Hermosura Meredith C, Nayakanti Hannah, Dorovkov Maxim V, Calderon Fernanda R, Ryazanov Alexey G, Haymer David S, Garruto Ralph M
Bekesy Laboratory of Neurobiology, Pacific Biosciences Research Center, John A. Burns School of Medicine, University of Hawaii at Manoa, Honolulu, HI 96822, USA.
Proc Natl Acad Sci U S A. 2005 Aug 9;102(32):11510-5. doi: 10.1073/pnas.0505149102. Epub 2005 Jul 28.
Guamanian amyotrophic lateral sclerosis (ALS-G) and parkinsonism dementia (PD-G) have been epidemiologically linked to an environment severely deficient in calcium (Ca2+) and magnesium (Mg2+). Transient receptor potential melastatin 7 (TRPM7) is a bifunctional protein containing both channel and kinase domains that has been proposed to be involved in the homeostatic regulation of intracellular Ca2+, Mg2+, and trace metal ion concentration. There is evidence that TRPM7 is constitutively active and that the number of available channels is dependent on intracellular free Mg2+ levels. We found a TRPM7 variant in a subset of ALS-G and PD-G patients that produces a protein with a missense mutation, T1482I. Recombinant T1482I TRPM7 exhibits the same kinase catalytic activity as WT TRPM7. However, heterologously expressed T1482I TRPM7 produces functional channels that show an increased sensitivity to inhibition by intracellular Mg2+. Because the incidence of ALS-G and PD-G has been associated with prolonged exposure to an environment severely deficient in Ca2+ and Mg2+, we propose that this variant TRPM7 allele confers a susceptibility genotype in such an environment. This study represents an initial attempt to address the important issue of gene-environment interactions in the etiology of these diseases.
关岛肌萎缩侧索硬化症(ALS-G)和帕金森病痴呆症(PD-G)在流行病学上与严重缺乏钙(Ca2+)和镁(Mg2+)的环境有关。瞬时受体电位褪黑素7(TRPM7)是一种双功能蛋白,包含通道和激酶结构域,有人提出它参与细胞内Ca2+、Mg2+和微量金属离子浓度的稳态调节。有证据表明TRPM7是组成型激活的,并且可用通道的数量取决于细胞内游离Mg2+水平。我们在一部分ALS-G和PD-G患者中发现了一种TRPM7变体,它产生一种带有错义突变T1482I的蛋白质。重组T1482I TRPM7表现出与野生型TRPM7相同的激酶催化活性。然而,异源表达的T1482I TRPM7产生的功能性通道对细胞内Mg2+抑制的敏感性增加。由于ALS-G和PD-G的发病率与长期暴露于严重缺乏Ca2+和Mg2+的环境有关,我们提出这种变体TRPM7等位基因在这种环境中赋予了一种易感基因型。这项研究是解决这些疾病病因中基因-环境相互作用这一重要问题的初步尝试。