热细胞活弧菌DSM1313的外显式1,5-α- l -阿拉伯糖氟葡萄糖苷酶AtAbf43C的功能和结构表征

IF 4.3 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Joey L Galindo, Philip D Jeffrey, Angela Zhu, A James Link, Jonathan M Conway
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引用次数: 0

摘要

热胞活动弧菌利用一系列糖苷水解酶(GH)酶降解植物生物量中的多种多糖。本文描述了一种来自A. thermocellus的未被鉴定的GH家族43亚家族26 (GH43_26)α- l -阿拉伯糖醛酸苷酶(EC 3.2.1.55) AtAbf43C的结构和功能。在5.5℃和65℃条件下,AtAbf43C对对硝基苯酚-α- l-阿拉伯糖醛酸苷(pNPAra)具有最佳活性,是迄今为止鉴定的最耐热的细菌GH43_26酶。我们解决了全长AtAbf43C及其单个碳水化合物结合模块家族42 (CBM42)和GH43结构域的高分辨率晶体结构,包括与l-阿拉伯糖糖分子结合的结构。CBM42结构域为典型的β-三叶折叠,GH43结构域为典型的5叶状β-螺旋桨,与中温细菌链霉菌(Streptomyces avermitilis, PDB 3AKH)的GH43_26酶SaAraf43A相似。然而,AtAbf43C表现出独特的结构域组织,CBM42在n端,GH43结构域在c端,与SaAraf43A相反。结构比对鉴定了AtAbf43C中保守的催化三元组(D168, D283和E344),我们通过定点诱变实验证实了这一点。AtAbf43C GH43结合口袋的深窄拓扑结构与阿拉伯寡糖(AOS)底物的外显子活性一致。事实上,对AtAbf43C水解的多糖和寡糖的液相色谱-质谱(LC-MS)分析证实,AtAbf43C的外显子活性主要针对α-1,5链阿拉伯寡糖。这表明AtAbf43C有助于其他热胞草酶降解富含阿拉伯糖多糖释放的AOS。总之,这些结果扩大了我们对GH43_26酶的结构功能及其在植物生物量解构中的作用的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Functional and structural characterization of AtAbf43C: an exo-1,5-α-L-arabinofuranosidase from Acetivibrio thermocellus DSM1313.

Acetivibrio thermocellus degrades diverse polysaccharides found in plant biomass using an array of glycoside hydrolase (GH) enzymes. Here, we describe the structure and function of AtAbf43C, an uncharacterized GH family 43 subfamily 26 (GH43_26) α-L-arabinofuranosidase (EC 3.2.1.55) from A. thermocellus. AtAbf43C is optimally active on para-nitrophenol-α-L-arabinofuranoside at pH 5.5 and 65 °C, making it the most thermophilic bacterial GH43_26 enzyme characterized to date. We solved high-resolution crystal structures of full-length AtAbf43C and its individual carbohydrate binding module family 42 (CBM42) and GH43 domains, including a structure with L-arabinofuranose molecules bound to the CBM42. The CBM42 domain adopts a typical β-trefoil fold, and the GH43 domain forms a canonical 5-bladed β-propeller, each resembling those in the mesophilic GH43_26 enzyme SaAraf43A from Streptomyces avermitilis (PDB 3AKH). However, AtAbf43C exhibits a unique domain organization, with the CBM42 at the N-terminus and the GH43 domain at the C-terminus, the reverse of the arrangement observed in SaAraf43A. Structural alignment enabled identification of the conserved catalytic triad (D168, D283, and E344) in AtAbf43C, which we confirmed experimentally with site-directed mutagenesis. The deep-narrow topology of the AtAbf43C GH43 binding pocket is consistent with exo activity on arabino-oligosaccharide (AOS) substrates. Indeed, liquid chromatography-mass spectrometry (LC-MS) analysis of polysaccharides and oligosaccharides hydrolyzed by AtAbf43C confirmed exo activity primarily toward α-1,5-linked AOSs. This suggests AtAbf43C contributes to the degradation of AOS released from arabinose-rich polysaccharides by other A. thermocellus enzymes. Together, these results expand our understanding of the structure-function of GH43_26 enzymes and their role in plant biomass deconstruction.

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来源期刊
Biochemical Journal
Biochemical Journal 生物-生化与分子生物学
CiteScore
8.00
自引率
0.00%
发文量
255
审稿时长
1 months
期刊介绍: Exploring the molecular mechanisms that underpin key biological processes, the Biochemical Journal is a leading bioscience journal publishing high-impact scientific research papers and reviews on the latest advances and new mechanistic concepts in the fields of biochemistry, cellular biosciences and molecular biology. The Journal and its Editorial Board are committed to publishing work that provides a significant advance to current understanding or mechanistic insights; studies that go beyond observational work using in vitro and/or in vivo approaches are welcomed. Painless publishing: All papers undergo a rigorous peer review process; however, the Editorial Board is committed to ensuring that, if revisions are recommended, extra experiments not necessary to the paper will not be asked for. Areas covered in the journal include: Cell biology Chemical biology Energy processes Gene expression and regulation Mechanisms of disease Metabolism Molecular structure and function Plant biology Signalling
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