Jia Hexue, Feng Xiaoting, Huang Jiamin, Guo Yingjie, Zhang Daolei, Li Xuezhi, Zhao Jian
State Key Laboratory of Microbial Technology, Shandong University, Qingdao, China.
School of Bioengineering, Shandong Polytechnic, Jinan, China.
Front Microbiol. 2022 Jul 11;13:876466. doi: 10.3389/fmicb.2022.876466. eCollection 2022.
Fungal cellulases usually contain a family 1 carbohydrate-binding module (CBM1), and its role was considered to recognize the substrate specifically. This study testified that the CBM1s derived from cellobiohydrolase I of , and could be used as an effective accessory protein in cellulase cocktails to enhance the saccharification of lignocellulose, and its enhancement effect was significantly superior to some reported accessory proteins, such as bovine serum albumin (BSA). The promoting effects of the CBM1s were related to not only the CBM1 sources and protein dosages, but also the substrate characteristics and solid consistency during enzymatic hydrolysis. The adsorption capacity of the CBM1s, the adsorption kinetic of TrCBM from and cellobiohydrolase, endoglucanase, and β-glucosidase from , and the effect of adding TrCBM on enzyme activities of free cellulases in the hydrolysis system were investigated, and the binding conformations and affinities of CBM1s to cellulose and lignin were predicted by molecular docking. It was speculated that the higher affinity of the CBM1s to lignin than cellulases could potentially enable the CBM1s to displace cellulase adsorbed on lignin or to preferentially adsorb onto lignin to avoid ineffective adsorption of cellulase onto lignin, which enhanced cellulase system efficiency during enzymatic hydrolysis of lignocellulose.
真菌纤维素酶通常含有一个1型碳水化合物结合模块(CBM1),其作用被认为是特异性识别底物。本研究证明,源自[具体物种1]、[具体物种2]和[具体物种3]的纤维二糖水解酶I的CBM1s可作为纤维素酶混合物中的有效辅助蛋白,以提高木质纤维素的糖化作用,且其增强效果明显优于一些已报道的辅助蛋白,如牛血清白蛋白(BSA)。CBM1s的促进作用不仅与CBM1来源和蛋白质剂量有关,还与酶水解过程中的底物特性和固体浓度有关。研究了CBM1s的吸附能力、来自[具体物种4]的TrCBM以及来自[具体物种5]的纤维二糖水解酶、内切葡聚糖酶和β-葡萄糖苷酶的吸附动力学,以及添加TrCBM对水解体系中游离纤维素酶活性的影响,并通过分子对接预测了CBM1s与纤维素和木质素的结合构象和亲和力。据推测,CBM1s对木质素的亲和力高于纤维素酶,这可能使CBM1s能够取代吸附在木质素上的纤维素酶,或优先吸附在木质素上,以避免纤维素酶在木质素上的无效吸附,从而在木质纤维素的酶水解过程中提高纤维素酶系统的效率。