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费氏弧菌中具有隐秘β-半乳糖苷酶活性的纤维二糖利用基因簇的鉴定

Identification of a cellobiose utilization gene cluster with cryptic beta-galactosidase activity in Vibrio fischeri.

作者信息

Adin Dawn M, Visick Karen L, Stabb Eric V

机构信息

Department of Microbiology, University of Georgia, 1000 Cedar Street, Athens, GA 30602, USA.

出版信息

Appl Environ Microbiol. 2008 Jul;74(13):4059-69. doi: 10.1128/AEM.00190-08. Epub 2008 May 16.

Abstract

Cellobiose utilization is a variable trait that is often used to differentiate members of the family Vibrionaceae. We investigated how Vibrio fischeri ES114 utilizes cellobiose and found a cluster of genes required for growth on this beta-1,4-linked glucose disaccharide. This cluster includes genes annotated as a phosphotransferase system II (celA, celB, and celC), a glucokinase (celK), and a glucosidase (celG). Directly downstream of celCBGKA is celI, which encodes a LacI family regulator that represses cel transcription in the absence of cellobiose. When the celCBGKAI gene cluster was transferred to cellobiose-negative strains of Vibrio and Photobacterium, the cluster conferred the ability to utilize cellobiose. Genomic analyses of naturally cellobiose-positive Vibrio species revealed that V. salmonicida has a homolog of the celCBGKAI cluster, but V. vulnificus does not. Moreover, bioinformatic analyses revealed that CelG and CelK share the greatest homology with glucosidases and glucokinases in the phylum Firmicutes. These observations suggest that distinct genes for cellobiose utilization have been acquired by different lineages within the family Vibrionaceae. In addition, the loss of the celI regulator, but not the structural genes, attenuated the ability of V. fischeri to compete for colonization of its natural host, Euprymna scolopes, suggesting that repression of the cel gene cluster is important in this symbiosis. Finally, we show that the V. fischeri cellobioase (CelG) preferentially cleaves beta-d-glucose linkages but also cleaves beta-d-galactose-linked substrates such as 5-bromo-4-chloro-3-indolyl-beta-d-galactoside (X-gal), a finding that has important implications for the use of lacZ as a marker or reporter gene in V. fischeri.

摘要

纤维二糖利用是一种可变性状,常用于区分弧菌科成员。我们研究了费氏弧菌ES114如何利用纤维二糖,并发现了一组在这种β-1,4-连接的葡萄糖二糖上生长所需的基因。该基因簇包括注释为磷酸转移酶系统II(celA、celB和celC)、葡萄糖激酶(celK)和葡萄糖苷酶(celG)的基因。celCBGKA的直接下游是celI,它编码一种LacI家族调节因子,在没有纤维二糖的情况下抑制cel转录。当celCBGKAI基因簇转移到弧菌属和发光杆菌属的纤维二糖阴性菌株时,该基因簇赋予了利用纤维二糖的能力。对天然纤维二糖阳性弧菌物种的基因组分析表明,杀鲑弧菌有celCBGKAI基因簇的同源物,但创伤弧菌没有。此外,生物信息学分析表明,CelG和CelK与厚壁菌门中的葡萄糖苷酶和葡萄糖激酶具有最大的同源性。这些观察结果表明,弧菌科内不同谱系获得了不同的纤维二糖利用基因。此外,celI调节因子而非结构基因的缺失减弱了费氏弧菌竞争其天然宿主——艾氏阔沙蚕——定殖的能力,这表明cel基因簇的抑制在这种共生关系中很重要。最后,我们表明费氏弧菌纤维二糖酶(CelG)优先切割β-d-葡萄糖键,但也能切割β-d-半乳糖连接的底物,如5-溴-4-氯-3-吲哚基-β-d-半乳糖苷(X-gal),这一发现对于在费氏弧菌中使用lacZ作为标记或报告基因具有重要意义。

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