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1.
Nucleic Acids Res ; 46(17): 9160-9169, 2018 09 28.
Artigo em Inglês | MEDLINE | ID: mdl-29982645

RESUMO

Derivatives of 5-hydroxyuridine (ho5U), such as 5-methoxyuridine (mo5U) and 5-oxyacetyluridine (cmo5U), are ubiquitous modifications of the wobble position of bacterial tRNA that are believed to enhance translational fidelity by the ribosome. In gram-negative bacteria, the last step in the biosynthesis of cmo5U from ho5U involves the unique metabolite carboxy S-adenosylmethionine (Cx-SAM) and the carboxymethyl transferase CmoB. However, the equivalent position in the tRNA of Gram-positive bacteria is instead mo5U, where the methyl group is derived from SAM and installed by an unknown methyltransferase. By utilizing a cmoB-deficient strain of Escherichia coli as a host and assaying for the formation of mo5U in total RNA isolates with methyltransferases of unknown function from Bacillus subtilis, we found that this modification is installed by the enzyme TrmR (formerly known as YrrM). Furthermore, X-ray crystal structures of TrmR with and without the anticodon stemloop of tRNAAla have been determined, which provide insight into both sequence and structure specificity in the interactions of TrmR with tRNA.


Assuntos
Bacillus subtilis/enzimologia , Metiltransferases/isolamento & purificação , Metiltransferases/metabolismo , RNA de Transferência/metabolismo , Uridina/análogos & derivados , Bacillus subtilis/genética , Bacillus subtilis/metabolismo , Clonagem Molecular , Cristalografia por Raios X , Metiltransferases/química , Metiltransferases/genética , RNA Bacteriano/química , RNA Bacteriano/metabolismo , RNA de Transferência/química , S-Adenosilmetionina/metabolismo , Uridina/biossíntese , Uridina/metabolismo
2.
Chem Sci ; 11(18): 4602-4607, 2020 May 14.
Artigo em Inglês | MEDLINE | ID: mdl-33133484

RESUMO

Highly enantioselective conjugate addition reactions of arylboronic acids to 2-substituted chromones catalyzed by palladium complexes with new chiral Pyridine-Dihydroisoquinoline (PyDHIQ) ligands have been developed. These reactions provide highly enantioselective access to chromanones containing tetrasubstituted stereocenters. Various arylboronic acids and 2-substituted chromones can be used in the catalytic reaction to afford the chiral tetrasubstituted chromanones in good yields and excellent enantioselectivities (25 examples, up to 98% yields, up to 99% ee).

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