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来自首个具有β-1,3-内切葡聚糖酶活性的嗜热GH50家族及GH50_3亚家族创始成员的Fsa16295Glu的生化特性

Biochemical characterization of Fsa16295Glu from the first hyperthermophilic GH50 with β-1,3-endoglucanase activity and founding member of the subfamily GH50_3.

作者信息

Covington Jonathan K, Torosian Nicole, Cook Allison M, Palmer Marike, Bryan Scott G, Nou Nancy O, Mewalal Ritesh, Harmon-Smith Miranda, Blaby Ian K, Cheng Jan-Fang, Hess Matthias, Brumm Phillip J, Singh Nitin K, Venkateswaran Kasthuri, Hedlund Brian P

机构信息

School of Life Sciences, University of Nevada, Las Vegas, NV, United States.

Department of Microbiology, University of Manitoba, Winnipeg, MB, Canada.

出版信息

Front Microbiol. 2024 Apr 25;15:1355444. doi: 10.3389/fmicb.2024.1355444. eCollection 2024.

Abstract

The aerobic hyperthermophile catabolizes diverse polysaccharides and is the only cultivated member of the class within the phylum . It encodes 117 putative glycoside hydrolases (GHs), including two from GH family 50 (GH50). In this study, we expressed, purified, and functionally characterized one of these GH50 enzymes, Fsa16295Glu. We show that Fsa16295Glu is a β-1,3-endoglucanase with optimal activity on carboxymethyl curdlan (CM-curdlan) and only weak agarase activity, despite most GH50 enzymes being described as β-agarases. The purified enzyme has a wide temperature range of 4-95°C (optimal 80°C), making it the first characterized hyperthermophilic representative of GH50. The enzyme is also active at a broad pH range of at least 5.5-11 (optimal 6.5-10). Fsa16295Glu possesses a relatively high /K of 1.82 × 10 s M with CM-curdlan and degrades CM-curdlan nearly completely to sugar monomers, indicating preferential hydrolysis of glucans containing β-1,3 linkages. Finally, a phylogenetic analysis of Fsa16295Glu and all other GH50 enzymes revealed that Fsa16295Glu is distant from other characterized enzymes but phylogenetically related to enzymes from thermophilic archaea that were likely acquired horizontally from Given its functional and phylogenetic novelty, we propose that Fsa16295Glu represents a new enzyme subfamily, GH50_3.

摘要

这种需氧嗜热菌能分解多种多糖,是该门内该纲唯一可培养的成员。它编码117种假定的糖苷水解酶(GHs),其中包括两种来自糖苷水解酶家族50(GH50)的酶。在本研究中,我们对其中一种GH50酶Fsa16295Glu进行了表达、纯化及功能表征。我们发现Fsa16295Glu是一种β-1,3-内切葡聚糖酶,对羧甲基凝胶多糖(CM-凝胶多糖)具有最佳活性,且琼脂酶活性较弱,尽管大多数GH50酶被描述为β-琼脂酶。纯化后的酶具有4-95°C的宽温度范围(最适温度80°C),使其成为首个经表征的GH50嗜热代表酶。该酶在至少5.5-11的宽pH范围内也具有活性(最适pH 6.5-10)。Fsa16295Glu对CM-凝胶多糖的相对较高的kcat/Km为1.82×10⁵ s⁻¹ M⁻¹,并将CM-凝胶多糖几乎完全降解为糖单体,表明其优先水解含有β-1,3键的葡聚糖。最后,对Fsa16295Glu和所有其他GH50酶的系统发育分析表明,Fsa16295Glu与其他已表征的酶距离较远,但在系统发育上与可能从……水平获得的嗜热古菌的酶相关。鉴于其功能和系统发育的新颖性,我们提出Fsa16295Glu代表一个新的酶亚家族,即GH50_3。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9117/11079163/e263a7ff2c5d/fmicb-15-1355444-g001.jpg

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