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A novel thermostable multidomain 1,4-β-xylanase from ‘Caldibacillus cellulovorans’ and effect of its xylan-binding domain on enzyme activity

机译:来自“Caldibacillus Cellulovorans”的新型热稳定多麦片1,4-β-木聚糖酶及其木聚糖结合结构域对酶活性的影响

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The GenBank accession number for the sequence reported in this paper is AF200304.The nucleotide sequence of the complete xynA gene, encoding a novel multidomain xylanase XynA of ‘Caldibacillus cellulovorans’, was determined by genomic-walking PCR. The putative XynA comprises an N-terminal domain (D1), recently identified as a xylan-binding domain (XBD), homologous to non-catalytic thermostabilizing domains from other xylanases. D1 is followed by a xylanase catalytic domain (D2) homologous to family 10 glycosyl hydrolases. Downstream of this domain two cellulose-binding domains (CBD), D3 and D4, were found linked via proline-threonine (PT)-rich peptides. Both CBDs showed sequence similarity to family IIIb CBDs. Upstream of xynA an incomplete open reading frame was identified, encoding a putative C-terminal CBD homologous to family IIIb CBDs. Two expression plasmids encoding the N-terminal XBD plus the catalytic domain (XynAd1/2) and the xylanase catalytic domain alone (XynAd2) were constructed and the biochemical properties of the recombinant enzymes compared. The absence of the XBD resulted in a decrease in thermostability of the catalytic domain from 70?°C (XynAd1/2) to 60?°C (XynAd2). Substrate-specificity experiments and analysis of the main products released from xylan hydrolysis indicate that both recombinant enzymes act as endo-1,4-β-xylanases, but differ in their ability to cleave small xylooligosaccharides.
机译:本文报道的序列的GenBank登录号是AF200304.通过基因组步行PCR确定,编码“Caldibacillus cellulovorans”的新型多麦草杂种酶Xyna的完整XYNA基因的核苷酸序列。推定的XYNA包含N-末端结构域(D1),最近鉴定为木聚糖结合结构域(XBD),与来自其他木聚糖酶的非催化热稳定结构域同源。 D1之后是与家庭10糖基水解酶同源的木聚糖酶催化结构域(D2)。在该结构域下游两种纤维素结合结构域(CBD),D3和D4被发现通过脯氨酸 - 苏氨酸(Pt) - 粒肽连接。两个CBD显示与家庭IIIB CBD的序列相似度。鉴定了XYNA的上游不完全开放阅读框,编码了对家庭IIIB CBD的推定的C末端CBD同源。构建了编码N-末端XBD加上催化结构域(Xynad1 / 2)的两种表达质粒单独(Xynad2),并比较重组酶的生物化学性质。 XBD的不存在导致催化结构域的热稳定性降低,从70?℃(Xynad1 / 2)至60℃(Xynad2)。从木聚糖水解中释放的主要产品的底物特异性实验和分析表明,两种重组酶都充当了内诺-1,4-β-木聚糖酶,但在其裂解小木质寡糖的能力方面不同。

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