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Discovery and Characterization of a Distinctive Exo-1,3/1,4-β-Glucanase from the Marine Bacterium Pseudoalteromonas sp. Strain BB1▿ †

机译:从海洋细菌Pseudoalteromonas sp。中发现独特的Exo-1,3 /1,4-β-葡聚糖酶并进行表征。菌株BB1▿†

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摘要

Marine bacteria residing on local red, green, and brown seaweeds were screened for exo-1,3-β-glucanase (ExoP) activity. Of the 90 bacterial species isolated from 32 seaweeds, only one, a Pseudoalteromonas sp., was found to display such activity. It was isolated from a Durvillaea sp., a brown kelp known to contain significant amounts of the storage polysaccharide laminarin (1,3-β-d-glucan with some 1,6-β branching). Four chromatographic steps were utilized to purify the enzyme (ExoP). Chymotryptic digestion provided peptide sequences for primer design and subsequent gene cloning. The exoP gene coded for 840 amino acids and was located just 50 bp downstream from a putative lichenase (endo-1,3-1,4-β-glucanase) gene, suggesting possible cotranscription of these genes. Sequence comparisons revealed ExoP to be clustered within a group of bacterial glycosidases with high similarity to a group of glycoside hydrolase (GH3) plant enzymes, of which the barley exo-1,3/1,4-β-glucanase (ExoI) is the best characterized. The major difference between the bacterial and plant proteins is an extra 200- to 220-amino-acid extension at the C terminus of the former. This additional sequence does not correlate with any known functional domain, but ExoP was not active against laminarin when this region was removed. Production of recombinant ExoP allowed substrate specificity studies to be performed. The enzyme was found to possess similar levels of exoglucanase activity against both 1,4-β linkages and 1,3-β linkages, and so ExoP is designated an exo-1,3/1,4-β-exoglucanase, the first such bacterial enzyme to be characterized. This broader specificity could allow the enzyme to assist in digesting both cell wall cellulose and cytoplasmic laminarin.
机译:筛选当地红色,绿色和棕色海藻中的海洋细菌的exo-1,3-β-葡聚糖酶(ExoP)活性。从32个海藻中分离出的90种细菌中,只有一种(假单胞菌属)显示出这种活性。它从Durvillaea sp。(一种褐色海带)中分离出来,该海带已知含有大量的贮藏多糖laminarin(带有一些1,6-β分支的1,3-β-d-葡聚糖)。四个色谱步骤用于纯化酶(ExoP)。胰蛋白酶消化提供了用于引物设计和随后的基因克隆的肽序列。 exoP基因编码840个氨基酸,位于假定的地衣酶(endo-1,3-1,4-β-葡聚糖酶)基因下游仅50 bp,提示这些基因可能共转录。序列比较显示,ExoP聚集在与一组糖苷水解酶(GH3)植物酶高度相似的一组细菌糖苷酶中,其中大麦exo-1,3 /1,4-β-葡聚糖酶(ExoI)是最有特色的。细菌和植物蛋白之间的主要区别是在前者的C端额外延伸了200至220个氨基酸。该附加序列与任何已知功能域均不相关,但是当去除该区域时,ExoP对层粘连蛋白没有活性。重组ExoP的产生允许进行底物特异性研究。发现该酶对1,4-β键和1,3-β键的外切葡聚糖酶活性水平相近,因此ExoP被称为exo-1,3 /1,4-β-外切葡聚糖酶。要鉴定的细菌酶。这种更广泛的特异性可以使酶有助于消化细胞壁纤维素和细胞质层粘连蛋白。

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