...
首页> 外文期刊>The Biochemical Journal >The type II and X cellulose-binding domains of Pseudomonas xylanase A potentiate catalytic activity against complex substrates by a common mechanism.
【24h】

The type II and X cellulose-binding domains of Pseudomonas xylanase A potentiate catalytic activity against complex substrates by a common mechanism.

机译:假单胞菌木聚糖酶A的II型和X型纤维素结合结构域通过共同机制增强了对复杂底物的催化活性。

获取原文
获取原文并翻译 | 示例

摘要

Xylanase A (Pf Xyn10A), in common with several other Pseudomonas fluorescens subsp. cellulosa polysaccharidases, consists of a Type II cellulose-binding domain (CBD), a catalytic domain (Pf Xyn10A(CD)) and an internal domain that exhibits homology to Type X CBDs. The Type X CBD of Pf Xyn10A, expressed as a discrete entity (CBD(X)) or fused to the catalytic domain (Pf Xyn10A'), bound to amorphous and bacterial microcrystalline cellulose with a K(a) of 2.5 x 10(5) M(-1). CBD(X) exhibited no affinity for soluble forms of cellulose or cello-oligosaccharides, suggesting that the domain interacts with multiple cellulose chains in the insoluble forms of the polysaccharide. Pf Xyn10A' was 2-3 times more active against cellulose-hemicellulose complexes than Pf Xyn10A(CD); however, Pf Xyn10A' and Pf Xyn10A(CD) exhibited the same activity against soluble substrates. CBD(X) did not disrupt the structure of plant-cell-wall material or bacterial microcrystalline cellulose, and did not potentiate Pf Xyn10A(CD) when not covalently linked to the enzyme. There was no substantial difference in the affinity of full-length Pf Xyn10A and the enzyme's Type II CBD for cellulose. The activity of Pf Xyn10A against cellulose-hemicellulose complexes was similar to that of Pf Xyn10A', and a derivative of Pf Xyn10A in which the Type II CBD is linked to the Pf Xyn10A(CD) via a serine-rich linker sequence [Bolam, Cireula, McQueen-Mason, Simpson, Williamson, Rixon, Boraston, Hazlewood and Gilbert (1998) Biochem J. 331, 775-781]. These data indicate that CBD(X) is functional in Pf Xyn10A and that no synergy, either in ligand binding or in the potentiation of catalysis, is evident between the Type II and X CBDs of the xylanase.
机译:木聚糖酶A(Pf Xyn10A),与其他几个荧光假单胞菌亚种相同。纤维素多糖酶由II型纤维素结合域(CBD),催化域(Pf Xyn10A(CD))和与X型CBD具有同源性的内部域组成。 Pf Xyn10A的X型CBD,表示为离散实体(CBD(X))或与催化结构域(Pf Xyn10A'融合),结合K(a)为2.5 x 10(5)的无定形和细菌微晶纤维素)M(-1)。 CBD(X)对纤维素或纤维寡糖的可溶性形式没有亲和力,表明该结构域与多糖的不溶形式的多个纤维素链相互作用。 Pf Xyn10A'对纤维素-半纤维素复合物的活性是Pf Xyn10A(CD)的2-3倍;但是,Pf Xyn10A'和Pf Xyn10A(CD)对可溶性底物表现出相同的活性。 CBD(X)不会破坏植物细胞壁材料或细菌微晶纤维素的结构,并且当未与酶共价连接时不会增强Pf Xyn10A(CD)。全长Pf Xyn10A与酶的II型CBD对纤维素的亲和力没有实质性差异。 Pf Xyn10A对纤维素-半纤维素复合物的活性类似于Pf Xyn10A',以及Pf Xyn10A的衍生物,其中II型CBD通过富含丝氨酸的接头序列与Pf Xyn10A(CD)连接[Bolam, Cireula,McQueen-Mason,Simpson,Williamson,Rixon,Bolaston,Hazlewood和Gilbert(1998)Biochem J.331,775-781]。这些数据表明CBD(X)在Pf Xyn10A中起作用,并且在木聚糖酶的II型和X CBD之间没有明显的协同作用,无论是配体结合还是催化增效作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号