Saccharomyces cerevisiae

14 known processes

ZTA1 (YBR046C)

Zta1p

ZTA1 biological process predictions


Filter by process size:
Biological process GO term ID Process size Probability Func Analog Org
carboxylic acid catabolic process GO:0046395 71 0.354
organic acid catabolic process GO:0016054 71 0.158
small molecule catabolic process GO:0044282 88 0.157
carboxylic acid metabolic process GO:0019752 338 0.126
single organism catabolic process GO:0044712 619 0.114
oxoacid metabolic process GO:0043436 351 0.105
pyridine containing compound metabolic process GO:0072524 53 0.103
organic anion transport GO:0015711 114 0.076
anion transport GO:0006820 145 0.076
organic acid metabolic process GO:0006082 352 0.060
cofactor metabolic process GO:0051186 126 0.052
positive regulation of nitrogen compound metabolic process GO:0051173 412 0.049
carbohydrate metabolic process GO:0005975 252 0.047
organic hydroxy compound biosynthetic process GO:1901617 81 0.046
alcohol biosynthetic process GO:0046165 75 0.046
organic hydroxy compound metabolic process GO:1901615 125 0.043
cellular response to chemical stimulus GO:0070887 315 0.041
organonitrogen compound catabolic process GO:1901565 404 0.039
alcohol metabolic process GO:0006066 112 0.038
cellular protein catabolic process GO:0044257 213 0.038
purine containing compound metabolic process GO:0072521 400 0.037
macromolecule catabolic process GO:0009057 383 0.036
nicotinamide nucleotide metabolic process GO:0046496 44 0.035
vacuolar transport GO:0007034 145 0.034
glycerophospholipid metabolic process GO:0006650 98 0.033
cellular nitrogen compound catabolic process GO:0044270 494 0.032
small molecule biosynthetic process GO:0044283 258 0.031
monocarboxylic acid metabolic process GO:0032787 122 0.030
alpha amino acid metabolic process GO:1901605 124 0.030
ubiquitin dependent protein catabolic process GO:0006511 181 0.030
nucleobase containing small molecule metabolic process GO:0055086 491 0.029
cellular amino acid catabolic process GO:0009063 48 0.029
positive regulation of macromolecule metabolic process GO:0010604 394 0.029
cellular amino acid metabolic process GO:0006520 225 0.028
nitrogen compound transport GO:0071705 212 0.028
carbohydrate derivative metabolic process GO:1901135 549 0.027
carboxylic acid biosynthetic process GO:0046394 152 0.027
protein complex biogenesis GO:0070271 314 0.026
organelle fission GO:0048285 272 0.025
glycosyl compound metabolic process GO:1901657 398 0.025
organophosphate metabolic process GO:0019637 597 0.024
cellular macromolecule catabolic process GO:0044265 363 0.022
cellular amine metabolic process GO:0044106 51 0.022
single organism carbohydrate metabolic process GO:0044723 237 0.021
nuclear division GO:0000280 263 0.021
response to chemical GO:0042221 390 0.020
organophosphate biosynthetic process GO:0090407 182 0.020
purine ribonucleoside metabolic process GO:0046128 380 0.019
modification dependent macromolecule catabolic process GO:0043632 203 0.018
protein complex assembly GO:0006461 302 0.018
modification dependent protein catabolic process GO:0019941 181 0.018
nucleoside phosphate metabolic process GO:0006753 458 0.018
cellular response to oxidative stress GO:0034599 94 0.017
negative regulation of mrna processing GO:0050686 2 0.017
nucleotide metabolic process GO:0009117 453 0.017
response to hypoxia GO:0001666 4 0.017
aromatic compound catabolic process GO:0019439 491 0.017
cellular modified amino acid metabolic process GO:0006575 51 0.017
glycerophospholipid biosynthetic process GO:0046474 68 0.016
mitotic cell cycle process GO:1903047 294 0.016
coenzyme metabolic process GO:0006732 104 0.016
cellular lipid metabolic process GO:0044255 229 0.016
establishment of protein localization GO:0045184 367 0.015
regulation of biological quality GO:0065008 391 0.015
ribonucleoside catabolic process GO:0042454 332 0.015
glycerolipid metabolic process GO:0046486 108 0.015
regulation of cell cycle GO:0051726 195 0.014
cellular response to extracellular stimulus GO:0031668 150 0.014
monocarboxylic acid catabolic process GO:0072329 26 0.014
protein transport GO:0015031 345 0.014
proteolysis involved in cellular protein catabolic process GO:0051603 198 0.014
intracellular protein transport GO:0006886 319 0.014
regulation of phosphate metabolic process GO:0019220 230 0.013
lipid metabolic process GO:0006629 269 0.013
glycerolipid biosynthetic process GO:0045017 71 0.013
positive regulation of gene expression GO:0010628 321 0.013
purine ribonucleoside catabolic process GO:0046130 330 0.013
negative regulation of cellular component organization GO:0051129 109 0.013
protein catabolic process GO:0030163 221 0.013
carbohydrate derivative catabolic process GO:1901136 339 0.012
regulation of cellular component organization GO:0051128 334 0.012
organic acid biosynthetic process GO:0016053 152 0.012
membrane organization GO:0061024 276 0.012
amine metabolic process GO:0009308 51 0.012
response to organic cyclic compound GO:0014070 1 0.012
negative regulation of nucleic acid templated transcription GO:1903507 260 0.012
purine ribonucleotide catabolic process GO:0009154 327 0.012
ethanolamine containing compound metabolic process GO:0042439 21 0.011
organonitrogen compound biosynthetic process GO:1901566 314 0.011
ribonucleotide catabolic process GO:0009261 327 0.011
cellular biogenic amine metabolic process GO:0006576 37 0.011
protein localization to organelle GO:0033365 337 0.011
purine ribonucleotide metabolic process GO:0009150 372 0.011
response to osmotic stress GO:0006970 83 0.011
ion transport GO:0006811 274 0.011
single organism cellular localization GO:1902580 375 0.011
homeostatic process GO:0042592 227 0.011
developmental process GO:0032502 261 0.011
purine nucleoside catabolic process GO:0006152 330 0.011
mitotic cell cycle GO:0000278 306 0.011
establishment of protein localization to organelle GO:0072594 278 0.011
nucleoside triphosphate catabolic process GO:0009143 329 0.010
purine nucleoside metabolic process GO:0042278 380 0.010

ZTA1 disease predictions

Disease predictions are made from cross-annotation of human disease genes to the identified functional analogs in yeast and predicted with the yeast functional network.

Disease DO term ID Size Probability Func Analog Org