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glucose catabolic process to pyruvate utilizing ADP
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GO_0061719 |
[The chemical reactions and pathways resulting in the breakdown of glucose into pyruvate, with the concomitant production of a small amount of ATP and the utilization of ADP in the initial kinase reactions.] |
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glucose catabolic process to pyruvate
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GO_0061718 |
[The chemical reactions and pathways resulting in the breakdown of glucose, with the production of pyruvate.] |
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xanthine biosynthetic process
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GO_0046111 |
[The chemical reactions and pathways resulting in the formation of xanthine, 2,6-dihydroxypurine, a purine formed in the metabolic breakdown of guanine but not present in nucleic acids.] |
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guanosine metabolic process
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GO_0008617 |
[The chemical reactions and pathways involving guanine, guanine riboside, a nucleoside with a wide species distribution.] |
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obsolete queuosine metabolic process
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GO_0046116 |
[OBSOLETE. The chemical reactions and pathways involving queuosines, any of a series of nucleosides found in tRNA and having an additional pentenyl ring added via an NH group to the methyl group of 7-methylguanosine. The pentenyl ring may carry other substituents.] |
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guanosine catabolic process
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GO_0046115 |
[The chemical reactions and pathways resulting in the breakdown of guanine, guanine riboside, a nucleoside with a wide species distribution.] |
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7-methylguanosine biosynthetic process
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GO_0046118 |
[The chemical reactions and pathways resulting in the formation of 7-methylguanosine, a modified nucleoside that forms a cap at the 5'-terminus of eukaryotic mRNA.] |
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obsolete queuosine catabolic process
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GO_0046117 |
[OBSOLETE. The chemical reactions and pathways resulting in the breakdown of queuosines, any of a series of nucleosides found in tRNA and having an additional pentenyl ring added via an NH group to the methyl group of 7-methylguanosine. The pentenyl ring may carry other substituents.] |
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6-sulfoquinovose(1-) catabolic process to glycerone phosphate and 3-sulfolactaldehyde
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GO_0061720 |
[The chemical reactions and pathways resulting in the breakdown of 6-sulfoquinovose(1-) resulting in the formation of glycerone phosphate (DHAP) and 3-sulfolactaldehyde (SLA).] |
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6-sulfoquinovose(1-) catabolic process
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GO_1902777 |
[The chemical reactions and pathways resulting in the breakdown of 6-sulfoquinovose(1-).] |
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lipophagy
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GO_0061724 |
[The selective degradation of lipid droplets by macroautophagy.] |
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glycophagy
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GO_0061723 |
[The selective degradation of glycogen by macroautophagy.] |
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sulphoglycolysis
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GO_0061722 |
[The chemical reactions and pathways resulting in the breakdown of 6-sulfoquinovose(1-) resulting in the formation of glycerone phosphate (DHAP) and pyruvate.] |
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6-sulfoquinovose(1-) catabolic process to 3-sulfopropanediol(1-)
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GO_0061721 |
[The chemical reactions and pathways resulting in the breakdown of 6-sulfoquinovose(1-) resulting in the formation of glycerone phosphate (DHAP) and 3-sulfopropanediol(1-).] |
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GDP-mannose biosynthetic process from mannose
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GO_0061728 |
[The chemical reactions and pathways resulting in the formation of GDP-mannose from mannose.] |
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uridine biosynthetic process
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GO_0046109 |
[The chemical reactions and pathways resulting in the formation of uridine, uracil riboside, a ribonucleoside very widely distributed but occurring almost entirely as phosphoric esters in ribonucleotides and ribonucleic acids.] |
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pyrimidine ribonucleoside biosynthetic process
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GO_0046132 |
[The chemical reactions and pathways resulting in the formation of any ribonucleoside, a nucleoside in which a pyrimidine base is linked to a ribose (beta-D-ribofuranose) molecule.] |
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methylglyoxal catabolic process
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GO_0051596 |
[The chemical reactions and pathways resulting in the breakdown of methylglyoxal, CH3-CO-CHO, the aldehyde of pyruvic acid.] |
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pyrimidine ribonucleoside metabolic process
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GO_0046131 |
[The chemical reactions and pathways involving any ribonucleoside, a nucleoside in which pyrimidine base is linked to a ribose (beta-D-ribofuranose) molecule.] |
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obsolete mitochondrion disassembly
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GO_0061726 |
[OBSOLETE. The disaggregation of a mitochondrion into its constituent components.] |