首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Structure of a Talaromyces pinophilus GH62 arabinofuranosidase in complex with AraDNJ at 1.25A° resolution
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Structure of a Talaromyces pinophilus GH62 arabinofuranosidase in complex with AraDNJ at 1.25A° resolution

机译:塔拉莫氏菌GH62 Arabinofuranodasidase的结构在络合物中,Araadnj在1.25A°分辨率下

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The enzymatic hydrolysis of complex plant biomass is a major societal goal of the 21st century in order to deliver renewable energy from nonpetroleum and nonfood sources. One of the major problems in many industrial processes, including the production of second-generation biofuels from lignocellulose, is the presence of ‘hemicelluloses' such as xylans which block access to the cellulosic biomass. Xylans, with a polymeric β-1,4-xylose backbone, are frequently decorated with acetyl, glucuronyl and arabinofuranosyl ‘side-chain' substituents, all of which need to be removed for complete degradation of the xylan. As such, there is interest in side-chain-cleaving enzymes and their action on polymeric substrates. Here, the 1.25 ? resolution structure of the Talaromyces pinophilus arabinofuranosidase in complex with the inhibitor AraDNJ, which binds with a K_d of 24 ± 0.4 mM, is reported. Positively charged iminosugars are generally considered to be potent inhibitors of retaining glycosidases by virtue of their ability to interact with both acid/base and nucleophilic carboxylates. Here, AraDNJ shows good inhibition of an inverting enzyme, allowing further insight into the structural basis for arabinoxylan recognition and degradation.
机译:复杂植物生物质的酶水解是21世纪的主要目标,以便从非单体和非食物来源提供可再生能源。许多工业过程中的主要问题之一,包括来自木质纤维素的二代生物燃料的主要问题,是存在“半纤维素”,例如Xylans,其阻止进入纤维素生物质。用聚合物β-1,4-木糖骨架的Xylans经常用乙酰,葡糖醛氢核糖和阿拉伯呋喃糖基'侧链'取代基装饰,所有这些都需要除去以完全降解木聚糖。因此,存在对聚合物衬底上的侧链切割酶及其作用的兴趣。在这里,1.25?据报道,与抑制剂Aradnj的络合物中塔拉莫氏菌草呋喃脲酸酯酶的分辨率结构,其据报道了与24±0.4mm的K_D结合。正电荷的IminoOugars通常被认为是通过它们与酸/碱和亲核羧酸盐相互作用的能力保持糖苷酶的有效抑制剂。这里,Aradnj显示出对反相酶的良好抑制,从而进一步了解阿拉伯辛氧基识别和降解的结构基础。

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