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首页> 外文期刊>Biotechnology for Biofuels >Xylan oligosaccharides and cellobiohydrolase I (TrCel7A) interaction and effect on activity
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Xylan oligosaccharides and cellobiohydrolase I (TrCel7A) interaction and effect on activity

机译:木聚糖寡糖和纤维二糖水解酶I(TrCel7A)的相互作用及其对活性的影响

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Background The well-studied cellulase mixture secreted by Trichoderma reesei (anamorph to Hypocrea jecorina) contains two cellobiohydolases (CBHs), cellobiohydrolase I (TrCel7A) and cellobiohydrolase II (TrCeI6A), that are core enzymes for the solubilisation of cellulose. This has attracted significant research interest because of the role of the CBHs in the conversion of biomass to fermentable sugars. However, the CHBs are notoriously slow and susceptible to inhibition, which presents a challenge for the commercial utilisation of biomass. The xylans and xylan fragments that are also present in the biomass have been suggested repeatedly as one cause of the reduced activity of CHBs. Yet, the extent and mechanisms of this inhibition remain poorly elucidated. Therefore, we studied xylan oligosaccharides (XOSs) of variable lengths with respect to their binding and inhibition of both TrCel7A and an enzyme variant without the cellulose-binding domain (CBM). Results We studied the binding of XOSs to TrCel7A by isothermal titration calorimetry. We found that XOSs bind to TrCel7A and that the affinity increases commensurate with XOS length. The CBM, on the other hand, did not affect the affinity significantly, which suggests that XOSs may bind to the active site. Activity assays of TrCel7A clearly demonstrated the negative effect of the presence of XOSs on the turnover number. Conclusions On the basis of these binding data and a comparison of XOS inhibition of the activity of the two enzyme variants towards, respectively, soluble and insoluble substrates, we propose a competitive mechanism for XOS inhibition of TrCel7A with phosphoric swollen cellulose as a substrate.
机译:背景技术里氏木霉分泌的纤维素酶混合物(红褐肉座菌的变形体)经过精心研究,含有两种纤维二糖合水解酶(CBH),纤维二糖水解酶I(TrCel7A)和纤维二糖水解酶II(TrCeI6A),它们是纤维素增溶的核心酶。由于CBH在生物质向可发酵糖的转化中的作用,因此引起了广泛的研究兴趣。然而,众所周知,CHB缓慢且易于抑制,这对生物质的商业利用提出了挑战。重复地提出了生物质中也存在的木聚糖和木聚糖片段,这是导致CHB活性降低的原因之一。然而,这种抑制的程度和机理仍未充分阐明。因此,我们研究了可变长度的木聚糖寡糖(XOS),它们对TrCel7A和没有纤维素结合域(CBM)的酶变体的结合和抑制作用。结果我们通过等温滴定量热法研究了XOS与TrCel7A的结合。我们发现XOS与TrCel7A结合,并且亲和力随XOS长度的增加而增加。另一方面,CBM并未显着影响亲和力,这表明XOS可能与活性位点结合。 TrCel7A的活性分析清楚地表明了XOS的存在对营业额的负面影响。结论基于这些结合数据,并比较了XOS抑制这两种酶变体分别针对可溶性和不溶性底物的活性,我们提出了一种以磷溶胀纤维素为底物的XOS抑制TrCel7A的竞争机制。

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