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1 Oxidoreductases
(9631 organisms)
2 Transferases
(7171 organisms)
3 Hydrolases
(11482 organisms)
3.1 Acting on ester bonds
(4089 organisms)
3.2 Glycosylases
(4717 organisms)
3.3 Acting on ether bonds
(180 organisms)
3.3.1 Thioether and trialkylsulfonium hydrolases
(83 organisms)
3.3.2 Ether hydrolases
(118 organisms)
3.4 Acting on peptide bonds (peptidases)
(2490 organisms)
3.5 Acting on carbon-nitrogen bonds, other than peptide bonds
(2551 organisms)
3.6 Acting on acid anhydrides
(674 organisms)
3.6.1 In phosphorus-containing anhydrides
(469 organisms)
3.6.2 In sulfonyl-containing anhydrides
(5 organisms)
3.6.3 Acting on acid anhydrides to catalyse transmembrane movement of substances
(4 organisms)
3.6.4 Acting on acid anhydrides to facilitate cellular and subcellular movement
(177 organisms)
3.6.4.1 myosin ATPase
3.6.4.2 dynein ATPase
3.6.4.3 microtubule-severing ATPase
3.6.4.4 plus-end-directed kinesin ATPase
3.6.4.5 minus-end-directed kinesin ATPase
3.6.4.6 vesicle-fusing ATPase
(27 organisms)
3.6.4.7 peroxisome-assembly ATPase
(17 organisms)
3.6.4.8 proteasome ATPase
3.6.4.9 chaperonin ATPase
3.6.4.10 non-chaperonin molecular chaperone ATPase
(53 organisms)
3.6.4.11 nucleoplasmin ATPase
3.6.4.12 DNA helicase
(65 organisms)
3.6.4.13 RNA helicase
(80 organisms)
3.6.5 Acting on GTP to facilitate cellular and subcellular movement
(175 organisms)
3.7 Acting on carbon-carbon bonds
(173 organisms)
3.8 Acting on halide bonds
(175 organisms)
3.9 Acting on phosphorus-nitrogen bonds
(15 organisms)
3.10 Acting on sulfur-nitrogen bonds
(8 organisms)
3.11 Acting on carbon-phosphorus bonds
(49 organisms)
3.12 Acting on sulfur-sulfur bonds
(19 organisms)
3.13 Acting on carbon-sulfur bonds
(52 organisms)
4 Lyases
(5139 organisms)
5 Isomerases
(2099 organisms)
6 Ligases
(1565 organisms)
7 Translocases
(1096 organisms)