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从黄木层孔菌 HY-24 中分离得到一种新型 GH10 内切-β-1,4-木聚糖酶,具有蓖麻毒素型β-三叶因子样结构域。对其进行遗传和功能表征。

Genetic and functional characterization of a novel GH10 endo-β- 1,4-xylanase with a ricin-type β-trefoil domain-like domain from Luteimicrobium xylanilyticum HY-24.

机构信息

Industrial Bio-Materials Research Center, Korea Research Institute of Bioscience and Biotechnology (KRIBB), Daejeon 34141, Republic of Korea.

Gyeonggi Bio-Center, Gyeonggi Institute of Science & Technology Promotion, Suwon 16229, Republic of Korea.

出版信息

Int J Biol Macromol. 2018 Jan;106:620-628. doi: 10.1016/j.ijbiomac.2017.08.063. Epub 2017 Aug 13.

Abstract

The gene (1488-bp) encoding a novel GH10 endo-β-1,4-xylanase (XylM) consisting of an N-terminal catalytic GH10 domain and a C-terminal ricin-type β-trefoil lectin domain-like (RICIN) domain was identified from Luteimicrobium xylanilyticum HY-24. The GH10 domain of XylM was 72% identical to that of Micromonospora lupini endo-β-1,4-xylanase and the RICIN domain was 67% identical to that of Actinospica robiniae hypothetical protein. The recombinant enzyme (rXylM: 49kDa) exhibited maximum activity toward beechwood xylan at 65°C and pH 6.0, while the optimum temperature and pH of its C-terminal truncated mutant (rXylM△RICIN: 35kDa) were 45°C and 5.0, respectively. After pre-incubation of 1h at 60°C, rXylM retained over 80% of its initial activity, but the thermostability of rXylM△RICIN was sharply decreased at temperatures exceeding 40°C. The specific activity (254.1Umg) of rXylM toward oat spelts xylan was 3.4-fold higher than that (74.8Umg) of rXylM△RICIN when the same substrate was used. rXylM displayed superior binding capacities to lignin and insoluble polysaccharides compared to rXylM△RICIN. Enzymatic hydrolysis of β-1,4-d-xylooligosaccharides (X-X) and birchwood xylan yielded X as the major product. The results suggest that the RICIN domain in XylM might play an important role in substrate-binding and biocatalysis.

摘要

从木聚糖分解菌 Luteimicrobium xylanilyticum HY-24 中鉴定出一个新型 GH10 内切-β-1,4-木聚糖酶(XylM)的基因(1488bp),该酶由一个 N 端催化 GH10 结构域和一个 C 端蓖麻型β-三叶因子样(RICIN)结构域组成。XylM 的 GH10 结构域与 Micromonospora lupini 内切-β-1,4-木聚糖酶的同源性为 72%,RICIN 结构域与 Actinospica robiniae 假定蛋白的同源性为 67%。重组酶(rXylM:49kDa)在 65°C 和 pH6.0 下对桦木木聚糖表现出最大活性,而其 C 端截短突变体(rXylM△RICIN:35kDa)的最适温度和 pH 分别为 45°C 和 5.0。在 60°C 下预孵育 1h 后,rXylM 保留了其初始活性的 80%以上,但 rXylM△RICIN 的热稳定性在超过 40°C 时急剧下降。当使用相同的底物时,rXylM 对燕麦斯佩尔特木聚糖的比活性(254.1Umg)比 rXylM△RICIN(74.8Umg)高 3.4 倍。与 rXylM△RICIN 相比,rXylM 对木质素和不溶性多糖具有更高的结合能力。β-1,4-d-木二糖(X-X)和桦木木聚糖的酶解产物以 X 为主。结果表明,XylM 中的 RICIN 结构域可能在底物结合和生物催化中起重要作用。

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