode NCX-mediated Ca2+ transients in myocytes, we demonstrate that Ca2+-dependent regulation of NCX is preserved in Delta562-679, but significantly reduced in the other three deletion mutants. The findings indicate that f-loop residues 562-679 may contain the regulatory site for endogenous XIP, but this site is distinct from the Ca2+-regulatory domains of the NCX. Because regulation of the NCX by Na+ and PIP2 involves the endogenous XIP region, the Delta562-679 mutant NCX may be a useful tool to investigate this regulation in the context of the whole cardiac myocyte.
肌膜钠钙交换体(NCX)是心肌细胞中主要的钙排出机制,因此对于调节钙稳态和收缩功能至关重要。该蛋白的一个胞质区域(f环)介导细胞内因子对NCX功能的调节,包括交换体抑制肽(XIP)的抑制作用,XIP是一种20个氨基酸的肽,其序列与参与细胞内钠、钙和磷脂酰肌醇-4,5-二磷酸(PIP2)对NCX变构调节的自抑制区域一致。先前的证据表明,通过f环的大量缺失可以消除XIP相互作用结构域,同时也消除了细胞内钙对NCX的激活作用。通过全细胞电压钳实验,我们证明缺失f环的562-679位残基,但不是440-456、498-510或680-685位残基,可选择性消除XIP介导的对在异源细胞(HEK293和A549细胞)或豚鼠心肌细胞中表达的NCX的抑制作用。相比之下,通过绘制心肌细胞中I(NCX)与反向模式NCX介导的钙瞬变的关系图,我们证明在Delta562-679中NCX的钙依赖性调节得以保留,但在其他三个缺失突变体中显著降低。这些发现表明,f环的562-679位残基可能包含内源性XIP的调节位点,但该位点与NCX的钙调节结构域不同。由于钠和PIP2对NCX的调节涉及内源性XIP区域,Delta562-679突变体NCX可能是在整个心肌细胞背景下研究这种调节的有用工具。