دورية أكاديمية

Informing Efforts to Develop Nitroreductase for Amine Production.

التفاصيل البيبلوغرافية
العنوان: Informing Efforts to Develop Nitroreductase for Amine Production.
المؤلفون: Miller, Anne-Frances1 afmill3r2@gmail.com, Park, Jonathan T.2 jpark5009@gmail.com, Ferguson, Kyle L.3 k.ferge@gmail.com, Pitsawong, Warintra1 warintra@brandeis.edu, Bommarius, Andreas S.4 afmill3r2@gmail.com
المصدر: Molecules. Feb2018, Vol. 23 Issue 2, p211. 44p. 9 Color Photographs, 3 Diagrams, 5 Charts, 4 Graphs.
مصطلحات موضوعية: *NITROREDUCTASES, *AROMATIC amines, *MONOMERS, *BIOCATALYSIS, *FLAVINS
مستخلص: Nitroreductases (NRs) hold promise for converting nitroaromatics to aromatic amines. Nitroaromatic reduction rate increases with Hammett substituent constant for NRs from two different subgroups, confirming substrate identity as a key determinant of reactivity. Amine yields were low, but compounds yielding amines tend to have a large π system and electron withdrawing substituents. Therefore, we also assessed the prospects of varying the enzyme. Several different subgroups of NRs include members able to produce aromatic amines. Comparison of four NR subgroups shows that they provide contrasting substrate binding cavities with distinct constraints on substrate position relative to the flavin. The unique architecture of the NR dimer produces an enormous contact area which we propose provides the stabilization needed to offset the costs of insertion of the active sites between the monomers. Thus, we propose that the functional diversity included in the NR superfamily stems from the chemical versatility of the flavin cofactor in conjunction with a structure that permits tremendous active site variability. These complementary properties make NRs exceptionally promising enzymes for development for biocatalysis in prodrug activation and conversion of nitroaromatics to valuable aromatic amines. We provide a framework for identifying NRs and substrates with the greatest potential to advance. [ABSTRACT FROM AUTHOR]
قاعدة البيانات: Academic Search Index
الوصف
تدمد:14203049
DOI:10.3390/molecules23020211