Scripps Institution of Oceanography, University of California, San Diego, La Jolla, California 92093, United States.
Department of Earth Sciences, Southern Methodist University, Dallas, Texas 75275, United States.
J Nat Prod. 2024 Feb 23;87(2):439-452. doi: 10.1021/acs.jnatprod.3c01007. Epub 2024 Feb 14.
Marine-derived have long been recognized as a source of novel, pharmaceutically relevant natural products. Among these bacteria, the MAR4 clade within the genus has been identified as metabolically rich, yielding over 93 different compounds to date. MAR4 strains are particularly noteworthy for the production of halogenated hybrid isoprenoid natural products, a relatively rare class of bacterial metabolites that possess a wide range of biological activities. MAR4 genomes are enriched in vanadium haloperoxidase and prenyltransferase genes, thus accounting for the production of these compounds. Functional characterization of the enzymes encoded in MAR4 genomes has advanced our understanding of halogenated, hybrid isoprenoid biosynthesis. Despite the exceptional biosynthetic capabilities of MAR4 bacteria, the large body of research they have stimulated has yet to be compiled. Here we review 35 years of natural product research on MAR4 strains and update the molecular diversity of this unique group of bacteria.
海洋来源的细菌一直被认为是新型药物相关天然产物的来源。在这些细菌中,属内的 MAR4 分支被确定为代谢丰富的细菌,迄今为止已产生超过 93 种不同的化合物。MAR4 菌株特别值得注意的是其产生卤化混合异戊二烯天然产物,这是一类相对罕见的细菌代谢产物,具有广泛的生物活性。MAR4 基因组富含钒卤过氧化物酶和 prenyltransferase 基因,从而解释了这些化合物的产生。MAR4 基因组编码酶的功能表征提高了我们对卤化、混合异戊二烯生物合成的认识。尽管 MAR4 细菌具有出色的生物合成能力,但它们所激发的大量研究尚未被汇编。在这里,我们回顾了 35 年来对 MAR4 菌株的天然产物研究,并更新了这组独特细菌的分子多样性。