College of Food Science and Technology, Hunan Agricultural University, East Renmin Road, Changsha, Hunan 410128, China.
College of Horticulture, Hunan Agricultural University, East Renmin Road, Changsha, Hunan 410128, China.
Bioresour Technol. 2024 Nov;412:131401. doi: 10.1016/j.biortech.2024.131401. Epub 2024 Aug 31.
N-acetyl-D-glucosamine and its dimer are degradation products of chitin waste with great potential in therapeutic and agricultural applications. However, the hydrolysis of insoluble chitin by chitinases remains a major bottleneck. This study investigated the biochemical properties and catalytic mechanisms of PoChi chitinase obtained from Penicillium oxalicum with a focus on enhancing its efficiency during the degradation of insoluble chitin. Recombinant plasmids were engineered to incorporate chitin-binding (ChBD) and/or fibronectin III (FnIII) domains. Notably, PoChi-FnIII-ChBD exhibited the highest substrate affinity (K = 2.7 mg/mL) and a specific activity of 15.4 U/mg, which surpasses those of previously reported chitinases. These findings highlight the potential of engineered chitinases in advancing industrial biotechnology applications and offer a promising approach to more sustainable chitin waste management.
N-乙酰-D-葡萄糖胺及其二聚体是壳聚糖废物的降解产物,在治疗和农业应用方面具有巨大的潜力。然而,壳聚糖酶对不溶性壳聚糖的水解仍然是一个主要的瓶颈。本研究探讨了从草酸青霉中获得的 PoChi 壳聚糖酶的生化特性和催化机制,重点是提高其在不溶性壳聚糖降解过程中的效率。通过工程改造重组质粒,引入了壳聚糖结合(ChBD)和/或纤维连接蛋白 III(FnIII)结构域。值得注意的是,PoChi-FnIII-ChBD 表现出最高的底物亲和力(K=2.7mg/mL)和 15.4U/mg 的比活性,超过了先前报道的壳聚糖酶。这些发现突出了工程化壳聚糖酶在推进工业生物技术应用方面的潜力,并为更可持续的壳聚糖废物管理提供了一种有前途的方法。