Key Laboratory of Industrial Biotechnology (Ministry of Education), School of Biotechnology, Jiangnan University, Wuxi, Jiangsu, China.
Institute of Physics, Faculty of Physics, Astronomy and Informatics, Nicolaus Copernicus University in Torun, Grudziadzka 5, 87-100 Torun, Poland.
Int J Biol Macromol. 2021 Jun 30;181:444-451. doi: 10.1016/j.ijbiomac.2021.03.103. Epub 2021 Mar 19.
Protein fusion using a linker plays an important role for protein evolution. However, designing suitable linkers for protein evolution is yet challenging and under-explored. To further clarify the regular pattern of suitable type of linker for fusion proteins, one nitrile hydratase (NHase) was used as a target protein and subunit fusion strategy was carried out to improve its efficient catalysis. Subunit-fused variants with three different types of linkers were constructed and characterized. All variants exhibited higher stability than that of the wild type. The longer the linker was, the higher stability NHase showed, however, too long linker affected NHase activity and expression. Among the three types of linkers, the α-helical linker seemed more suitable for NHase than flexible or rigid linkers. Though it is not clear how the linkers affecting the activity, structure analysis indicated that the stability improvement is dependent on the additional salt bridge, H-bond, and the subunit interface area increasing due to the linker insertion, among which the additional salt bridge and interface area were more important factors. The results described here may be useful for redesigning other enzymes through subunit fusion.
蛋白质融合使用连接子对于蛋白质进化起着重要作用。然而,设计适合蛋白质进化的连接子仍然具有挑战性和探索不足。为了进一步阐明融合蛋白合适类型连接子的规律,选用一种腈水合酶(NHase)作为目标蛋白,并采用亚基融合策略来提高其高效催化性能。构建并表征了具有三种不同类型连接子的亚基融合变体。所有变体的稳定性均高于野生型。连接子越长,NHase 的稳定性越高,但过长的连接子会影响 NHase 的活性和表达。在这三种连接子中,α-螺旋连接子似乎比柔性或刚性连接子更适合 NHase。尽管尚不清楚连接子如何影响活性,但结构分析表明,由于连接子的插入,稳定性的提高依赖于额外的盐桥、氢键以及亚基界面面积的增加,其中额外的盐桥和界面面积是更重要的因素。这里描述的结果可能有助于通过亚基融合重新设计其他酶。