Pei Xiao-Dong, Jiao Dao-Quan, Li Fan, Fang Yu-Hui, Zhou Zhi-Qiang, Liu Xiao-Ling, Wang Cheng-Hua
College of Light Industry and Food Engineering, Guangxi University, Nanning 530004, People's Republic of China.
College of Food and Bioengineering, Zhengzhou University of Light Industry, Zhengzhou 450002, People's Republic of China.
J Agric Food Chem. 2025 Jan 15;73(2):1182-1192. doi: 10.1021/acs.jafc.4c09667. Epub 2025 Jan 3.
Keratinases are valuable enzymes for converting feather keratin waste into bioactive products but often suffer from poor substrate specificity and low catalytic efficiency. This study reported the creating of a novel keratinase with targeted adherence and specific degradation on feather keratins by fusing prepeptidase C-Terminal (PPC) domain. A PPC domain of metalloprotease E423 specifically adsorbed feather keratins by hydrogen bonds and hydrophobic interactions in a time- and temperature-dependent manner. Stepwise N-/C-terminal truncations disclosed the essential core sequence composed of 21 amino acid residues determining the keratin-targeted adherence. Fusion of the core fragment with a flexible linker (GGGGS) achieved the optimal secretion, and improved the catalytic efficiency of a representative keratinase 4-3-MAV by 0.97-fold. Moreover, the feather degradation rate increased from 65 to 82%, representing the highest reported performance for a keratinase. This PPC-fusion strategy opens new horizons in enzyme engineering, promising not only to revolutionize keratin waste valorization but also to inspire the design of substrate-specific biocatalysts across diverse industrial applications.
角蛋白酶是将羽毛角蛋白废料转化为生物活性产品的重要酶类,但通常存在底物特异性差和催化效率低的问题。本研究报道了通过融合前肽酶C末端(PPC)结构域创建一种对羽毛角蛋白具有靶向粘附和特异性降解能力的新型角蛋白酶。金属蛋白酶E423的PPC结构域通过氢键和疏水相互作用以时间和温度依赖性方式特异性吸附羽毛角蛋白。逐步进行N端/C端截短揭示了由21个氨基酸残基组成的决定角蛋白靶向粘附的必需核心序列。将核心片段与柔性接头(GGGGS)融合实现了最佳分泌,并将代表性角蛋白酶4-3-MAV的催化效率提高了0.97倍。此外,羽毛降解率从65%提高到82%,代表了报道的角蛋白酶的最高性能。这种PPC融合策略为酶工程开辟了新的视野,不仅有望彻底改变角蛋白废料的增值利用,还能激发针对各种工业应用的底物特异性生物催化剂的设计。