Pernil Rafael, Schleiff Enrico
Institute for Molecular Biosciences, Goethe University Frankfurt, Max-von-Laue-Straβe 9, 60438 Frankfurt am Main, Germany.
Frankfurt Institute for Advanced Studies, Ruth-Moufang-Straße 1, 60438 Frankfurt am Main, Germany.
Life (Basel). 2019 Apr 3;9(2):32. doi: 10.3390/life9020032.
Cyanobacteria are photoautotrophic microorganisms present in almost all ecologically niches on Earth. They exist as single-cell or filamentous forms and the latter often contain specialized cells for N₂ fixation known as heterocysts. Heterocysts arise from photosynthetic active vegetative cells by multiple morphological and physiological rearrangements including the absence of O₂ evolution and CO₂ fixation. The key function of this cell type is carried out by the metalloprotein complex known as nitrogenase. Additionally, many other important processes in heterocysts also depend on metalloproteins. This leads to a high metal demand exceeding the one of other bacteria in content and concentration during heterocyst development and in mature heterocysts. This review provides an overview on the current knowledge of the transition metals and metalloproteins required by heterocysts in heterocyst-forming cyanobacteria. It discusses the molecular, physiological, and physicochemical properties of metalloproteins involved in N₂ fixation, H₂ metabolism, electron transport chains, oxidative stress management, storage, energy metabolism, and metabolic networks in the diazotrophic filament. This provides a detailed and comprehensive picture on the heterocyst demands for Fe, Cu, Mo, Ni, Mn, V, and Zn as cofactors for metalloproteins and highlights the importance of such metalloproteins for the biology of cyanobacterial heterocysts.
蓝细菌是地球上几乎所有生态位中都存在的光合自养微生物。它们以单细胞或丝状形式存在,后者通常含有专门用于固氮的细胞,称为异形胞。异形胞由光合活性营养细胞通过多种形态和生理重排产生,包括不进行氧气释放和二氧化碳固定。这种细胞类型的关键功能由称为固氮酶的金属蛋白复合物执行。此外,异形胞中的许多其他重要过程也依赖于金属蛋白。这导致在异形胞发育过程中和成熟异形胞中,对金属的需求很高,在含量和浓度上超过了其他细菌。本综述概述了目前关于异形胞形成蓝细菌中异形胞所需的过渡金属和金属蛋白的知识。它讨论了参与固氮、氢气代谢、电子传递链、氧化应激管理、储存、能量代谢和异化营养丝中代谢网络的金属蛋白的分子、生理和物理化学性质。这提供了关于异形胞对铁、铜、钼、镍、锰、钒和锌作为金属蛋白辅因子的需求的详细而全面的图景,并强调了此类金属蛋白对蓝细菌异形胞生物学的重要性。