Chhabra Swapnil R, Kelly Robert M
Department of Chemical Engineering, North Carolina State University, Stinson Drive, Raleigh, NC 27695-7905, USA.
FEBS Lett. 2002 Nov 6;531(2):375-80. doi: 10.1016/s0014-5793(02)03493-2.
The genome of the hyperthermophilic bacterium Thermotoga maritima (Tm) encodes at least eight glycoside hydrolases with putative signal peptides; the biochemical characteristics of seven of these have been reported previously. The eighth, Tm Cel74, is encoded by an open reading frame of 2124 bp corresponding to a polypeptide of 79 kDa with a signal peptide at the amino-terminus. The gene (lacking the signal peptide) encoding Tm Cel74 was expressed as a 77 kDa monomeric polypeptide in Escherichia coli and found to be optimally active at pH 6, 90 degrees C, with a melting temperature of approximately 105 degrees C. The cel74 gene was previously found to be induced during T. maritima growth on a variety of polysaccharides, including barley glucan, carboxymethyl cellulose (CMC), glucomannan, galactomannan and starch. However, while Tm Cel74 was most active towards barley glucan and to a lesser extent CMC, glucomannan and tamarind (xyloglucan), no activity was detected on other glycans, including galactomannan, laminarin and starch. Also, Tm Cel74 did not contain a carbohydrate binding module (CBM), versions of which have been identified in the amino acid sequences of other family 74 enzymes. As such, a CBM associated with a chitinase in another hyperthermophile, Pyrococcus furiosus, was used to create a fusion protein that was active on crystalline cellulose; Tm Cel74 lacked activity on this substrate. Based on the cleavage pattern determined for Tm Cel74 on glucan-based substrates, this enzyme likely initiates recruitment of carbohydrate carbon and energy sources by creating oligosaccharides that are transported into the cell for further processing.
嗜热栖热菌(Tm)的基因组编码至少8种带有假定信号肽的糖苷水解酶;此前已报道了其中7种的生化特性。第8种酶Tm Cel74由一个2124 bp的开放阅读框编码,对应一个79 kDa的多肽,其氨基末端有一个信号肽。编码Tm Cel74的基因(不含信号肽)在大肠杆菌中表达为一种77 kDa的单体多肽,发现其在pH 6、90℃时活性最佳,解链温度约为105℃。此前发现cel74基因在嗜热栖热菌利用多种多糖(包括大麦葡聚糖、羧甲基纤维素(CMC)、葡甘露聚糖、半乳甘露聚糖和淀粉)生长期间被诱导表达。然而,虽然Tm Cel74对大麦葡聚糖活性最高,对CMC、葡甘露聚糖和罗望子胶(木葡聚糖)的活性次之,但在其他聚糖(包括半乳甘露聚糖、海带多糖和淀粉)上未检测到活性。此外,Tm Cel74不包含碳水化合物结合模块(CBM),而在其他74家族酶的氨基酸序列中已鉴定出该模块的不同版本。因此,将另一种嗜热菌激烈火球菌中与几丁质酶相关的CBM用于构建对结晶纤维素有活性的融合蛋白;Tm Cel74对该底物没有活性。根据确定的Tm Cel74对基于葡聚糖的底物的切割模式,这种酶可能通过产生被转运到细胞中进行进一步加工的寡糖来启动碳水化合物碳源和能源的摄取。