Microbiology Lab, Department of Biotechnology, M. S. Swaminathan Research Foundation, Taramani, Chennai, 600113, Tamil Nadu, India.
Environ Microbiol. 2022 Jun;24(6):2669-2700. doi: 10.1111/1462-2920.16045. Epub 2022 May 25.
Dimethylsulfoniopropionate (DMSP), a globally important organosulfur compound is produced in prodigious amounts (2.0 Pg sulfur) annually in the marine environment by phytoplankton, macroalgae, heterotrophic bacteria, some corals and certain higher plants. It is an important marine osmolyte and a major precursor molecule for the production of climate-active volatile gas dimethyl sulfide (DMS). DMSP synthesis take place via three pathways: a transamination 'pathway-' in some marine bacteria and algae, a Met-methylation 'pathway-' in angiosperms and bacteria and a decarboxylation 'pathway-' in the dinoflagellate, Crypthecodinium. The enzymes DSYB and TpMMT are involved in the DMSP biosynthesis in eukaryotes while marine heterotrophic bacteria engage key enzymes such as DsyB and MmtN. Several marine bacterial communities import DMSP and degrade it via cleavage or demethylation pathways or oxidation pathway, thereby generating DMS, methanethiol, and dimethylsulfoxonium propionate, respectively. DMSP is cleaved through diverse DMSP lyase enzymes in bacteria and via Alma1 enzyme in phytoplankton. The demethylation pathway involves four different enzymes, namely DmdA, DmdB, DmdC and DmdD/AcuH. However, enzymes involved in the oxidation pathway have not been yet identified. We reviewed the recent advances on the synthesis and catabolism of DMSP and enzymes that are involved in these processes.
二甲基巯基丙酸酯(DMSP)是一种重要的含硫有机化合物,每年在海洋环境中由浮游植物、大型藻类、异养细菌、一些珊瑚和某些高等植物大量产生(2.0Pg 硫)。它是一种重要的海洋渗透剂,也是产生气候活性挥发性气体二甲基硫(DMS)的主要前体分子。DMSP 的合成途径有三种:一些海洋细菌和藻类中的转氨途径、被子植物中的 Met-甲基化途径和甲藻中的脱羧途径。DSYB 和 TpMMT 酶参与真核生物的 DMSP 生物合成,而海洋异养细菌则利用 DsyB 和 MmtN 等关键酶。一些海洋细菌群落通过裂解或去甲基化途径或氧化途径来摄取和降解 DMSP,分别产生 DMS、甲硫醇和二甲基亚砜丙酸酯。DMSP 通过细菌中的多种 DMSP 裂合酶以及浮游植物中的 Alma1 酶进行裂解。去甲基化途径涉及四种不同的酶,即 DmdA、DmdB、DmdC 和 DmdD/AcuH。然而,氧化途径中涉及的酶尚未被鉴定。我们综述了 DMSP 的合成和分解代谢以及参与这些过程的酶的最新进展。