首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Fusion of Dioxygenase and Lignin-binding Domains in a Novel Secreted Enzyme from Cellulolytic Streptomyces sp. SirexAA-E
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Fusion of Dioxygenase and Lignin-binding Domains in a Novel Secreted Enzyme from Cellulolytic Streptomyces sp. SirexAA-E

机译:双加氧酶和木质素结合域在纤维素酶解链霉菌属新型分泌酶中的融合。 SirexAA-E

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摘要

Streptomyces sp. SirexAA-E is a highly cellulolytic bacterium isolated from an insect/microbe symbiotic community. When grown on lignin-containing biomass, it secretes SACTE_2871, an aromatic ring dioxygenase domain fused to a family 5/12 carbohydrate-binding module (CBM 5/12). Here we present structural and catalytic studies of this novel fusion enzyme, thus providing insight into its function. The dioxygenase domain has the core β-sandwich fold typical of this enzyme family but lacks a dimerization domain observed in other intradiol dioxygenases. Consequently, the x-ray structure shows that the enzyme is monomeric and the Fe(III)-containing active site is exposed to solvent in a shallow depression on a planar surface. Purified SACTE_2871 catalyzes the O2-dependent intradiol cleavage of catechyl compounds from lignin biosynthetic pathways, but not their methylated derivatives. Binding studies show that SACTE_2871 binds synthetic lignin polymers and chitin through the interactions of the CBM 5/12 domain, representing a new binding specificity for this fold-family. Based on its unique structural features and functional properties, we propose that SACTE_2871 contributes to the invasive nature of the insect/microbial community by destroying precursors needed by the plant for de novo lignin biosynthesis as part of its natural wounding response.
机译:链霉菌SirexAA-E是一种高度纤维素分解细菌,从昆虫/微生物共生群落中分离出来。当在含木质素的生物质上生长时,它会分泌SACTE_2871,这是一种融合到5/12族碳水化合物结合模块(CBM 5/12)上的芳香环双加氧酶结构域。在这里,我们介绍了这种新型融合酶的结构和催化研究,从而提供了对其功能的深入了解。双加氧酶结构域具有该酶家族典型的核心β-夹心折叠,但是缺乏在其他二醇内双加氧酶中观察到的二聚结构域。因此,X射线结构表明该酶是单体的,并且含Fe(III)的活性位点在平面上的浅凹处暴露于溶剂。纯化的SACTE_2871可催化木质素生物合成途径中的邻苯二酚化合物的O2依赖性内二醇裂解,而不是其甲基化衍生物。结合研究表明,SACTE_2871通过CBM 5/12结构域的相互作用结合合成的木质素聚合物和几丁质,代表了该折叠家族的新结合特异性。基于其独特的结构特征和功能特性,我们建议SACTE_2871通过破坏植物进行新木质素生物合成所需的前体,作为昆虫/微生物群落的侵入性,作为其自然受伤反应的一部分。

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