Cobalamin uptake and reactivation occurs through specific protein interactions in the methionine synthase-methionine synthase reductase complex.
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Advances in the understanding of cobalamin assimilation and metabolismInsights into the reactivation of cobalamin-dependent methionine synthaseCoenzyme B12 synthesis as a baseline to study metabolite contribution of animal microbiotaDiabetes as a cause of clinically significant functional cobalamin deficiency.A love affair with vitamins.The tinker, tailor, soldier in intracellular B12 trafficking.Gene-environment interactions and epigenetic pathways in autism: the importance of one-carbon metabolism.Computational modelling folate metabolism and DNA methylation: implications for understanding health and ageing.Co+-H interaction inspired alternate coordination geometries of biologically important cob(I)alamin: possible structural and mechanistic consequences for methyltransferases.Neuro-fuzzy model of homocysteine metabolism.Defective MTRR does not convert cob(II)alamin to MeCblcob(II)alamin binds to MTRR:MTRMTRR reduces cob(II)alamin to meCbl
P2860
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P2860
Cobalamin uptake and reactivation occurs through specific protein interactions in the methionine synthase-methionine synthase reductase complex.
description
2009 nî lūn-bûn
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2009年の論文
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2009年学术文章
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2009年学术文章
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name
Cobalamin uptake and reactivat ...... ne synthase reductase complex.
@en
Cobalamin uptake and reactivat ...... ne synthase reductase complex.
@nl
type
label
Cobalamin uptake and reactivat ...... ne synthase reductase complex.
@en
Cobalamin uptake and reactivat ...... ne synthase reductase complex.
@nl
prefLabel
Cobalamin uptake and reactivat ...... ne synthase reductase complex.
@en
Cobalamin uptake and reactivat ...... ne synthase reductase complex.
@nl
P2860
P1433
P1476
Cobalamin uptake and reactivat ...... ne synthase reductase complex.
@en
P2093
Kirsten R Wolthers
Nigel S Scrutton
P2860
P304
P356
10.1111/J.1742-4658.2009.06919.X
P407
P577
2009-02-20T00:00:00Z