Kellett L E, Poole D M, Ferreira L M, Durrant A J, Hazlewood G P, Gilbert H J
Department of Agricultural Biochemistry and Nutrition, University of Newcastle upon Tyne, U.K.
Biochem J. 1990 Dec 1;272(2):369-76. doi: 10.1042/bj2720369.
The complete nucleotide sequence of the Pseudomonas fluorescens subsp. cellulosa xynB gene, encoding an endo-beta-1,4-xylanase (xylanase B; XYLB) has been determined. The structural gene consists of an open reading frame (ORF) of 1775 bp coding for a protein of Mr 61,000. A second ORF (xynC) of 1712 bp, which starts 148 bp downstream of xynB, encodes a protein, designated xylanase C (XYLC), of Mr 59,000. XYLB hydrolyses oat spelt xylan to xylobiose and xylose, whereas XYLC releases only arabinose from the same substrate. Thus XYLB is a typical xylanase and XYLC is an arabinofuranosidase. Both enzymes bind to crystalline cellulose (Avicel), but not to xylan. The nucleotide sequences between residues 114 and 931 of xynB and xynC were identical, as were amino acid residues 39-311 of XYLB and XYLC. This conserved sequence is reiterated elsewhere in the P. fluorescens subsp. cellulosa genome. Truncated derivatives of XYLB and XYLC, in which the conserved sequence had been deleted, retained catalytic activity, but did not exhibit cellulose binding. A hybrid gene in which the 5' end of xynC, encoding residues 1-110 of XYLC, was fused to the Escherichia coli pho A' gene (encodes mature alkaline phosphatase) directed the synthesis of a fusion protein which exhibited alkaline phosphatase activity and bound to cellulose.
荧光假单胞菌纤维素亚种木聚糖酶B基因(xynB)的完整核苷酸序列已被测定,该基因编码一种内切β-1,4-木聚糖酶(木聚糖酶B;XYLB)。结构基因由一个1775 bp的开放阅读框(ORF)组成,编码一个分子量为61,000的蛋白质。第二个1712 bp的ORF(xynC)在xynB下游148 bp处起始,编码一个分子量为59,000的蛋白质,命名为木聚糖酶C(XYLC)。XYLB将燕麦spelto木聚糖水解为木二糖和木糖,而XYLC仅从同一底物中释放阿拉伯糖。因此,XYLB是一种典型的木聚糖酶,XYLC是一种阿拉伯呋喃糖苷酶。两种酶都能与结晶纤维素(微晶纤维素)结合,但不能与木聚糖结合。xynB和xynC中114至931位残基之间的核苷酸序列相同,XYLB和XYLC的39 - 311位氨基酸残基也相同。这个保守序列在荧光假单胞菌纤维素亚种基因组的其他地方也有重复。XYLB和XYLC的截短衍生物删除了保守序列后仍保留催化活性,但不表现出纤维素结合能力。一个杂合基因,其中编码XYLC 1 - 110位残基的xynC的5'端与大肠杆菌pho A'基因(编码成熟碱性磷酸酶)融合,指导合成了一种具有碱性磷酸酶活性并能与纤维素结合的融合蛋白。