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Genomic and Proteomic Analyses of the Agarolytic System Expressed by Saccharophagus degradans 2-40

机译:降解噬菌体2-40表达的Agarolytic系统的基因组和蛋白质组学分析

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摘要

Saccharophagus degradans 2-40 (formerly Microbulbifer degradans 2-40) is a marine gamma-subgroup proteobacterium capable of degrading many complex polysaccharides, such as agar. While several agarolytic systems have been characterized biochemically, the genetics of agarolytic systems have been only partially determined. By use of genomic, proteomic, and genetic approaches, the components of the S. degradans 2-40 agarolytic system were identified. Five agarases were identified in the S. degradans 2-40 genome. Aga50A and Aga50D include GH50 domains. Aga86C and Aga86E contain GH86 domains, whereas Aga16B carries a GH16 domain. Novel family 6 carbohydrate binding modules (CBM6) were identified in Aga16B and Aga86E. Aga86C has an amino-terminal acylation site, suggesting that it is surface associated. Aga16B, Aga86C, and Aga86E were detected by mass spectrometry in agarolytic fractions obtained from culture filtrates of agar-grown cells. Deletion analysis revealed that aga50A and aga86E were essential for the metabolism of agarose. Aga16B was shown to endolytically degrade agarose to release neoagarotetraose, similarly to a β-agarase I, whereas Aga86E was demonstrated to exolytically degrade agarose to form neoagarobiose. The agarolytic system of S. degradans 2-40 is thus predicted to be composed of a secreted endo-acting GH16-dependent depolymerase, a surface-associated GH50-dependent depolymerase, an exo-acting GH86-dependent agarase, and an α-neoagarobiose hydrolase to release galactose from agarose.
机译:蔗糖降解菌2-40(以前称为Microbulbifer degradans 2-40)是一种海洋γ-亚群变形杆菌,能够降解许多复杂的多糖,例如琼脂。虽然已经对几种琼脂分解系统进行了生化表征,但琼脂分解系统的遗传学仅得到部分确定。通过使用基因组学,蛋白质组学和遗传学方法,鉴定了S. degradans 2-40琼脂糖分解系统的组成部分。在降解链球菌2-40基因组中鉴定出五个琼脂酶。 Aga50A和Aga50D包括GH50域。 Aga86C和Aga86E包含GH86域,而Aga16B带有GH16域。在Aga16B和Aga86E中鉴定了新的家族6碳水化合物结合模块(CBM6)。 Aga86C有一个氨基末端酰化位点,表明它是表面缔合的。通过质谱法在从琼脂生长的细胞的培养滤液中获得的琼脂分解级分中检测到Aga16B,Aga86C和Aga86E。缺失分析表明,aga50A和aga86E对于琼脂糖的代谢至关重要。与β-琼脂糖酶I相似,Aga16B被证明可内切降解琼脂糖以释放新琼脂四糖,而Aga86E被证明可在外切酶上降解琼脂糖形成新琼脂糖。因此,预测降解链球菌2-40的琼脂糖分解系统由分泌的内作用GH16依赖性解聚酶,与表面相关的GH50依赖性解聚酶,外作用GH86依赖性琼脂酶和α-新琼脂糖酶组成。水解酶从琼脂糖中释放半乳糖。

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