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Isolation and initial characterization of a novel type of Baeyer-Villiger monooxygenase activity from a marine microorganism

机译:海洋微生物中新型Baeyer-Villiger单加氧酶活性的分离与初步鉴定

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摘要

A novel type of BaeyerVilliger monooxygenase (BVMO) has been found in a marine strain of Stenotrophomonas maltophila strain PML168 that was isolated from a temperate intertidal zone. The enzyme is able to use NADH as the source of reducing power necessary to accept the atom of diatomic oxygen not incorporated into the oxyfunctionalized substrate. Growth studies have establish that the enzyme is inducible, appears to serve a catabolic role, and is specifically induced by one or more unidentified components of seawater as well as various anthropogenic xenobiotic compounds. A blast search of the primary sequence of the enzyme, recovered from the genomic sequence of the isolate, has placed this atypical BVMO in the context of the several hundred known members of the flavoprotein monooxygenase superfamily. A particular feature of this BVMO lies in its truncated C-terminal domain, which results in a relatively small protein (357 amino acids; 38.4 kDa). In addition, metagenomic screening has been conducted on DNA recovered from an extensive range of marine environmental samples to gauge the relative abundance and distribution of similar enzymes within the global marine microbial community. Although low, abundance was detected in samples from many marine provinces, confirming the potential for biodiscovery in marine microorganisms.
机译:从温带潮间带分离的嗜麦芽窄食单胞菌PML168菌株中发现了一种新型的BaeyerVilliger单加氧酶(BVMO)。该酶能够使用NADH作为还原能力的来源,以接受未结合到氧官能化底物中的双原子氧原子。生长研究表明,该酶是可诱导的,似乎起分解代谢的作用,并由海水中的一种或多种不确定的成分以及各种人为异种生物化合物特异性诱导。从分离物的基因组序列中回收的酶的一级序列进行了一次原始搜索,将这种非典型BVMO置于黄素蛋白单加氧酶超家族的数百个已知成员的背景下。该BVMO的一个特殊特征在于其截短的C末端结构域,该结构导致相对较小的蛋白质(357个氨基酸; 38.4 kDa)。此外,已经对从大量海洋环境样品中回收的DNA进行了宏基因组学筛选,以测定全球海洋微生物群落中相似酶的相对丰度和分布。尽管含量很低,但在许多海洋省份的样品中都检测到了丰度,这证实了在海洋微生物中进行生物发现的潜力。

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