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蓝细菌中的 Mg2+ 稳态和运输——处于细菌和叶绿体 Mg2+ 导入的交叉路口。

Mg2+ homeostasis and transport in cyanobacteria - at the crossroads of bacterial and chloroplast Mg2+ import.

机构信息

Institut für Pharmazie und Biochemie, Johannes-Gutenberg-Universität Mainz, Johann-Joachim-Becher-Weg 30, D-55128 Mainz, Germany.

出版信息

Biol Chem. 2019 Sep 25;400(10):1289-1301. doi: 10.1515/hsz-2018-0476.

Abstract

Magnesium cation (Mg2+) is the most abundant divalent cation in living cells, where it is required for various intracellular functions. In chloroplasts and cyanobacteria, established photosynthetic model systems, Mg2+ is the central ion in chlorophylls, and Mg2+ flux across the thylakoid membrane is required for counterbalancing the light-induced generation of a ΔpH across the thylakoid membrane. Yet, not much is known about Mg2+ homoeostasis, transport and distribution within cyanobacteria. However, Mg2+ transport across membranes has been studied in non-photosynthetic bacteria, and first observations and findings are reported for chloroplasts. Cyanobacterial cytoplasmic membranes appear to contain the well-characterized Mg2+ channels CorA and/or MgtE, which both facilitate transmembrane Mg2+ flux down the electrochemical gradient. Both Mg2+ channels are typical for non-photosynthetic bacteria. Furthermore, Mg2+ transporters of the MgtA/B family are also present in the cytoplasmic membrane to mediate active Mg2+ import into the bacterial cell. While the cytoplasmic membrane of cyanobacteria resembles a 'classical' bacterial membrane, essentially nothing is known about Mg2+ channels and/or transporters in thylakoid membranes of cyanobacteria or chloroplasts. As discussed here, at least one Mg2+ channelling protein must be localized within thylakoid membranes. Thus, either one of the 'typical' bacterial Mg2+ channels has a dual localization in the cytoplasmic plus the thylakoid membrane, or another, yet unidentified channel is present in cyanobacterial thylakoid membranes.

摘要

镁阳离子(Mg2+)是活细胞中最丰富的二价阳离子,它是各种细胞内功能所必需的。在叶绿体和蓝藻等已建立的光合作用模型系统中,Mg2+是叶绿素的中心离子,Mg2+跨类囊体膜的流动对于平衡光诱导的跨类囊体膜的ΔpH 的产生是必需的。然而,对于蓝藻中的 Mg2+同稳态、运输和分布,我们知之甚少。然而,已经在非光合细菌中研究了跨膜的 Mg2+运输,并且首次报道了关于叶绿体的观察和发现。蓝藻细胞质膜似乎含有特征明确的 Mg2+通道 CorA 和/或 MgtE,它们都促进跨膜 Mg2+顺电化学梯度的流动。这两种 Mg2+通道都存在于非光合细菌中。此外,MgtA/B 家族的 Mg2+转运体也存在于细胞质膜中,以介导活性 Mg2+向细菌细胞内的输入。虽然蓝藻的细胞质膜类似于“经典”的细菌膜,但对于蓝藻或叶绿体的类囊体膜中的 Mg2+通道和/或转运体,基本上一无所知。如这里所讨论的,至少有一种 Mg2+通道蛋白必须定位于类囊体膜内。因此,要么一种“典型”的细菌 Mg2+通道具有在细胞质膜和类囊体膜中的双重定位,要么在蓝藻类囊体膜中存在另一种尚未鉴定的通道。

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