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<< < Results 11 - 20 of 143 > >>
EC Number Substrates Commentary Substrates Organism Products Commentary (Products) Reversibility
Show all pathways known for 6.2.1.2Display the word mapDisplay the reaction diagram Show all sequences 6.2.1.2ATP + 2-anthracenecarboxylic acid + CoA 16% of the activity with hexanoic acid Bos taurus AMP + diphosphate + anthracene-2-carboxyl-CoA - ?
Show all pathways known for 6.2.1.2Display the word mapDisplay the reaction diagram Show all sequences 6.2.1.2ATP + 2-methylbutyrate + CoA when propionate or other less favorable acyl substrates, such as butyrate, 2-methylpropionate, or 2-methylvalerate, are utilized, the acyl-CoA is not produced or is produced at reduced levels. Instead, acyl-AMP and diphosphate are released in the absence of CoA, whereas in the presence of CoA, the intermediate is broken down into AMP and the acyl substrate, which are released along with diphosphate. These results suggest that although acyl-CoA synthetases may have the ability to utilize a broad range of substrates for the acyl-adenylate-forming first step of the reaction, the intermediate may not be suitable for the thioester-forming second step Methanosarcina acetivorans AMP + diphosphate + 2-methylbutyryl-CoA - ?
Show all pathways known for 6.2.1.2Display the word mapDisplay the reaction diagram Show all sequences 6.2.1.2ATP + 2-methylbutyrate + CoA when propionate or other less favorable acyl substrates, such as butyrate, 2-methylpropionate, or 2-methylvalerate, are utilized, the acyl-CoA is not produced or is produced at reduced levels. Instead, acyl-AMP and diphosphate are released in the absence of CoA, whereas in the presence of CoA, the intermediate is broken down into AMP and the acyl substrate, which are released along with diphosphate. These results suggest that although acyl-CoA synthetases may have the ability to utilize a broad range of substrates for the acyl-adenylate-forming first step of the reaction, the intermediate may not be suitable for the thioester-forming second step Methanosarcina acetivorans DSM 2834 AMP + diphosphate + 2-methylbutyryl-CoA - ?
Show all pathways known for 6.2.1.2Display the word mapDisplay the reaction diagram Show all sequences 6.2.1.2ATP + 2-naphthylacetic acid + CoA 21% of the activity with hexanoic acid Bos taurus AMP + diphosphate + 2-naphthyl-acetyl-CoA - ?
Show all pathways known for 6.2.1.2Display the word mapDisplay the reaction diagram Show all sequences 6.2.1.2ATP + 2-naphthylacetic acid + CoA about 35% of the activity with hexanoic acid Mus musculus AMP + diphosphate + 2-naphthyl-acetyl-CoA - ?
Show all pathways known for 6.2.1.2Display the word mapDisplay the reaction diagram Show all sequences 6.2.1.2ATP + 3,4-methylenedioxycinnamic acid + CoA high activity Penicillium chrysogenum AMP + diphosphate + 3,4-methylenedioxy-cinnamoyl-CoA - ?
Show all pathways known for 6.2.1.2Display the word mapDisplay the reaction diagram Show all sequences 6.2.1.2ATP + 3-aminobenzoate + CoA 29% of the activity with benzoate Mus musculus AMP + diphosphate + 3-aminobenzoyl-CoA - ?
Show all pathways known for 6.2.1.2Display the word mapDisplay the reaction diagram Show all sequences 6.2.1.2ATP + 3-aminobenzoate + CoA 5% of the activity with hexanoic acid Bos taurus AMP + diphosphate + 3-aminobenzoyl-CoA - ?
Show all pathways known for 6.2.1.2Display the word mapDisplay the reaction diagram Show all sequences 6.2.1.2ATP + 3-chlorobenzoate + CoA 12% of the activity with hexanoic acid Bos taurus AMP + diphosphate + 3-chlorobenzoyl-CoA - ?
Show all pathways known for 6.2.1.2Display the word mapDisplay the reaction diagram Show all sequences 6.2.1.2ATP + 3-chlorobenzoate + CoA 126% of the activity with benzoate Mus musculus AMP + diphosphate + 3-chlorobenzoyl-CoA - ?
<< < Results 11 - 20 of 143 > >>