Wefers Daniel, Dong Jia, Abdel-Hamid Ahmed M, Paul Hans Müller, Pereira Gabriel V, Han Yejun, Dodd Dylan, Baskaran Ramiya, Mayer Beth, Mackie Roderick I, Cann Isaac
Department of Animal Sciences, University of Illinois at Urbana-Champaign, Urbana, Illinois, USA
Carl R. Woese Institute for Genomic Biology, University of Illinois at Urbana-Champaign, Urbana, Illinois, USA.
Appl Environ Microbiol. 2017 Aug 31;83(18). doi: 10.1128/AEM.00794-17. Print 2017 Sep 15.
The plant cell wall polysaccharide arabinan provides an important supply of arabinose, and unraveling arabinan-degrading strategies by microbes is important for understanding its use as a source of energy. Here, we explored the arabinan-degrading enzymes in the thermophilic bacterium and identified a gene cluster encoding two glycoside hydrolase (GH) family 51 α-l-arabinofuranosidases (CpAbf51A, CpAbf51B), a GH43 endoarabinanase (CpAbn43A), a GH27 β-l-arabinopyranosidase (CpAbp27A), and two GH127 β-l-arabinofuranosidases (CpAbf127A, CpAbf127B). The genes were expressed as recombinant proteins, and the functions of the purified proteins were determined with -nitrophenyl (NP)-linked sugars and naturally occurring pectin structural elements as the substrates. The results demonstrated that CpAbn43A is an endoarabinanase while CpAbf51A and CpAbf51B are α-l-arabinofuranosidases that exhibit diverse substrate specificities, cleaving α-1,2, α-1,3, and α-1,5 linkages of purified arabinan-oligosaccharides. Furthermore, both CpAbf127A and CpAbf127B cleaved β-arabinofuranose residues in complex arabinan side chains, thus providing evidence of the function of this family of enzymes on such polysaccharides. The optimal temperatures of the enzymes ranged between 60°C and 75°C, and CpAbf43A and CpAbf51A worked synergistically to release arabinose from branched and debranched arabinan. Furthermore, the hydrolytic activity on branched arabinan oligosaccharides and degradation of pectic substrates by the endoarabinanase and l-arabinofuranosidases suggested a microbe equipped with diverse activities to degrade complex arabinan in the environment. Based on our functional analyses of the genes in the arabinan degradation cluster and the substrate-binding studies on a component of the cognate transporter system, we propose a model for arabinan degradation and transport by Genomic DNA sequencing and bioinformatic analysis allowed the identification of a gene cluster encoding several proteins predicted to function in arabinan degradation and transport in The analysis of the recombinant proteins yielded detailed insights into the putative arabinan metabolism of this thermophilic bacterium. The use of various branched arabinan oligosaccharides provided a detailed understanding of the substrate specificities of the enzymes and allowed assignment of two new GH127 polypeptides as β-l-arabinofuranosidases able to degrade pectic substrates, thus expanding our knowledge of this rare group of glycoside hydrolases. In addition, the enzymes showed synergistic effects for the degradation of arabinans at elevated temperatures. The enzymes characterized from the gene cluster are, therefore, of utility for arabinose production in both the biofuel and food industries.
植物细胞壁多糖阿拉伯聚糖是阿拉伯糖的重要来源,解析微生物降解阿拉伯聚糖的策略对于理解其作为能源的利用方式具有重要意义。在此,我们研究了嗜热细菌中的阿拉伯聚糖降解酶,并鉴定出一个基因簇,该基因簇编码两种糖苷水解酶(GH)家族51的α-L-阿拉伯呋喃糖苷酶(CpAbf51A、CpAbf51B)、一种GH43内切阿拉伯聚糖酶(CpAbn43A)、一种GH27β-L-阿拉伯吡喃糖苷酶(CpAbp27A)以及两种GH127β-L-阿拉伯呋喃糖苷酶(CpAbf127A、CpAbf127B)。这些基因被表达为重组蛋白,并以对硝基苯基(NP)连接的糖类和天然存在的果胶结构元件为底物测定纯化蛋白的功能。结果表明,CpAbn43A是一种内切阿拉伯聚糖酶,而CpAbf51A和CpAbf51B是α-L-阿拉伯呋喃糖苷酶,它们表现出不同的底物特异性,可切割纯化的阿拉伯聚糖寡糖的α-1,2、α-1,3和α-1,5连接。此外,CpAbf127A和CpAbf127B均能切割复杂阿拉伯聚糖侧链中的β-阿拉伯呋喃糖残基,从而为该酶家族对这类多糖的功能提供了证据。这些酶的最适温度在60°C至75°C之间,CpAbf43A和CpAbf51A协同作用可从分支和去分支的阿拉伯聚糖中释放阿拉伯糖。此外,内切阿拉伯聚糖酶和L-阿拉伯呋喃糖苷酶对分支阿拉伯聚糖寡糖的水解活性以及对果胶底物的降解表明,该微生物具备多种活性以降解环境中的复杂阿拉伯聚糖。基于我们对阿拉伯聚糖降解簇中基因的功能分析以及对同源转运系统一个组分的底物结合研究,我们提出了嗜热栖热放线菌降解和转运阿拉伯聚糖的模型。基因组DNA测序和生物信息学分析使得能够鉴定出一个编码几种预测在嗜热栖热放线菌阿拉伯聚糖降解和转运中发挥作用的蛋白质的基因簇。对重组蛋白的分析深入了解了这种嗜热细菌假定的阿拉伯聚糖代谢。使用各种分支阿拉伯聚糖寡糖详细了解了这些酶的底物特异性,并确定了两种新的GH127多肽为能够降解果胶底物的β-L-阿拉伯呋喃糖苷酶,从而扩展了我们对这一罕见糖苷水解酶家族的认识。此外,这些酶在高温下对阿拉伯聚糖的降解表现出协同作用。因此,从该基因簇鉴定出的这些酶在生物燃料和食品工业的阿拉伯糖生产中具有应用价值。