Li Mingjiang, Jiang Jianmin, Yue Lixia
Center for Cardiology and Cardiovascular Biology, Department of Cell Biology, University of Connecticut Health Center, Farmington 06030, USA.
J Gen Physiol. 2006 May;127(5):525-37. doi: 10.1085/jgp.200609502.
TRPM6 and TRPM7 are two known channel kinases that play important roles in various physiological processes, including Mg2+ homeostasis. Mutations in TRPM6 cause hereditary hypomagnesemia and secondary hypocalcemia (HSH). However, whether TRPM6 encodes functional channels is controversial. Here we demonstrate several signature features of TRPM6 that distinguish TRPM6 from TRPM7 and TRPM6/7 channels. We show that heterologous expression of TRPM6 but not the mutant TRPM6(S141L) produces functional channels with divalent cation permeability profile and pH sensitivity distinctive from those of TRPM7 channels and TRPM6/7 complexes. TRPM6 exhibits unique unitary conductance that is 2- and 1.5-fold bigger than that of TRPM7 and TRPM6/7. Moreover, micromolar levels of 2-aminoethoxydiphenyl borate (2-APB) maximally increase TRPM6 but significantly inhibit TRPM7 channel activities; whereas millimolar concentrations of 2-APB potentiate TRPM6/7 and TRPM7 channel activities. Furthermore, Mg2+ and Ca2+ entry through TRPM6 is enhanced three- to fourfold by 2-APB. Collectively, these results indicate that TRPM6 forms functional homomeric channels as well as heteromeric TRPM6/7 complexes. The unique characteristics of these three channel types, TRPM6, TRPM7, and TRPM6/7, suggest that they may play different roles in vivo.
瞬时受体电位阳离子通道M6型(TRPM6)和瞬时受体电位阳离子通道M7型(TRPM7)是两种已知的通道激酶,在包括镁离子稳态在内的各种生理过程中发挥重要作用。TRPM6的突变会导致遗传性低镁血症和继发性低钙血症(HSH)。然而,TRPM6是否编码功能性通道仍存在争议。在此,我们展示了TRPM6的几个标志性特征,这些特征将TRPM6与TRPM7以及TRPM6/7通道区分开来。我们发现,TRPM6而非突变型TRPM6(S141L)的异源表达产生了具有二价阳离子通透性特征和pH敏感性的功能性通道,这些特征与TRPM7通道和TRPM6/7复合物不同。TRPM6表现出独特的单通道电导,比TRPM7和TRPM6/7的单通道电导分别大2倍和1.5倍。此外,微摩尔水平的2-氨基乙氧基二苯硼酸盐(2-APB)可最大程度地增强TRPM6,但显著抑制TRPM7通道活性;而毫摩尔浓度的2-APB可增强TRPM6/7和TRPM7通道活性。此外,2-APB可使通过TRPM6的镁离子和钙离子内流增加三到四倍。总的来说,这些结果表明TRPM6形成功能性同聚通道以及异聚TRPM6/7复合物。这三种通道类型,即TRPM6、TRPM7和TRPM6/7的独特特征表明它们在体内可能发挥不同的作用。