首页> 美国卫生研究院文献>Journal of Bacteriology >Biosynthesis of Isoprenoid Wax Ester in Marinobacter hydrocarbonoclasticus DSM 8798: Identification and Characterization of Isoprenoid Coenzyme A Synthetase and Wax Ester Synthases
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Biosynthesis of Isoprenoid Wax Ester in Marinobacter hydrocarbonoclasticus DSM 8798: Identification and Characterization of Isoprenoid Coenzyme A Synthetase and Wax Ester Synthases

机译:破泡海洋杆菌DSM 8798中类异戊二烯蜡酯的生物合成:类异戊二烯辅酶A合成酶和蜡酯合酶的鉴定和表征

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摘要

Marinobacter hydrocarbonoclasticus DSM 8798 has been reported to synthesize isoprenoid wax ester storage compounds when grown on phytol as the sole carbon source under limiting nitrogen and/or phosphorous conditions. We hypothesized that isoprenoid wax ester synthesis involves (i) activation of an isoprenoid fatty acid by a coenzyme A (CoA) synthetase and (ii) ester bond formation between an isoprenoid alcohol and isoprenoyl-CoA catalyzed, most likely, by an isoprenoid wax ester synthase similar to an acyl wax ester synthase, wax ester synthase/diacylglycerol acyltransferase (WS/DGAT), recently described from Acinetobacter sp. strain ADP1. We used the recently released rough draft genome sequence of a closely related strain, M. aquaeolei VT8, to search for WS/DGAT and acyl-CoA synthetase candidate genes. The sequence information from putative WS/DGAT and acyl-CoA synthetase genes identified in this strain was used to clone homologues from the isoprenoid wax ester synthesizing Marinobacter strain. The activities of the recombinant enzymes were characterized, and two new isoprenoid wax ester synthases capable of synthesizing isoprenoid ester and acyl/isoprenoid hybrid ester in vitro were identified along with an isoprenoid-specific CoA synthetase. One of the Marinobacter wax ester synthases displays several orders of magnitude higher activity toward acyl substrates than any previously characterized acyl-WS and may reflect adaptations to available carbon sources in their environments.
机译:据报道,当在限制的氮和/或磷条件下,在植醇上作为唯一的碳源生长时,MarinobacterhydrocarbonoclasticusDSM 8798会合成类异戊二烯蜡酯存储化合物。我们假设类异戊二烯蜡酯的合成涉及(i)辅酶A(CoA)合成酶激活类异戊二烯脂肪酸,以及(ii)最有可能是由类异戊二烯蜡酯催化的类异戊二烯醇和异戊二烯酰-CoA之间的酯键形成类似于酰基蜡酯合酶的合成酶,蜡酯合酶/二酰基甘油酰基转移酶(WS / DGAT),最近由不动杆菌属(Acinetobacter sp。)描述。菌株ADP1。我们使用了最近发布的密切相关的菌株,M。aquaeolei VT8的粗略的基因组序列,以搜索WS / DGAT和酰基辅酶A合成酶候选基因。在该菌株中鉴定的来自推定的WS / DGAT和酰基辅酶A合成酶基因的序列信息被用于克隆来自类异戊二烯蜡酯的Marinobacter菌株的同源物。表征了重组酶的活性,并鉴定了两种能够在体外合成类异戊二烯酸酯和酰基/异戊二烯杂化酯的新类异戊二烯蜡酯合酶以及类异戊二烯特异性CoA合成酶。 Marinobacter蜡酯合酶之一对酰基底物的活性比以前表征的任何酰基WS高出几个数量级,并且可能反映了其环境中对可用碳源的适应性。

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