Department of Biology, University of Konstanz, Constance, Germany.
Konstanz Research School Chemical Biology, University of Konstanz, Constance, Germany.
Environ Microbiol. 2023 Nov;25(11):2068-2074. doi: 10.1111/1462-2920.16470. Epub 2023 Aug 1.
Phosphite is a stable phosphorus compound that, together with phosphate, made up a substantial part of the total phosphorus content of the prebiotic Earth's crust. Oxidation of phosphite to phosphate releases electrons at an unusually low redox potential (-690 mV at pH 7.0). Numerous aerobic and anaerobic bacteria use phosphite as a phosphorus source and oxidise it to phosphate for synthesis of nucleotides and other phosphorus-containing cell constituents. Only two pure cultures of strictly anaerobic bacteria have been isolated so far that use phosphite as an electron donor in their energy metabolism, the Gram-positive Phosphitispora fastidiosa and the Gram-negative Desulfotignum phosphitoxidans. The key enzyme of this metabolism is an NAD -dependent phosphite dehydrogenase enzyme that phosphorylates AMP to ADP. These phosphorylating phosphite dehydrogenases were found to be related to nucleoside diphosphate sugar epimerases. The produced NADH is channelled into autotrophic CO fixation via the Wood-Ljungdahl (CO-DH) pathway, thus allowing for nearly complete assimilation of the substrate electrons into bacterial biomass. This extremely efficient type of electron flow connects energy and carbon metabolism directly through NADH and might have been important in the early evolution of life when phosphite was easily available on Earth.
亚磷酸盐是一种稳定的磷化合物,与磷酸盐一起构成了前寒武纪地壳总磷含量的重要部分。亚磷酸盐氧化为磷酸盐时,在异常低的氧化还原电位(pH7.0 时为-690mV)下释放电子。许多需氧菌和厌氧菌将亚磷酸盐用作磷源,并将其氧化为磷酸盐,用于核苷酸和其他含磷细胞成分的合成。迄今为止,只有两种严格厌氧菌的纯培养物被分离出来,它们在能量代谢中使用亚磷酸盐作为电子供体,即革兰氏阳性的磷单胞菌(Phosphitispora fastidiosa)和革兰氏阴性的脱硫硫杆菌(Desulfotignum phosphitoxidans)。这种代谢的关键酶是一种 NAD 依赖性亚磷酸盐脱氢酶,它将 AMP 磷酸化为 ADP。这些磷酸化亚磷酸盐脱氢酶与核苷二磷酸糖差向异构酶有关。产生的 NADH 通过 Wood-Ljungdahl(CO-DH)途径被引导进入自养 CO 固定,从而使底物电子几乎完全被细菌生物质同化。这种极其有效的电子流动方式通过 NADH 将能量和碳代谢直接连接起来,在前寒武纪地球上海洋中磷很容易获得的时候,这种电子流动方式可能对生命的早期演化非常重要。