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首页> 外文期刊>Biochemistry >A Light-Dependent Mechanism for Massive Accumulation of Manganese in the Photosynthetic Bacterium Synechocystis sp. PCC 6803
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A Light-Dependent Mechanism for Massive Accumulation of Manganese in the Photosynthetic Bacterium Synechocystis sp. PCC 6803

机译:光合作用细菌Synechocystis sp。中锰大量积累的光依赖机制。 PCC 6803

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摘要

Manganese is an essential micronutrient for many organisms. Because of its unique role in the water oxidizing activity of photosystem II, manganese is required for photosynthetic growth in plants and cyanobacteria. Here we report on the mechanism of manganese uptake in the cyanobacterium Synchocystis sp. PCC 6803. Cells grown in 9 muM manganese-containing medium accumulate up to 1 X 10~* manganese atoms/cell, bound to the outer membrane (pool A). This pool could be released by EDTA treatment. Accumulation of manganese in pool A was energized by photosynthetic electron flow. Moreover, collapsing the membrane potential resulted in the immediate release of this manganese pool. The manganese in this pool is mainly Mn(II) in a six-coordinate distoried environment. A distinctly different pool of manganese, pool B (approx 1.5 X 10~6 atoms/cell), could not be extracted by EDTA. Transport into pool B was light-independent and could be detected only under limiting manganese concentrations (1 nM). Evidently, manganese uptake in Syngechocystis 6803 cells occurs in two steps. First, manganese accumulates in the outer membrane (pool A) in a membrane potential-dependent process. Next, manganese is transported through the inner membrane into pool B. We propose that pool A serves as a store that allows the cells to overcome transient limitations in manganese in the environment.
机译:锰是许多生物必不可少的微量营养素。由于锰在光系统II的水氧化活性中的独特作用,因此锰是植物和蓝细菌的光合作用生长所必需的。在这里我们报告在蓝细菌Synchocystis sp中锰摄入的机制。 PCC6803。在9μM含锰培养基中生长的细胞积累最多1 X 10〜*锰原子/细胞,并与外膜(池A)结合。 EDTA处理可以释放该池。光合作用电子流激发了池A中锰的积累。此外,膜电位的降低导致该锰池的立即释放。在六坐标分散环境中,该池中的锰主要为Mn(II)。 EDTA不能提取出一个截然不同的锰矿池,即B矿池(约1.5 X 10〜6个原子/电池)。运入库B的过程与光无关,只能在有限的锰浓度(1 nM)下检测到。显然,Syngechocystis 6803细胞中的锰摄取分两步发生。首先,锰在膜电位依赖性过程中积聚在外膜(池A)中。接下来,将锰通过内膜运输到B池中。我们建议A池用作储存器,以使细胞克服环境中锰的瞬时限制。

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