Results 201 to 210 of about 64,774 (259)
The capping arms race: evolutionary interplay between IFIT proteins and viral molecular mimicry. [PDF]
González-Hilario S +3 more
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Biological cost of aminoglycoside resistance Arm/Kam 16S rRNA methyltransferases from natural antibiotic producers and clinical pathogens. [PDF]
Vidučić D +4 more
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Nitric oxide generates a coordinated histone modification signature consistent with chromatin compaction, linked to methyl-modifying enzyme dysregulation and tumor-permissive gene silencing. [PDF]
Shayan S, Vasudevan D, Thomas DD.
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Correction to "Expression and Function of Meflin in Human Endometrial Decidualization". [PDF]
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Canadian Journal of Biochemistry and Physiology, 1963
The supernatant fraction of liver homogenate brings about the methylation of glycine by S-adenosylmethionine. The secondary amine formed in the reaction appears to be sarcosine. This conclusion is based on (I) the stoichiometry of the reaction, and (II) radioautography of chromatograms of the incubation products. The enzyme, glycine N-methyltransferase,
J, BLUMENSTEIN, G R, WILLIAMS
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The supernatant fraction of liver homogenate brings about the methylation of glycine by S-adenosylmethionine. The secondary amine formed in the reaction appears to be sarcosine. This conclusion is based on (I) the stoichiometry of the reaction, and (II) radioautography of chromatograms of the incubation products. The enzyme, glycine N-methyltransferase,
J, BLUMENSTEIN, G R, WILLIAMS
openaire +2 more sources
Current Opinion in Cell Biology, 1994
Mammals have long been known to tag their DNA by the addition of methyl groups to cytosine residues. Only quite recently, however, has the functional significance of DNA methylation established a firm footing. Evidence now indicates that DNA methylation is essential for development, and is involved in both programmed and ectopic gene inactivation ...
T H, Bestor, G L, Verdine
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Mammals have long been known to tag their DNA by the addition of methyl groups to cytosine residues. Only quite recently, however, has the functional significance of DNA methylation established a firm footing. Evidence now indicates that DNA methylation is essential for development, and is involved in both programmed and ectopic gene inactivation ...
T H, Bestor, G L, Verdine
openaire +2 more sources
Annual Review of Pharmacology and Toxicology, 1999
▪ Abstract Methyl conjugation is an important pathway in the biotransformation of many exogenous and endogenous compounds. Pharmacogenetic studies of methyltransferase enzymes have resulted in the identification and characterization of functionally important common genetic polymorphisms for catechol O-methyltransferase, thiopurine methyltransferase ...
R M, Weinshilboum +2 more
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▪ Abstract Methyl conjugation is an important pathway in the biotransformation of many exogenous and endogenous compounds. Pharmacogenetic studies of methyltransferase enzymes have resulted in the identification and characterization of functionally important common genetic polymorphisms for catechol O-methyltransferase, thiopurine methyltransferase ...
R M, Weinshilboum +2 more
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Methyltransferase DNMT3B in leukemia
Leukemia & Lymphoma, 2019DNA methyltransferases (DNMTs) are highly conserved DNA-modifying enzymes that play important roles in epigenetic regulation and they are involved in cell proliferation, differentiation, and apoptosis. In mammalian cells, three active DNMTs have been identified: DNMT1 acts as a maintenance methyltransferase to replicate preexisting methylation patterns,
Haibin, Zhang +2 more
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