Guo Bing, Chen Xiu-Lan, Sun Cai-Yun, Zhou Bai-Cheng, Zhang Yu-Zhong
Marine Biotechnology Research Center, Shandong University, Jinan, China.
Appl Microbiol Biotechnol. 2009 Oct;84(6):1107-15. doi: 10.1007/s00253-009-2056-y. Epub 2009 Jun 9.
Although a lot of xylanases are studied, only a few xylanases from marine microorganisms have been reported. A new xylanase gene, xynA, was cloned from marine bacterium Glaciecola mesophila KMM 241. Gene xynA contains 1,272 bp and encodes a 423-amino acid xylanase precursor. The recombinant xylanase, XynA, expressed in Escherichia coli BL21 is a monomer with a molecular mass of 43 kDa. Among the characterized xylanases, XynA shares the highest identity (46%) to the xylanase from Flavobacterium sp. strain MSY2. The optimum pH and temperature for XynA is 7.0 and 30 degrees C. XynA retains 23% activity and 27% catalytic efficiency at 4 degrees C. XynA has low thermostability, remaining 20% activity after 60-min incubation at 30 degrees C. Its apparent melting temperature (T (m)) is 44.5 degrees C. These results indicate that XynA is a cold-active xylanase. XynA shows a high level of salt-tolerance, with the highest activity at 0.5 M NaCl and retaining 90% activity in 2.5 M NaCl. It may be the first salt-tolerant xylanase reported. XynA is a strict endo-beta-1,4-xylanase with a demand of at least four sugar moieties for effective cleavage. It efficiently hydrolyzes xylo-oligosaccharides and xylan into xylobiose and xylotriose without producing xylose, suggesting its potential in xylo-oligosaccharides production.
虽然已经对许多木聚糖酶进行了研究,但仅有少数来自海洋微生物的木聚糖酶被报道。一个新的木聚糖酶基因xynA从海洋细菌嗜冷栖冰菌Glaciecola mesophila KMM 241中克隆得到。基因xynA包含1272个碱基对,编码一个423个氨基酸的木聚糖酶前体。在大肠杆菌BL21中表达的重组木聚糖酶XynA是一种单体,分子量为43 kDa。在已鉴定的木聚糖酶中,XynA与黄杆菌属菌株MSY2的木聚糖酶具有最高的同一性(46%)。XynA的最适pH和温度分别为7.0和30℃。XynA在4℃时保留23%的活性和27%的催化效率。XynA热稳定性较低,在30℃孵育60分钟后仅保留20%的活性。其表观解链温度(T (m))为44.5℃。这些结果表明XynA是一种冷活性木聚糖酶。XynA表现出高度的耐盐性,在0.5 M NaCl时活性最高,在2.5 M NaCl中仍保留90%的活性。它可能是报道的首个耐盐木聚糖酶。XynA是一种严格的内切-β-1,4-木聚糖酶,有效切割需要至少四个糖部分。它能有效地将木寡糖和木聚糖水解为木二糖和木三糖,不产生木糖,表明其在木寡糖生产中的潜力。