地中海卤鱼4个phaC基因的比较及其在西班牙卤鱼不同PHBV共聚物生物合成中的作用。

Jing Han, Ming Li, Jing Hou, Linping Wu, Jian Zhou, Hua Xiang
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引用次数: 38

摘要

背景:地中海嗜盐古菌Haloferax mediterranei能够从不相关的碳源中积累大量具有高摩尔分数3-羟戊酸盐(3HV)的聚(3-羟基丁酸盐-co-3-羟戊酸盐)(PHBV)。在该菌株中发现了一种由PhaCHme和PhaEHme两个亚基组成的聚羟基烷酸酯(PHA)合成酶,并证明其参与了PHBV的生物合成。结果:利用Hfx的基因组序列。mediterranei CGMCC 1.2087,鉴定了另外三个phaC基因(指定为phaC1, phaC2和phaC3),它们编码假定的phaC。与PhaCHme (54.8 kDa)一样,PhaC1 (49.7 kDa)和PhaC3 (62.5 kDa)具有III型PHA合酶的保守基序,而PhaC2 (40.4 kDa)则没有。此外,在其他三个phac中发现的较长的C端在PhaC2中也不存在。反转录PCR (RT-PCR)结果显示,4个基因中只有phaCHme基因在野生型菌株的pha积累条件下被转录。然而,phaEHme与各phaC基因在西班牙海带菌PHB-1中的异源共表达表明,除PhaC2外,所有PhaCs均可导致PHBV以不同的3HV组分积累。采用凝胶渗透色谱(GPC)、差示扫描量热法(DSC)和热重分析(TGA)对三种共聚物进行了表征。它们的热性能随单体组成和分子量(Mw)的不同而变化,可以满足不同的应用要求。结论:在Hfx中发现了3个隐性phaC基因。并证明这些新鉴定的噬菌体基因的基因工程具有生产具有定制材料特性的PHBV的生物技术潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Comparison of four phaC genes from Haloferax mediterranei and their function in different PHBV copolymer biosyntheses in Haloarcula hispanica.

Background: The halophilic archaeon Haloferax mediterranei is able to accumulate large amounts of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) with high molar fraction of 3-hydroxyvalerate (3HV) from unrelated carbon sources. A Polyhydroxyalkanoate (PHA) synthase composed of two subunits, PhaCHme and PhaEHme, has been identified in this strain, and shown to account for the PHBV biosynthesis.

Results: With the aid of the genome sequence of Hfx. mediterranei CGMCC 1.2087, three additional phaC genes (designated phaC1, phaC2, and phaC3) were identified, which encoded putative PhaCs. Like PhaCHme (54.8 kDa), PhaC1 (49.7 kDa) and PhaC3 (62.5 kDa) possessed the conserved motifs of type III PHA synthase, which was not observed in PhaC2 (40.4 kDa). Furthermore, the longer C terminus found in the other three PhaCs was also absent in PhaC2. Reverse transcription PCR (RT-PCR) revealed that, among the four genes, only phaCHme was transcribed under PHA-accumulating conditions in the wild-type strain. However, heterologous coexpression of phaEHme with each phaC gene in Haloarcula hispanica PHB-1 showed that all PhaCs, except PhaC2, could lead to PHBV accumulation with various 3HV fractions. The three kinds of copolymers were characterized using gel-permeation chromatography (GPC), differential scanning calorimetry (DSC), and thermogravimetric analysis (TGA). Their thermal properties changed with the variations in monomer composition as well as the different molecular weights (Mw), thus might meet various application requirements.

Conclusion: We discover three cryptic phaC genes in Hfx. mediterranei, and demonstrate that genetic engineering of these newly identified phaC genes has biotechnological potential for PHBV production with tailor-made material properties.

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