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Results 1 - 10 of 38 > >>
EC Number Metals/Ions Commentary Reference
Show all pathways known for 2.7.1.15Display the word mapDisplay the reaction diagram Show all sequences 2.7.1.15Cd2+ can replace Mg2+ in activation, optimal concentration: 5 mM, 68% of the activity with Mg2+ 641000
Show all pathways known for 2.7.1.15Display the word mapDisplay the reaction diagram Show all sequences 2.7.1.15Cd2+ may partly support activity 737810
Show all pathways known for 2.7.1.15Display the word mapDisplay the reaction diagram Show all sequences 2.7.1.15Co2+ - 640999
Show all pathways known for 2.7.1.15Display the word mapDisplay the reaction diagram Show all sequences 2.7.1.15Co2+ about 60% of the activity with Mn2+ 737810
Show all pathways known for 2.7.1.15Display the word mapDisplay the reaction diagram Show all sequences 2.7.1.15Co2+ can replace Mg2+ in activation, optimal concentration: 5 mM, 87% of the activity with Mg2+ 641000
Show all pathways known for 2.7.1.15Display the word mapDisplay the reaction diagram Show all sequences 2.7.1.15Co2+ the enzyme is dependent on monovalent as well as divalent cations for its catalytic activity. When magnesium is substituted with Co2+ and Mn2+ in the reaction mixture, the ribokinase activity got reduced to 60% and 45% as compared to that with Mg2+ 761262
Show all pathways known for 2.7.1.15Display the word mapDisplay the reaction diagram Show all sequences 2.7.1.15Cs+ activates 686025
Show all pathways known for 2.7.1.15Display the word mapDisplay the reaction diagram Show all sequences 2.7.1.15Cs+ activity is strongly dependent on the presence of monovalent cations in the order of decreasing efficiency: K+, NH4+, Cs+ 672549
Show all pathways known for 2.7.1.15Display the word mapDisplay the reaction diagram Show all sequences 2.7.1.15Cs+ Kd: 17 mM 641006
Show all pathways known for 2.7.1.15Display the word mapDisplay the reaction diagram Show all sequences 2.7.1.15Cs+ optimal activity obtained in presence of 0.5 M NH4+ or Cs+ 641000
Results 1 - 10 of 38 > >>