Allen Kylie D, Wang Susan C
School of Molecular Biosciences, College of Veterinary Medicine, PO Box 647520, Washington State University, Pullman, WA 99164-7520, USA.
Biochim Biophys Acta. 2014 Dec;1844(12):2135-44. doi: 10.1016/j.bbapap.2014.09.009. Epub 2014 Sep 16.
Natural products containing carbon-phosphorus bonds elicit important bioactivity in many organisms. l-Phosphinothricin contains the only known naturally-occurring carbon-phosphorus-carbon bond linkage. In actinomycetes, the cobalamin-dependent radical S-adenosyl-l-methionine (SAM) methyltransferase PhpK catalyzes the formation of the second C-P bond to generate the complete C-P-C linkage in phosphinothricin. Here we use electron paramagnetic resonance and nuclear magnetic resonance spectroscopies to characterize and demonstrate the activity of a cobalamin-dependent radical SAM methyltransferase denoted SD_1168 from Shewanella denitrificans OS217, a marine bacterium that has not been reported to synthesize phosphinothricin. Recombinant, refolded, and reconstituted SD_1168 binds a four-iron, four-sulfur cluster that interacts with SAM and cobalamin. In the presence of SAM, a reductant, and methylcobalamin, SD_1168 surprisingly catalyzes the P-methylation of N-acetyl-demethylphosphinothricin and demethylphosphinothricin to produce N-acetyl-phosphinothricin and phosphinothricin, respectively. In addition, this enzyme is active in the absence of methylcobalamin if the strong reductant titanium (III) citrate and hydroxocobalamin are provided. When incubated with [methyl-(13)C] cobalamin and titanium citrate, both [methyl-(13)C] and unlabeled N-acetylphosphinothricin are produced. Our results suggest that SD_1168 catalyzes P-methylation using radical SAM-dependent chemistry with cobalamin as a coenzyme. In light of recent genomic information, the discovery of this P-methyltransferase suggests that S. denitrificans produces a phosphinate natural product.
含有碳 - 磷键的天然产物在许多生物体中引发重要的生物活性。L - 草铵膦含有唯一已知的天然存在的碳 - 磷 - 碳键连接。在放线菌中,钴胺素依赖性自由基S - 腺苷 - L - 甲硫氨酸(SAM)甲基转移酶PhpK催化第二个C - P键的形成,以在草铵膦中产生完整的C - P - C连接。在这里,我们使用电子顺磁共振和核磁共振光谱来表征和证明来自反硝化希瓦氏菌OS217的一种钴胺素依赖性自由基SAM甲基转移酶SD_1168的活性,该海洋细菌尚未被报道能合成草铵膦。重组、复性和重构成的SD_1168结合一个与SAM和钴胺素相互作用的四铁、四硫簇。在SAM、还原剂和甲基钴胺素存在的情况下,SD_1168令人惊讶地催化N - 乙酰 - 去甲基草铵膦和去甲基草铵膦的P - 甲基化,分别产生N - 乙酰 - 草铵膦和草铵膦。此外,如果提供强还原剂柠檬酸钛(III)和羟基钴胺素,该酶在没有甲基钴胺素的情况下也具有活性。当与[甲基 - (13)C]钴胺素和柠檬酸钛一起孵育时,会产生[甲基 - (13)C]和未标记的N - 乙酰草铵膦。我们的结果表明,SD_1168使用以钴胺素为辅酶的自由基SAM依赖性化学催化P - 甲基化。根据最近的基因组信息,这种P - 甲基转移酶的发现表明反硝化希瓦氏菌产生一种次膦酸天然产物。