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Crystal structure and functional characterization of a cold-active acetyl xylan esterase (PbAcE) from psychrophilic soil microbe Paenibacillus sp.

机译:嗜冷土壤微生物Paenibacillus sp。的冷活性乙酰木聚糖酯酶(PbAcE)的晶体结构和功能表征。

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摘要

Cold-active acetyl xylan esterases allow for reduced bioreactor heating costs in bioenergy production. Here, we isolated and characterized a cold-active acetyl xylan esterase (PbAcE) from the psychrophilic soil microbe Paenibacillus sp. R4. The enzyme hydrolyzes glucose penta-acetate and xylan acetate, reversibly producing acetyl xylan from xylan, and it shows higher activity at 4°C than at 25°C. We solved the crystal structure of PbAcE at 2.1-Å resolution to investigate its active site and the reason for its low-temperature activity. Structural analysis showed that PbAcE forms a hexamer with a central substrate binding tunnel, and the inter-subunit interactions are relatively weak compared with those of its mesophilic and thermophilic homologs. PbAcE also has a shorter loop and different residue composition in the β4–α3 and β5–α4 regions near the substrate binding site. Flexible subunit movements and different active site loop conformations may enable the strong low-temperature activity and broad substrate specificity of PbAcE. In addition, PbAcE was found to have strong activity against antibiotic compound substrates, such as cefotaxime and 7-amino cephalosporanic acid (7-ACA). In conclusion, the PbAcE structure and our biochemical results provide the first example of a cold-active acetyl xylan esterase and a starting template for structure-based protein engineering.
机译:冷活性乙酰木聚糖酯酶可降低生物能源生产中生物反应器的加热成本。在这里,我们从嗜热土壤微生物Paenibacillus sp。中分离并鉴定了一种冷活性乙酰木聚糖酯酶(PbAcE)。 R4。该酶水解葡萄糖五乙酸酯和乙酸木聚糖乙酸酯,从木聚糖可逆地产生乙酰木聚糖,并且在4°C时其活性高于25°C。我们以2.1-Å的分辨率解析了PbAcE的晶体结构,以研究其活性位点及其低温活性的原因。结构分析表明,PbAcE与中央底物的结合通道形成了六聚体,与亚聚体的嗜温和嗜热同系物相比,亚基间的相互作用相对较弱。在底物结合位点附近的β4-α3和β5-α4区,PbAcE的环也较短,残基组成不同。灵活的亚基运动和不同的活性位点环构象可能使PbAcE具有很强的低温活性和广泛的底物特异性。另外,发现PbAcE对抗生素化合物底物如头孢噻肟和7-氨基头孢烷酸(7-ACA)具有很强的活性。总之,PbAcE结构和我们的生化结果提供了冷活性乙酰木聚糖酯酶的第一个实例,以及基于结构的蛋白质工程的起始模板。

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