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从扩展青霉中纯化和表征两种胞外木聚糖酶:一种新型嗜酸木聚糖酶。

Purification and characterization of two extracellular xylanases from Penicillium sclerotiorum: a novel acidophilic xylanase.

机构信息

Department of Biochemistry and Microbiology, São Paulo State University, Avenue 24-A, 1515, 13506-900 Rio Claro, São Paulo, Brazil.

出版信息

Appl Biochem Biotechnol. 2010 Sep;162(2):429-43. doi: 10.1007/s12010-009-8731-8. Epub 2009 Aug 13.

Abstract

Two xylanases from the crude culture filtrate of Penicillium sclerotiorum were purified to homogeneity by a rapid and efficient procedure, using ion-exchange and molecular exclusion chromatography. Molecular masses estimated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis were 23.9 and 33.1 kDa for xylanase I and II, respectively. The native enzymes' molecular masses of 23.8 and 30.8 kDa were estimated for xylanase I and II, respectively, by molecular exclusion chromatography. Both enzymes are glycoproteins with optimum temperature and pH of 50 degrees C and pH 2.5 for xylanase I and 55 degrees C and pH 4.5 for xylanase II. The reducing agents beta-mercaptoethanol and dithio-treitol enhanced xylanase activities, while the ions Hg(2+) and Cu(2+) as well the detergent SDS were strong inhibitors of both enzymes, but xylanase II was stimulated when incubated with Mn(2+). The K (m) value of xylanase I for birchwood xylan and for oat spelt xylan were 6.5 and 2.6 mg mL(-1), respectively, whereas the K (m) values of xylanase II for these substrates were 26.61 and 23.45 mg mL(-1). The hydrolysis of oat spelt xylan by xylanase I released xylobiose and larger xylooligosaccharides while xylooligosaccharides with a decreasing polymerization degree up to xylotriose were observed by the action of xylanase II. The present study is among the first works to examine and describe an extracellular, highly acidophilic xylanase, with an unusual optimum pH at 2.5. Previously, only one work described a xylanase with optimum pH 2.0. This novel xylanase showed interesting characteristics for biotechnological process such as feed and food industries.

摘要

从粗糙培养滤液中分离纯化出的木聚糖酶 I 和 II 是 Penicillium sclerotiorum 的两种木聚糖酶,采用离子交换和分子排阻层析技术进行快速有效的纯化。经十二烷基硫酸钠-聚丙烯酰胺凝胶电泳估计,木聚糖酶 I 和 II 的分子量分别为 23.9 和 33.1 kDa。通过分子排阻层析法,木聚糖酶 I 和 II 的天然酶分子量分别为 23.8 和 30.8 kDa。两种酶均为糖蛋白,木聚糖酶 I 的最适温度和 pH 值分别为 50°C 和 pH 2.5,木聚糖酶 II 的最适温度和 pH 值分别为 55°C 和 pH 4.5。还原剂β-巯基乙醇和二硫苏糖醇增强了木聚糖酶的活性,而 Hg(2+)和 Cu(2+)离子以及去污剂 SDS 强烈抑制了两种酶,但 Mn(2+)孵育时木聚糖酶 II 受到刺激。木聚糖酶 I 对桦木木聚糖和燕麦斯佩尔特木聚糖的 K (m) 值分别为 6.5 和 2.6 mg mL(-1),而木聚糖酶 II 对这两种底物的 K (m) 值分别为 26.61 和 23.45 mg mL(-1)。木聚糖酶 I 水解燕麦斯佩尔特木聚糖释放出木二糖和较大的木低聚糖,而木聚糖酶 II 作用下观察到聚合度降低至木三糖的木低聚糖。本研究是首次研究和描述一种细胞外、高嗜酸的木聚糖酶,其最适 pH 值为 2.5,这是一个不寻常的现象。此前,仅有一项工作描述了一种最适 pH 值为 2.0 的木聚糖酶。这种新型木聚糖酶具有在饲料和食品工业等生物技术过程中的有趣特性。

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