Millward-Sadler S J, Davidson K, Hazlewood G P, Black G W, Gilbert H J, Clarke J H
Department of Biological and Nutritional Sciences, Faculty of Agriculture, The University, Newcastle upon Tyne, U.K.
Biochem J. 1995 Nov 15;312 ( Pt 1)(Pt 1):39-48. doi: 10.1042/bj3120039.
To test the hypothesis that selective pressure has led to the retention of cellulose-binding domains (CBDs) by hemicellulase enzymes from aerobic bacteria, four new xylanase (xyn) genes from two cellulolytic soil bacteria, Pseudomonas fluorescens subsp. cellulosa and Cellvibrio mixtus, have been isolated and sequenced. Pseudomonas genes xynE and xynF encoded modular xylanases (XYLE and XYLF) with predicted M(r) values of 68,600 and 65000 respectively. XYLE contained a glycosyl hydrolase family 11 catalytic domain at its N-terminus, followed by three other domains; the second of these exhibited sequence identity with NodB from rhizobia. The C-terminal domain (40 residues) exhibited significant sequence identity with a non-catalytic domain of previously unknown function, conserved in all the cellulases and one of the hemicellulases previously characterized from the pseudomonad, and was shown to function as a CBD when fused to the reporter protein glutathione-S-transferase. XYLF contained a C-terminal glycosyl hydrolase family 10 catalytic domain and a novel CBD at its N-terminus. C. mixtus genes xynA and xynB exhibited substantial sequence identity with xynE and xynF respectively, and encoded modular xylanases with the same molecular architecture and, by inference, the same functional properties. In the absence of extensive cross-hybridization between other multiple cel (cellulase) and xyn genes from P. fluorescens subsp. cellulosa and genomic DNA from C. mixtus, similarity between the two pairs of xylanases may indicate a recent transfer of genes between the two bacteria.
为了验证有氧细菌的半纤维素酶保留纤维素结合结构域(CBDs)是由选择压力导致的这一假说,已从两种纤维素分解土壤细菌,即荧光假单胞菌纤维素亚种和混合纤维弧菌中分离并测序了四个新的木聚糖酶(xyn)基因。假单胞菌的基因xynE和xynF编码模块化木聚糖酶(XYLE和XYLF),预测的相对分子质量(M(r))值分别为68,600和65,000。XYLE在其N端含有一个糖基水解酶家族11催化结构域,随后是其他三个结构域;其中第二个结构域与根瘤菌的NodB表现出序列同一性。C端结构域(40个残基)与一个功能未知的非催化结构域表现出显著的序列同一性,该结构域在所有纤维素酶和先前从假单胞菌中鉴定的一种半纤维素酶中保守,并且当与报告蛋白谷胱甘肽-S-转移酶融合时被证明具有CBD的功能。XYLF在其N端含有一个C端糖基水解酶家族10催化结构域和一个新的CBD。混合纤维弧菌的基因xynA和xynB分别与xynE和xynF表现出高度的序列同一性,并编码具有相同分子结构且据此具有相同功能特性的模块化木聚糖酶。在荧光假单胞菌纤维素亚种的其他多个cel(纤维素酶)和xyn基因与混合纤维弧菌的基因组DNA之间不存在广泛的交叉杂交的情况下,这两对木聚糖酶之间的相似性可能表明这两种细菌之间最近发生了基因转移。