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首页> 外文期刊>The Journal of biological chemistry >Structure-Function Analysis of the Bacterial Expansin EXLX1
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Structure-Function Analysis of the Bacterial Expansin EXLX1

机译:细菌扩展蛋白exlx1的结构功能分析

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We made use of EXLX1, an expansin from Bacillus subtilis, to investigate protein features essential for its plant cell wall binding and wall loosening activities. We found that the two expansin domains, D1 and D2, need to be linked for wall extension activity and that D2 mediates EXLX1 binding to whole cell walls and to cellulose via distinct residues on the D2 surface. Binding to cellulose is mediated by three aromatic residues arranged linearly on the putative binding surface that spans D1 and D2. Mutation of these three residues to alanine eliminated cellulose binding and concomitantly eliminated wall loosening activity measured either by cell wall extension or by weakening of filter paper but hardly affected binding to whole cell walls, which is mediated by basic residues located on other D2 surfaces. Mutation of these basic residues to glutamine reduced cell wall binding but not wall loosening activities. We propose domain D2 as the founding member of a new carbohydrate binding module family, CBM63, but its function in expansin activity apparently goes beyond simply anchoring D1 to the wall. Several polar residues on the putative binding surface of domain D1 are also important for activity, most notably Asp82, whose mutation to alanine or asparagine completely eliminated wall loosening activity. The functional insights based on this bacterial expansin may be extrapolated to the interactions of plant expansins with cell walls.
机译:我们利用EXLX1,来自枯草芽孢杆菌的扩展蛋白,以研究其植物细胞壁结合和壁宽松活性所必需的蛋白质特征。我们发现,两个扩展蛋白结构域,D1和D2需要与壁延伸活动连接,并且D2介导EXLX1与整个细胞壁的结合,并通过D2表面上的不同残留物纤维素。与纤维素的结合是由三种芳族残基介导的三种芳族残基在跨越D1和D2的推定结合表面上线性排列。这三个残基对丙氨酸的突变消除纤维素结合,并伴随着通过细胞壁延伸或通过滤纸的弱化来测量的壁松动活性,而是几乎不会影响到全细胞壁的结合,其由位于其他D2表面上的基本残基介导。这些碱性残基对谷氨酰胺的突变降低细胞壁结合但不是壁宽松的活性。我们提出了域D2作为新的碳水化合物绑定模块系列CBM63的创始成员,但其在扩展素活动中的功能显然超出了将D1锚固到墙壁上。在结构域D1的推定结合表面上的几个极性残基对于活性也很重要,最重要的是Asp82,其突变与丙氨酸或天冬酰胺完全消除的壁松动活性。基于该细菌扩展蛋白的功能见解可以推断为具有细胞壁的植物扩展素的相互作用。

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