Valdivia Carmen R, Ueda Kazuo, Ackerman Michael J, Makielski Jonathan C
Department of Medicine, University of Wisconsin-Madison, Madison, Wisconsin, USA.
Am J Physiol Heart Circ Physiol. 2009 Oct;297(4):H1446-52. doi: 10.1152/ajpheart.00513.2009. Epub 2009 Aug 7.
The SCN5A-encoded cardiac sodium channel underlies excitability in the heart, and dysfunction of sodium current (I(Na)) can cause fatal ventricular arrhythmia in maladies such as long QT syndrome, Brugada syndrome (BrS), and sudden infant death syndrome (SIDS). The gene GPD1L encodes the glycerol phosphate dehydrogenase 1-like protein with homology to glycerol phosphate dehydrogenase (GPD1), but the function for this enzyme is unknown. Mutations in GPD1L have been associated with BrS and SIDS and decrease I(Na) through an unknown mechanism. Using a heterologous expression system, we show that GPD1L associated with SCN5A and that the BrS- and SIDS-related mutations in GPD1L caused a loss of enzymatic function resulting in glycerol-3-phosphate PKC-dependent phosphorylation of SCN5A at serine 1503 (S1503) through a GPD1L-dependent pathway. The direct phosphorylation of S1503 markedly decreased I(Na). These results show a function for GPD1L in cell physiology and a mechanism linking mutations in GPD1L to sudden cardiac arrest. Because the enzymatic step catalyzed by GPD1L depends upon nicotinamide adenine dinucleotide, this GPD1L pathway links the metabolic state of the cell to I(Na) and excitability and may be important more generally in cardiac ischemia and heart failure.
由SCN5A编码的心脏钠通道是心脏兴奋性的基础,钠电流(I(Na))功能障碍可在诸如长QT综合征、Brugada综合征(BrS)和婴儿猝死综合征(SIDS)等疾病中导致致命的室性心律失常。基因GPD1L编码与甘油磷酸脱氢酶(GPD1)具有同源性的甘油磷酸脱氢酶1样蛋白,但该酶的功能尚不清楚。GPD1L中的突变与BrS和SIDS相关,并通过未知机制降低I(Na)。利用异源表达系统,我们发现GPD1L与SCN5A相关,并且GPD1L中与BrS和SIDS相关的突变导致酶功能丧失,从而通过GPD1L依赖的途径使SCN5A在丝氨酸1503(S1503)处发生甘油-3-磷酸PKC依赖的磷酸化。S1503的直接磷酸化显著降低了I(Na)。这些结果揭示了GPD1L在细胞生理学中的功能以及将GPD1L突变与心脏骤停联系起来的机制。由于GPD1L催化的酶促步骤依赖于烟酰胺腺嘌呤二核苷酸,因此该GPD1L途径将细胞的代谢状态与I(Na)和兴奋性联系起来,并且在心脏缺血和心力衰竭中可能更普遍地具有重要意义。