首页> 外文期刊>Applied and Environmental Microbiology >Two cellulases, CelA and CelC, from the polycentric anaerobic fungus Orpinomyces strain PC-2 contain N-terminal docking domains for a cellulase-hemicellulase complex.
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Two cellulases, CelA and CelC, from the polycentric anaerobic fungus Orpinomyces strain PC-2 contain N-terminal docking domains for a cellulase-hemicellulase complex.

机译:来自多中心厌氧真菌Orpinomyces菌株PC-2的两个纤维素酶CelA和CelC含有纤维素酶-半纤维素酶复合物的N末端对接结构域。

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Two cDNAs encoding two cellulases, CelA and CelC, were isolated from a cDNA library of the polycentric anaerobic fungus Orpinomyces sp. strain PC-2 constructed in Escherichia coli. Nucleotide sequencing revealed that the celA cDNA (1,558 bp) and celC cDNA (1,628 bp) had open reading frames encoding polypeptides of 459 (CelA) and 449 (CelC) amino acids, respectively. The two cDNAs were 76.9 and 67.7% identical at the nucleotide and amino acid levels, respectively. Analysis of the deduced amino acid sequences showed that starting from the N termini, both CelA and CelC had signal peptides, which were followed by noncatalytic repeated peptide domains (NCRPD) containing two repeated sequences of 33 to 40 amino acid residues functioning as docking domains. The NCRPDs and the catalytic domains were separated by linker sequences. The NCRPDs were homologous to those found in several hydrolases of anaerobic fungi, whereas the catalytic domains were homologous to the catalytic domains of fungal cellobiohydrolases and bacterial endoglucanases. The linker sequence of CelA contained predominantly glutamine and proline residues, while that of CelC contained mainly threonine residues. CelA and CelC did not have a typical cellulose binding domain (CBD). CelA and CelC expressed in E. coli rapidly decreased the viscosity of carboxymethyl cellulose (CMC), indicating that there was endoglucanase activity. In addition, they produced cellobiose from CMC, acid-swollen cellulose, and cellotetraose, suggesting that they had cellobiohydrolase activity. The optimal activity conditions with CMC as the substrate were pH 4.3 to 6.8 and 50 degrees C for CelA and pH 4.6 to 7.0 and 40 degrees C for CelC. Despite the lack of a CBD, CelC displayed a high affinity for microcrystalline cellulose, whereas CelA did not.
机译:从多中心厌氧真菌Orpinomyces sp。的cDNA文库中分离出编码两个纤维素酶CelA和CelC的两个cDNA。在大肠杆菌中构建的PC-2菌株。核苷酸测序表明,celA cDNA(1,558 bp)和celC cDNA(1,628 bp)具有开放阅读框,分别编码459(CelA)和449(CelC)氨基酸的多肽。这两个cDNA在核苷酸和氨基酸水平上分别是76.9和67.7%相同。对推导的氨基酸序列的分析表明,从N末端开始,CelA和CelC都具有信号肽,其后是非催化重复肽结构域(NCRPD),该结构域包含两个具有33-40个氨基酸残基的重复序列作为对接结构域。 NCRPD和催化结构域通过接头序列分开。 NCRPD与在几种厌氧真菌水解酶中发现的同源,而催化结构域与真菌纤维二糖水解酶和细菌内切葡聚糖酶的催化结构域同源。 CelA的接头序列主要包含谷氨酰胺和脯氨酸残基,而CelC的接头序列主要包含苏氨酸残基。 CelA和CelC没有典型的纤维素结合域(CBD)。在大肠杆菌中表达的CelA和CelC迅速降低了羧甲基纤维素(CMC)的粘度,表明存在内切葡聚糖酶活性。另外,他们从CMC,酸溶胀的纤维素和纤维四糖生产纤维二糖,表明它们具有纤维二糖水解酶活性。以CMC为底物的最佳活性条件对于CelA为pH 4.3至6.8和50摄氏度,对于CelC为pH 4.6至7.0和40摄氏度。尽管缺少CBD,CelC对微晶纤维素显示出高亲和力,而CelA没有。

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