Dey Mishtu, Brummett Adam E
The University of Iowa, Iowa City, IA, United States.
The University of Iowa, Iowa City, IA, United States.
Methods Enzymol. 2018;605:291-323. doi: 10.1016/bs.mie.2018.02.020.
The organosulfur metabolite dimethylsulfoniopropionate (DMSP) and its enzymatic breakdown product dimethyl sulfide (DMS) have important implications in the global sulfur cycle and in marine microbial food webs. Enormous amounts of DMSP are produced in marine environments where microbial communities import and catabolize it via either the demethylation or the cleavage pathways. The enzymes that cleave DMSP are termed "DMSP lyases" and generate acrylate or hydroxypropionate, and ~10tons of DMS annually. An important environmental factor affecting DMS generation by the DMSP lyases is the availability of metal ions as these enzymes use various cofactors for catalysis. This chapter summarizes advances on bacterial DMSP catabolism, with an emphasis on various biochemical methods employed for the isolation and characterization of bacterial DMSP lyases. Strategies are presented for the purification of DMSP lyases expressed in bacterial cells. Specific conditions for the efficient isolation of apoproteins in Escherichia coli are detailed. DMSP cleavage is effectively inferred, utilizing the described HPLC-based acrylate detection assay. Finally, substrate and metal binding interactions are examined using fluorescence and UV-visible assays. Together, these methods are rapid and well suited for the biochemical and structural characterization of DMSP lyases and in the assessment of uncharacterized DMSP catabolic enzymes, and new metalloenzymes in general.
有机硫代谢产物二甲基巯基丙酸内盐(DMSP)及其酶促分解产物二甲基硫醚(DMS)在全球硫循环和海洋微生物食物网中具有重要意义。在海洋环境中会产生大量的DMSP,微生物群落通过去甲基化或裂解途径对其进行吸收和分解代谢。裂解DMSP的酶被称为“DMSP裂解酶”,每年可生成丙烯酸酯或羟基丙酸酯以及约10吨DMS。影响DMSP裂解酶生成DMS的一个重要环境因素是金属离子的可用性,因为这些酶催化作用需要各种辅因子。本章总结了细菌DMSP分解代谢的研究进展,重点介绍了用于分离和表征细菌DMSP裂解酶的各种生化方法。文中还介绍了纯化细菌细胞中表达的DMSP裂解酶的策略。详细阐述了在大肠杆菌中高效分离脱辅基蛋白的具体条件。利用所描述的基于高效液相色谱的丙烯酸酯检测方法可有效推断DMSP的裂解情况。最后,使用荧光和紫外可见光谱法研究底物与金属的结合相互作用。总之,这些方法快速且非常适合用于DMSP裂解酶的生化和结构表征,以及评估未表征的DMSP分解代谢酶和一般的新型金属酶。