Morra Simone, Cordara Alessandro, Gilardi Gianfranco, Valetti Francesca
Department of Life Sciences and Systems Biology, University of Torino, via Accademia Albertina 13, Torino, 10123, Italy.
Protein Sci. 2015 Dec;24(12):2090-4. doi: 10.1002/pro.2805. Epub 2015 Sep 24.
The expression of recombinant [FeFe]-hydrogenases is an important step for the production of large amount of these enzymes for their exploitation in biotechnology and for the characterization of the protein-metal cofactor interactions. The correct assembly of the organometallic catalytic site, named H-cluster, requires a dedicated set of maturases that must be coexpressed in the microbial hosts or used for in vitro assembly of the active enzymes. In this work, the effect of the post-induction temperature on the recombinant expression of CaHydA [FeFe]-hydrogenase in E. coli is investigated. The results show a peculiar behavior: the enzyme expression is maximum at lower temperatures (20°C), while the specific activity of the purified CaHydA is higher at higher temperature (30°C), as a consequence of improved protein folding and active site incorporation.
重组[FeFe]-氢化酶的表达是大量生产这些酶的重要步骤,以便将其应用于生物技术领域,并用于表征蛋白质-金属辅因子的相互作用。名为H-簇的有机金属催化位点的正确组装需要一组特定的成熟酶,这些成熟酶必须在微生物宿主中共表达,或者用于活性酶的体外组装。在这项工作中,研究了诱导后温度对大肠杆菌中CaHydA [FeFe]-氢化酶重组表达的影响。结果显示出一种特殊的行为:酶表达在较低温度(20°C)时最高,而纯化的CaHydA的比活性在较高温度(30°C)时更高,这是蛋白质折叠和活性位点整合得到改善的结果。