Schmitz Carsten, Perraud Anne-Laure, Johnson Catherine O, Inabe Kazunori, Smith Megan K, Penner Reinhold, Kurosaki Tomohiro, Fleig Andrea, Scharenberg Andrew M
Department of Pediatrics, University of Washington and Children's Hospital and Regional Medical Center, Seattle, WA 98195, USA.
Cell. 2003 Jul 25;114(2):191-200. doi: 10.1016/s0092-8674(03)00556-7.
TRPM7 is a polypeptide with intrinsic ion channel and protein kinase domains whose targeted deletion causes cells to experience growth arrest within 24 hr and eventually die. Here, we show that while TRPM7's kinase domain is not essential for activation of its channel, a functional coupling exists such that structural alterations of the kinase domain alter the sensitivity of channel activation to Mg(2+). Investigation of the relationship between Mg(2+) and the cell biological role of TRPM7 revealed that TRPM7-deficient cells become Mg(2+) deficient, that both the viability and proliferation of TRPM7-deficient cells are rescued by supplementation of extracellular Mg(2+), and that the capacity of heterologously expressed TRPM7 mutants to complement TRPM7 deficiency correlates with their sensitivity to Mg(2+). Overall, our results indicate that TRPM7 has a central role in Mg(2+) homeostasis as a Mg(2+) uptake pathway regulated through a functional coupling between its channel and kinase domains.
瞬时受体电位M型7通道(TRPM7)是一种具有内在离子通道和蛋白激酶结构域的多肽,其靶向缺失会导致细胞在24小时内生长停滞并最终死亡。在此,我们表明,虽然TRPM7的激酶结构域对于其通道的激活并非必不可少,但存在一种功能偶联,使得激酶结构域的结构改变会改变通道激活对Mg(2+)的敏感性。对Mg(2+)与TRPM7细胞生物学作用之间关系的研究表明,TRPM7缺陷型细胞会出现Mg(2+)缺乏,补充细胞外Mg(2+)可挽救TRPM7缺陷型细胞的活力和增殖,并且异源表达的TRPM7突变体互补TRPM7缺陷的能力与其对Mg(2+)的敏感性相关。总体而言,我们的结果表明,TRPM7作为一种通过其通道和激酶结构域之间的功能偶联调节的Mg(2+)摄取途径,在Mg(2+)稳态中起核心作用。