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利用嗜热栖热菌宿主从高温环境中鉴定新型酯酶活性酶。

Identification of novel esterase-active enzymes from hot environments by use of the host bacterium Thermus thermophilus.

作者信息

Leis Benedikt, Angelov Angel, Mientus Markus, Li Haijuan, Pham Vu T T, Lauinger Benjamin, Bongen Patrick, Pietruszka Jörg, Gonçalves Luís G, Santos Helena, Liebl Wolfgang

机构信息

Department of Microbiology, Technische Universität München Freising, Germany.

Research Center Juelich, Institute of Bioorganic Chemistry, Heinrich-Heine-Universität Düsseldorf Juelich, Germany.

出版信息

Front Microbiol. 2015 Apr 8;6:275. doi: 10.3389/fmicb.2015.00275. eCollection 2015.

Abstract

Functional metagenomic screening strategies, which are independent of known sequence information, can lead to the identification of truly novel genes and enzymes. Since E. coli has been used exhaustively for this purpose as a host, it is important to establish alternative expression hosts and to use them for functional metagenomic screening for new enzymes. In this study we show that Thermus thermophilus HB27 is an excellent screening host and can be used as an alternative provider of truly novel biocatalysts. In a previous study we constructed mutant strain BL03 with multiple markerless deletions in genes for major extra- and intracellular lipolytic activities. This esterase-diminished strain was no longer able to grow on defined minimal medium supplemented with tributyrin as the sole carbon source and could be used as a host to screen for metagenomic DNA fragments that could complement growth on tributyrin. Several thousand single fosmid clones from thermophilic metagenomic libraries from heated compost and hot spring water samples were subjected to a comparative screening for esterase activity in both T. thermophilus strain BL03 and E. coli EPI300. We scored a greater number of active esterase clones in the thermophilic bacterium than in the mesophilic E. coli. From several thousand functionally screened clones only two thermostable α/β-fold hydrolase enzymes with high amino acid sequence similarity to already characterized enzymes were identifiable in E. coli. In contrast, five further fosmids were found that conferred lipolytic activities in T. thermophilus only. Four open reading frames (ORFs) were found which did not share significant similarity to known esterase enzymes but contained the conserved GXSXG motif regularly found in lipolytic enzymes. Two of the genes were expressed in both hosts and the novel thermophilic esterases, which based on their primary structures could not be assigned to known esterase or lipase families, were purified and preliminarily characterized. Our work underscores the benefit of using additional screening hosts other than E. coli for the identification of novel biocatalysts with industrial relevance.

摘要

功能宏基因组筛选策略独立于已知序列信息,能够鉴定出真正新颖的基因和酶。由于大肠杆菌已被广泛用作此目的的宿主,因此建立替代表达宿主并将其用于新酶的功能宏基因组筛选非常重要。在本研究中,我们表明嗜热栖热菌HB27是一种出色的筛选宿主,可作为真正新颖的生物催化剂的替代来源。在先前的研究中,我们构建了突变菌株BL03,该菌株在主要的细胞外和细胞内脂解活性基因中存在多个无标记缺失。这种酯酶减少的菌株不再能够在以三丁酸甘油酯作为唯一碳源的限定基本培养基上生长,并且可以用作宿主来筛选能够补充在三丁酸甘油酯上生长的宏基因组DNA片段。对来自热堆肥和温泉水样的嗜热宏基因组文库中的数千个单fosmid克隆进行了比较筛选,以检测嗜热栖热菌菌株BL03和大肠杆菌EPI300中的酯酶活性。我们发现嗜热细菌中具有活性酯酶的克隆数量比嗜温大肠杆菌中的更多。在经过功能筛选的数千个克隆中,在大肠杆菌中仅鉴定出两种与已表征的酶具有高氨基酸序列相似性的耐热α/β折叠水解酶。相比之下,发现另外五个fosmid仅在嗜热栖热菌中赋予脂解活性。发现了四个开放阅读框(ORF),它们与已知酯酶没有明显的相似性,但包含在脂解酶中常见的保守GXSXG基序。其中两个基因在两种宿主中均有表达,并且基于其一级结构无法归类到已知酯酶或脂肪酶家族的新型嗜热酯酶被纯化并进行了初步表征。我们的工作强调了使用除大肠杆菌以外的其他筛选宿主来鉴定具有工业相关性的新型生物催化剂的益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fabf/4389547/ee13ce1a3957/fmicb-06-00275-g0001.jpg

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