Braithwaite K L, Black G W, Hazlewood G P, Ali B R, Gilbert H J
Department of Biological and Nutritional Sciences, University of Newcastle upon Tyne, U.K.
Biochem J. 1995 Feb 1;305 ( Pt 3)(Pt 3):1005-10. doi: 10.1042/bj3051005.
Pseudomonas fluorescens subsp. cellulosa when cultured in the presence of carob galactomannan degraded the polysaccharide. To isolate gene(s) from P. fluorescens subsp. cellulosa encoding endo-beta-1,4-mannanase (mannanase) activity, a genomic library of Pseudomonas DNA, constructed in lambda ZAPII, was screened for mannanase-expressing clones using the dye-labelled substrate, azo-carob galactomannan. The nucleotide sequence of the pseudomonad insert from a mannanase-positive clone revealed a single open reading frame of 1257 bp encoding a protein of M(r) 46,938. The deduced N-terminal sequence of the putative polypeptide conformed to a typical prokaryotic signal peptide. Truncated derivatives of the mannanase, lacking 54 and 16 residues from the N- and C-terminus respectively of the mature form of the enzyme, did not exhibit catalytic activity. Inspection of the primary structure of the mannanase did not reveal any obvious linker sequences or protein motifs characteristic of the non-catalytic domains located in other Pseudomonas plant cell wall hydrolases. These data indicate that the mannanase is non-modulator, comprising a single catalytic domain. Comparison of the mannanase sequence with those in the SWISSPROT database revealed greatest sequence homology with the mannanase from Bacillus sp. Thus the Pseudomonas enzyme belongs to glycosyl hydrolase Family 26, a family containing mannanases and endoglucanases. Analysis of the substrate specificity of the mannanase showed that the enzyme hydrolysed mannan and galactomannan, but displayed little activity towards other polysaccharides located in the plant cell wall. The enzyme had a pH optimum of approx. 7.0, was resistant to proteolysis and had an M(r) of 46,000 when expressed by Escherichia coli.
荧光假单胞菌纤维素亚种在角豆半乳甘露聚糖存在的情况下进行培养时,会降解该多糖。为了从荧光假单胞菌纤维素亚种中分离出编码内切β-1,4-甘露聚糖酶(甘露聚糖酶)活性的基因,构建了一个在λZAPII中构建的假单胞菌DNA基因组文库,使用染料标记的底物偶氮角豆半乳甘露聚糖筛选表达甘露聚糖酶的克隆。来自一个甘露聚糖酶阳性克隆的假单胞菌插入片段的核苷酸序列显示有一个1257 bp的单一开放阅读框,编码一个分子量为46,938的蛋白质。推测的多肽的推导N端序列符合典型的原核信号肽。甘露聚糖酶的截短衍生物,分别从该酶成熟形式的N端和C端缺失54和16个残基,不表现出催化活性。对甘露聚糖酶一级结构的检查未发现任何明显的连接序列或其他假单胞菌植物细胞壁水解酶中非催化结构域特有的蛋白质基序。这些数据表明该甘露聚糖酶是非调节型的,由单一催化结构域组成。将该甘露聚糖酶序列与SWISSPROT数据库中的序列进行比较,发现与芽孢杆菌属的甘露聚糖酶具有最大的序列同源性。因此,假单胞菌的这种酶属于糖基水解酶家族26,该家族包含甘露聚糖酶和内切葡聚糖酶。对该甘露聚糖酶底物特异性的分析表明,该酶能水解甘露聚糖和半乳甘露聚糖,但对植物细胞壁中的其他多糖几乎没有活性。该酶的最适pH约为7.0,对蛋白水解具有抗性,当由大肠杆菌表达时分子量为46,000。