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Diversity and Functional Analysis of the FeMo-Cofactor Maturase NifB.

Front Plant Sci. 2017; 
ArragainSimon,Jiménez-VicenteEmilio,ScandurraAlessandro A,BurénStefan,RubioLuis M,Echavarri-ErasunCa
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Codon Optimization The M. infernus (nifBMi, accession number D5VRM1) and C. tepidum (nifBCt, accession number. CT1540) nifB sequences were codon-optimized and synthesized by GenScript (Piscataway,NJ,UnitedStates)forexpressioninE.coli.Plasmids pRHB557 and pRHB558 contained the nifBCt and nifBMi genes, respectively, cloned into the NdeI and EcoRI sites of pRHB258 for the expression of His9-tagged proteins under the control of the nifH promoter (Curatti et al., 2007). Get A Quote

摘要

One of the main hurdles to engineer nitrogenase in a non-diazotrophic host is achieving NifB activity. NifB is an extremely unstable and oxygen sensitive protein that catalyzes a low-potential SAM-radical dependent reaction. The product of NifB activity is called NifB-co, a complex [8Fe-9S-C] cluster that serves as obligate intermediate in the biosyntheses of the active-site cofactors of all known nitrogenases. Here we study the diversity and phylogeny of naturally occurring NifB proteins, their protein architecture and the functions of the distinct NifB domains in order to understand what defines a catalytically active NifB. Focus is on NifB from the thermophile (two-domain architecture), the hypertherm... More

关键词

Azotobacter,SAM-radical,iron-molybdenum cofactor,methanogens,nitrogen fixation,nitroge