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裂褶菌溶细胞多糖单加氧酶的功能表征,该酶可降解非晶态底物。

Functional characterization of a lytic polysaccharide monooxygenase from Schizophyllum commune that degrades non-crystalline substrates.

机构信息

Faculty of Chemistry, Biotechnology, and Food Science, Norwegian University of Life Sciences (NMBU), P.O. Box 5003, 1432, Ås, Norway.

Norwegian Biopolymer Laboratory (NOBIPOL), Department of Biotechnology and Food Science, NTNU Norwegian University of Science and Technology, Sem Sælands Vei 6/8, 7491, Trondheim, Norway.

出版信息

Sci Rep. 2023 Oct 13;13(1):17373. doi: 10.1038/s41598-023-44278-1.

Abstract

Lytic polysaccharide monooxygenases (LPMOs) are mono-copper enzymes that use O or HO to oxidatively cleave glycosidic bonds. LPMOs are prevalent in nature, and the functional variation among these enzymes is a topic of great interest. We present the functional characterization of one of the 22 putative AA9-type LPMOs from the fungus Schizophyllum commune, ScLPMO9A. The enzyme, expressed in Escherichia coli, showed C4-oxidative cleavage of amorphous cellulose and soluble cello-oligosaccharides. Activity on xyloglucan, mixed-linkage β-glucan, and glucomannan was also observed, and product profiles differed compared to the well-studied C4-oxidizing NcLPMO9C from Neurospora crassa. While NcLPMO9C is also active on more crystalline forms of cellulose, ScLPMO9A is not. Differences between the two enzymes were also revealed by nuclear magnetic resonance (NMR) titration studies showing that, in contrast to NcLPMO9C, ScLPMO9A has higher affinity for linear substrates compared to branched substrates. Studies of HO-fueled degradation of amorphous cellulose showed that ScLPMO9A catalyzes a fast and specific peroxygenase reaction that is at least two orders of magnitude faster than the apparent monooxygenase reaction. Together, these results show that ScLPMO9A is an efficient LPMO with a broad substrate range, which, rather than acting on cellulose, has evolved to act on amorphous and soluble glucans.

摘要

溶细胞多糖单加氧酶(LPMOs)是一类单铜酶,使用 O 或 HO 氧化断裂糖苷键。LPMOs 在自然界中广泛存在,这些酶的功能多样性是一个备受关注的研究课题。我们对真菌裂褶菌(Schizophyllum commune)中 22 种假定的 AA9 型 LPMO 中的一种 ScLPMO9A 进行了功能表征。该酶在大肠杆菌中表达,可对无定形纤维素和可溶性纤维寡糖进行 C4 位氧化裂解。还观察到对木葡聚糖、混合连接β-葡聚糖和甘露聚糖的活性,与来自粗糙脉孢菌(Neurospora crassa)的研究较为透彻的 C4 位氧化 NcLPMO9C 相比,产物谱有所不同。虽然 NcLPMO9C 也能作用于更结晶形式的纤维素,但 ScLPMO9A 不能。通过核磁共振(NMR)滴定研究揭示了两种酶之间的差异,与 NcLPMO9C 不同,ScLPMO9A 对线性底物的亲和力比对支链底物的亲和力更高。对无定形纤维素的 HO 驱动降解研究表明,ScLPMO9A 催化快速且特异性的过氧化物酶反应,其速度至少比表观单加氧酶反应快两个数量级。综上所述,这些结果表明 ScLPMO9A 是一种具有广泛底物范围的高效 LPMO,它不是作用于纤维素,而是进化为作用于无定形和可溶性葡聚糖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf6d/10575960/7ded7cdd5156/41598_2023_44278_Fig1_HTML.jpg

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