Department of Neurobiology and Behavior, Stony Brook University, Stony Brook, NY 11794, USA.
Proc Natl Acad Sci U S A. 2012 Jan 31;109(5):1601-6. doi: 10.1073/pnas.1114516109. Epub 2012 Jan 17.
Scaling of cardiac electrophysiology with body mass requires large changes in the ventricular action potential duration and heart rate in mammals. These changes in cellular electrophysiological function are produced by systematic and coordinated changes in the expression of multiple ion channel and transporter genes. Expression of one important potassium current, the transient outward current (I(to)), changes significantly during mammalian evolution. Changes in I(to) expression are determined, in part, by variation in the expression of an obligatory auxiliary subunit encoded by the KChIP2 gene. The KChIP2 gene is expressed in both cardiac myocytes and neurons and transcription in both cell types is initiated from the same CpG island promoter. Species-dependent variation of KChIP2 expression in heart is mediated by the evolution of the cis-regulatory function of this gene. Surprisingly, the major locus of evolutionary change for KChIP2 gene expression in heart lies within the CpG island core promoter. The results demonstrate that CpG island promoters are not simply permissive for gene expression but can also contribute to tissue-selective expression and, as such, can function as an important locus for the evolution of cis-regulatory function. More generally, evolution of the cis-regulatory function of voltage-gated ion channel genes appears to be an effective and efficient way to modify channel expression levels to optimize electrophysiological function.
心脏电生理学的体质量缩放要求哺乳动物的心室动作电位持续时间和心率发生较大变化。这些细胞电生理功能的变化是通过多种离子通道和转运体基因表达的系统和协调变化产生的。一种重要的钾电流,即瞬时外向电流(I(to)),在哺乳动物进化过程中发生显著变化。I(to)表达的变化部分取决于由 KChIP2 基因编码的必需辅助亚基的表达变化。KChIP2 基因在心肌细胞和神经元中均有表达,两种细胞类型的转录均从同一个 CpG 岛启动子开始。心脏中 KChIP2 表达的种间差异是由该基因顺式调控功能的进化介导的。令人惊讶的是,KChIP2 基因在心脏中表达的进化主要位点位于 CpG 岛核心启动子内。结果表明,CpG 岛启动子不仅对基因表达具有许可作用,而且还可以促进组织选择性表达,因此可以作为顺式调控功能进化的重要位点。更普遍地说,电压门控离子通道基因顺式调控功能的进化似乎是一种有效和高效的方法,可以调节通道表达水平,优化电生理功能。