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Functional characterization of Penicillium occitanis Pol6 and Penicillium funiculosum GH11 xylanases

机译:ocicanis occitanis Pol6和funiculosumosum GH11木聚糖酶的功能表征

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摘要

Xylanases are hemicellulolytic enzymes, which are responsible for the degradation of heteroxylans constituting the lignocellulosic plant cell wall. Xylanases from the GH11 family are considered as true xylanases because of their high substrate specificity. In order to study in depth a crucial difference in the thumb region between two closely related xylanases from Penicillium in terms of kinetic parameters and inhibition sensitivity, the GH11 xylanases from Penicillium occitanis Pol6 (PoXyn3) and from Penicillium funiculosum (PfXynC) were heterologously expressed in Pichia pastoris. The PoXyn3 and PfXynC cDNAs encoding mature xylanases were cloned into pGAPZαA vectors and integrated into the genome of P. pastoris X-33 under the control of the glyceraldehyde 3-phosphate dehydrogenase constitutive promoter. PfXynC was expressed as a His-tagged recombinant protein and purified from the supernatant homogeneity by a one-step purification protocol using immobilized metal affinity chromatography. The recombinant PoXyn3 was purified using a single anion-exchange chromatography. The purified recombinant enzymes were optimally active at 45 C and pH 4.0 for PoXyn3 and 40 C and pH 3.0 for PfXynC. The measured kinetic parameters (k_(cat) and V_(max)) showed that PfXynC was five times more active than PoXyn3 irrespective of the substrate whereas the apparent affinity (K_m) was similar. The recombinant enzymes showed distinct sensitivity to the Triticum aestivum xylanase inhibitor TAXI-I.
机译:木聚糖酶是半纤维素分解酶,其负责构成木质纤维素植物细胞壁的杂聚糖的降解。 GH11家族的木聚糖酶由于具有很高的底物特异性,因此被认为是真正的木聚糖酶。为了深入研究青霉菌的两个紧密相关的木聚糖酶之间在动力学参数和抑制敏感性方面拇指区域的关键差异,异源表达了来自青霉球菌Pol6(PoXyn3)和青霉菌(PfXynC)的GH11木聚糖酶巴斯德毕赤酵母。将编码成熟木聚糖酶的PoXyn3和PfXynC cDNA克隆到pGAPZαA载体中,并在甘油醛3-磷酸脱氢酶组成型启动子的控制下整合到巴斯德毕赤酵母X-33的基因组中。 PfXynC表示为His标记的重组蛋白,并使用固定的金属亲和色谱法通过一步纯化方法从上清液的同质性中纯化。使用单阴离子交换色谱法纯化重组PoXyn3。纯化的重组酶对PoXyn3在45°C和pH 4.0最佳活性,对PfXynC在40°C和pH 3.0最佳活性。测得的动力学参数(k_(cat)和V_(max))表明,与底物无关,PfXynC的活性是PoXyn3的五倍,而表观亲和力(K_m)相似。重组酶显示出对普通小麦木聚糖酶抑制剂TAXI-1的敏感性。

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