Briand Manon L, Bikaki Maria, Puorger Chasper, Corvini Philippe F-X, Shahgaldian Patrick
School of Life Science, University of Applied Sciences and Arts Northwestern Switzerland Hofackerstrasse 30, Muttenz CH-4132 Switzerland
RSC Adv. 2020 Dec 24;11(2):810-816. doi: 10.1039/d0ra10013g.
We report a method to equip proteolytic nanobiocatalysts with intrinsic disulphide bond reducing properties. After immobilisation onto silica particles, selected protease enzymes are partially shielded in a nanometre-thick mercaptosilica layer acting not only as a protective system but also as a substrate reducing agent. The biocatalysts produced efficiently perform simultaneous disulphide bond reduction and protein digestion. Besides a significant simplification of the proteolysis process, this strategy allows for a drastic increase of the enzyme stability.
我们报告了一种赋予蛋白水解纳米生物催化剂内在二硫键还原特性的方法。将选定的蛋白酶固定在二氧化硅颗粒上后,在纳米厚的巯基二氧化硅层中进行部分屏蔽,该层不仅作为保护系统,还作为底物还原剂。所制备的生物催化剂能够高效地同时进行二硫键还原和蛋白质消化。除了显著简化蛋白水解过程外,该策略还能大幅提高酶的稳定性。