Trzeciakiewicz Anna, Opolski Adam, Mazur Andrzej
Laboratorium Doświadczalnej Terapii Przeciwnowotworowej, Zakład Onkologii Doświadczalnej Instytutu Immunologii i Terapii Doświadczalnej im. L. Hirszfelda, PAN we Wrocławiu.
Postepy Hig Med Dosw (Online). 2005;59:496-502.
Magnesium is an important cofactor in biological processes. For many years it has been considered that magnesium homeostasis in a cell is regulated by its eflux from a cell and not by its influx. It has also been considered that the Na+/Mg2+ antiport plays the main role. In recent years, many experiments have been carried out to understand the mechanisms of Mg2+ transport in an organism. These experiments have led to some new conclusions. It was confirmed that the level of magnesium in a cell is probably also regulated by its influx to the cell. One of the last scientific findings is the discovery of the TRPM (transient receptor potential melastatin) protein family. TRPM6 and TRPM7, bifunctional proteins with kinase and ion channel activities, are responsible for magnesium homeostasis. The discovery of these proteins led to a better understanding of magnesium homeostasis. It was confirmed that TRPM6 protein is responsible for homeostasis in the whole organism and that TRPM7 may regulate the level of magnesium in the cell. TRPM7 also has other functions. One of those newly recognized is the phosphorylation of annexin 1. However, many activities and functions of TRPM7 have not yet been described. This paper is a review of knowledge of TRPM7 transmembrane protein, which is responsible for the magnesium homeostasis in the cell. It briefly presents the main functions and structure of TRPM7. It also describes the mechanisms of its biological activity.
镁是生物过程中的一种重要辅助因子。多年来,人们一直认为细胞内镁的稳态是由其从细胞内流出而非流入来调节的。人们还认为钠/镁反向转运体起主要作用。近年来,为了解生物体中镁离子转运的机制进行了许多实验。这些实验得出了一些新结论。现已证实,细胞内镁的水平可能也受其流入细胞的调节。最新的科学发现之一是瞬时受体电位褪黑素(TRPM)蛋白家族的发现。TRPM6和TRPM7是具有激酶和离子通道活性的双功能蛋白,负责镁的稳态。这些蛋白的发现使人们对镁的稳态有了更好的理解。现已证实,TRPM6蛋白负责整个生物体的稳态,而TRPM7可能调节细胞内镁的水平。TRPM7还有其他功能。其中一个新认识到的功能是膜联蛋白1的磷酸化。然而,TRPM7的许多活性和功能尚未得到描述。本文是对负责细胞内镁稳态的TRPM7跨膜蛋白知识的综述。它简要介绍了TRPM7的主要功能和结构。还描述了其生物活性的机制。