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1.
Chemistry ; 26(65): 14929-14937, 2020 Nov 20.
Artículo en Inglés | MEDLINE | ID: mdl-32588931

RESUMEN

A novel inducible artificial metalloenzyme obtained by covalent attachment of a manganese(III)-tetraphenylporphyrin (MnTPP) to the artificial bidomain repeat protein, (A3A3')Y26C, is reported. The protein is part of the αRep family. The biohybrid was fully characterized by MALDI-ToF mass spectrometry, circular dichroism and UV/Vis spectroscopies. The peroxidase and monooxygenase activities were evaluated on the original and modified scaffolds including those that have a) an additional imidazole, b) a specific αRep bA3-2 that is known to induce the opening of the (A3A3') interdomain region and c) a derivative of the αRep bA3-2 inducer extended with a His6 -Tag (His6 -bA3-2). Catalytic profiles are highly dependent on the presence of co-catalysts with the best activity obtained with His6 -bA3-2. The entire mechanism was rationalized by an integrative molecular modeling study that includes protein-ligand docking and large-scale molecular dynamics. This constitutes the first example of an entirely artificial metalloenzyme with inducible peroxidase and monooxygenase activities, reminiscent of allosteric regulation of natural enzymatic pathways.


Asunto(s)
Oxigenasas de Función Mixta/metabolismo , Catálisis , Metaloproteínas , Peroxidasas
2.
Biotechnol Appl Biochem ; 67(4): 563-573, 2020 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-32134142

RESUMEN

We report a new artificial hydrogenase made by covalent anchoring of the iron Knölker's complex to a xylanase S212C variant. This artificial metalloenzyme was found to be able to catalyze efficiently the transfer hydrogenation of the benchmark substrate trifluoroacetophenone by sodium formate in water, yielding the corresponding secondary alcohol as a racemic. The reaction proceeded more than threefold faster with the XlnS212CK biohybrid than with the Knölker's complex alone. In addition, efficient conversion of trifluoroacetophenone to its corresponding alcohol was reached within 60 H with XlnS212CK, whereas a ≈2.5-fold lower conversion was observed with Knölker's complex alone as catalyst. Moreover, the data were rationalized with a computational strategy suggesting the key factors of the selectivity. These results suggested that the Knölker's complex was most likely flexible and could experience free rotational reorientation within the active-site pocket of Xln A, allowing it to access the subsite pocket populated by trifluoroacetophenone.


Asunto(s)
Proteínas Bacterianas/química , Endo-1,4-beta Xilanasas/química , Hidrogenasas/química , Proteínas Hierro-Azufre/química , Streptomyces lividans/enzimología , Proteínas Bacterianas/genética , Catálisis , Endo-1,4-beta Xilanasas/genética , Hidrogenasas/genética , Hidrogenación , Proteínas Hierro-Azufre/genética , Streptomyces lividans/genética , Agua
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