Placido Antonio, Hai Tran, Ferrer Manuel, Chernikova Tatyana N, Distaso Marco, Armstrong Dale, Yakunin Alexander F, Toshchakov Stepan V, Yakimov Michail M, Kublanov Ilya V, Golyshina Olga V, Pesole Graziano, Ceci Luigi R, Golyshin Peter N
Institute of Biomembranes and Bioenergetics (CNR), Via Amendola 165/A, 70126, Bari, Italy.
School of Biological Sciences, Bangor University, Bangor, Gwynedd, LL57 2UW, UK.
Appl Microbiol Biotechnol. 2015 Dec;99(23):10031-46. doi: 10.1007/s00253-015-6873-x. Epub 2015 Aug 13.
A metagenomic fosmid expression library established from environmental DNA (eDNA) from the shallow hot vent sediment sample collected from the Levante Bay, Vulcano Island (Aeolian archipelago) was established in Escherichia coli. Using activity-based screening assays, we have assessed 9600 fosmid clones corresponding to approximately 350 Mbp of the cloned eDNA, for the lipases/esterases/lactamases, haloalkane and haloacid dehalogenases, and glycoside hydrolases. Thirty-four positive fosmid clones were selected from the total of 120 positive hits and sequenced to yield ca. 1360 kbp of high-quality assemblies. Fosmid inserts were attributed to the members of ten bacterial phyla, including Proteobacteria, Bacteroidetes, Acidobateria, Firmicutes, Verrucomicrobia, Chloroflexi, Spirochaetes, Thermotogae, Armatimonadetes, and Planctomycetes. Of ca. 200 proteins with high biotechnological potential identified therein, we have characterized in detail three distinct α/β-hydrolases (LIPESV12_9, LIPESV12_24, LIPESV12_26) and one new α-arabinopyranosidase (GLV12_5). All LIPESV12 enzymes revealed distinct substrate specificities tested against 43 structurally diverse esters and 4 p-nitrophenol carboxyl esters. Of 16 different glycosides tested, the GLV12_5 hydrolysed only p-nitrophenol-α-(L)-arabinopyranose with a high specific activity of about 2.7 kU/mg protein. Most of the α/β-hydrolases were thermophilic and revealed a high tolerance to, and high activities in the presence of, numerous heavy metal ions. Among them, the LIPESV12_24 was the best temperature-adapted, retaining its activity after 40 min of incubation at 90 °C. Furthermore, enzymes were active in organic solvents (e.g., >30% methanol). Both LIPESV12_24 and LIPESV12_26 had the GXSXG pentapeptides and the catalytic triads Ser-Asp-His typical to the representatives of carboxylesterases of EC 3.1.1.1.
从利帕里群岛武尔卡诺岛莱万特湾采集的浅海热液喷口沉积物样本的环境DNA(eDNA)构建了宏基因组fosmid表达文库,并将其导入大肠杆菌。我们使用基于活性的筛选分析方法,对9600个fosmid克隆(对应约350 Mbp的克隆eDNA)进行了脂肪酶/酯酶/内酰胺酶、卤代烷和卤代酸脱卤酶以及糖苷水解酶的评估。从总共120个阳性命中克隆中筛选出34个阳性fosmid克隆并进行测序,得到约1360 kbp的高质量组装序列。Fosmid插入片段归属于十个细菌门的成员,包括变形菌门、拟杆菌门、酸杆菌门、厚壁菌门、疣微菌门、绿弯菌门、螺旋体门、栖热袍菌门、装甲菌门和平盘菌门。在其中鉴定出的约200种具有高生物技术潜力的蛋白质中,我们详细表征了三种不同的α/β-水解酶(LIPESV12_9、LIPESV12_24、LIPESV12_26)和一种新的α-阿拉伯吡喃糖苷酶(GLV12_5)。所有LIPESV12酶针对43种结构多样的酯和4种对硝基苯酚羧酸酯进行测试时,显示出不同的底物特异性。在测试的16种不同糖苷中,GLV12_5仅水解对硝基苯酚-α-(L)-阿拉伯吡喃糖,比活性约为2.7 kU/mg蛋白质,活性较高。大多数α/β-水解酶是嗜热的,并且在存在多种重金属离子的情况下表现出高耐受性和高活性。其中,LIPESV12_24是最适应温度的,在90°C孵育40分钟后仍保留其活性。此外,这些酶在有机溶剂(如>30%甲醇)中也具有活性。LIPESV12_24和LIPESV12_26都具有GXSXG五肽和典型的EC 3.1.1.1羧酸酯酶代表的催化三联体Ser-Asp-His。