Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi 214122, People's Republic of China.
Institute of Applied Biochemistry, and Graduate School of Life and Environmental Sciences, The University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8572, Japan.
J Biosci Bioeng. 2014 Sep;118(3):249-52. doi: 10.1016/j.jbiosc.2014.02.015. Epub 2014 Mar 31.
Self-assembling amphipathic peptides (SAPs) are the peptides that can spontaneously assemble into ordered nanostructures. It has been reported that the attachment of SAPs to the N- or C-terminus of an enzyme can benefit the thermo-stability of the enzyme. Here, we discovered that the thermo-stability and product tolerance of nitrile hydratase (NHase) were enhanced by fusing with two of the SAPs (EAK16 and ELK16). When the ELK16 was fused to the N-terminus of β-subunit, the resultant NHase (SAP-NHase-2) became an active inclusion body; EAK16 fused NHase in the N-terminus of β-subunit (SAP-NHase-1) and ELK16 fused NHase in the C-terminus of β-subunit (SAP-NHase-10) did not affect NHase solubility. Compared with the deactivation of the wild-type NHase after 30 min incubation at 50°C, SAP-NHase-1, SAP-NHase-2 and SAP-NHase-10 retained 45%, 30% and 50% activity; after treatment in the buffer containing 10% acrylamide, the wild-type retained 30% activity, while SAP-NHase-1, SAP-NHase-2 and SAP-NHase-10 retained 52%, 42% and 55% activity. These SAP-NHases with enhanced thermo-stability and product tolerance would be helpful for further industrial applications of the NHase.
自组装两亲肽(SAPs)是能够自发组装成有序纳米结构的肽。据报道,SAPs 与酶的 N-或 C-末端连接可以提高酶的热稳定性。在这里,我们发现融合两种 SAPs(EAK16 和 ELK16)可以增强腈水合酶(NHase)的热稳定性和产物耐受性。当 ELK16 融合到β亚基的 N-末端时,得到的 NHase(SAP-NHase-2)成为一种活性包涵体;EAK16 融合到β亚基的 N-末端的 NHase(SAP-NHase-1)和 ELK16 融合到β亚基的 C-末端的 NHase(SAP-NHase-10)不影响 NHase 的溶解性。与在 50°C 孵育 30 分钟后失活的野生型 NHase 相比,SAP-NHase-1、SAP-NHase-2 和 SAP-NHase-10 保留了 45%、30%和 50%的活性;在含有 10%丙烯酰胺的缓冲液中处理后,野生型保留了 30%的活性,而 SAP-NHase-1、SAP-NHase-2 和 SAP-NHase-10 保留了 52%、42%和 55%的活性。这些具有增强的热稳定性和产物耐受性的 SAP-NHase 将有助于 NHase 的进一步工业应用。