Iefuji H, Chino M, Kato M, Iimura Y
National Research Institute of Brewing, Higashi-hiroshima, Japan.
Biosci Biotechnol Biochem. 1996 Aug;60(8):1331-8. doi: 10.1271/bbb.60.1331.
A xylan-degrading enzyme produced by yeast Cryptococcus sp. S-2 was isolated and purified, and characterized as an endoxylanase (1,4-beta-D-xylan xylanohydrolase [EC 3.2.1.8]). We estimated the molecular weight and isoelectric point of purified xylanase (xyn-CS2) to be 22,000 and 7.4, respectively. This low-molecular-weight xylanase had an unusual pH optimum of 2.0, and showed 75% of maximal activity even at pH 1.0. An open reading frame of the cDNA specified 209 amino acids, including a putative signal peptide of 25 amino acids. The deduced amino acid sequence of xyn-CS2 shared significant similarities with the family-G xylanases of B. pumilus, C. acetobutylicum, T. reesei, and A. kawachii. Xyn-CS2 included two unique cysteine residues in a putative catalytic region, raising the possibility that these residues are at least partially responsible for its acidophilic nature.
从酵母隐球菌属菌株S-2中分离并纯化了一种木聚糖降解酶,其被鉴定为一种内切木聚糖酶(1,4-β-D-木聚糖木聚糖水解酶[EC 3.2.1.8])。我们估计纯化后的木聚糖酶(xyn-CS2)的分子量和等电点分别为22,000和7.4。这种低分子量木聚糖酶具有不寻常的最适pH值2.0,甚至在pH 1.0时仍表现出最大活性的75%。cDNA的一个开放阅读框编码209个氨基酸,包括一个由25个氨基酸组成的假定信号肽。推导的xyn-CS2氨基酸序列与短小芽孢杆菌、丙酮丁醇梭菌、里氏木霉和河合曲霉的G家族木聚糖酶有显著相似性。Xyn-CS2在假定的催化区域包含两个独特的半胱氨酸残基,这增加了这些残基至少部分负责其嗜酸性质的可能性。