Saccharomyces cerevisiae

0 known processes

OSW5 (YMR148W)

Osw5p

OSW5 biological process predictions


Filter by process size:
Biological process GO term ID Process size Probability Func Analog Org
protein complex assembly GO:0006461 302 0.083
cell wall organization GO:0071555 146 0.063
chemical homeostasis GO:0048878 137 0.055
external encapsulating structure organization GO:0045229 146 0.053
transmembrane transport GO:0055085 349 0.052
establishment of protein localization to membrane GO:0090150 99 0.044
establishment of protein localization GO:0045184 367 0.041
membrane organization GO:0061024 276 0.041
regulation of biological quality GO:0065008 391 0.039
response to chemical GO:0042221 390 0.038
protein complex biogenesis GO:0070271 314 0.035
regulation of cellular component organization GO:0051128 334 0.034
single organism catabolic process GO:0044712 619 0.034
protein localization to membrane GO:0072657 102 0.028
protein modification by small protein conjugation or removal GO:0070647 172 0.027
lipid metabolic process GO:0006629 269 0.027
cofactor metabolic process GO:0051186 126 0.025
regulation of response to stimulus GO:0048583 157 0.023
nicotinamide nucleotide metabolic process GO:0046496 44 0.023
cellular protein complex assembly GO:0043623 209 0.023
purine containing compound metabolic process GO:0072521 400 0.022
cell wall organization or biogenesis GO:0071554 190 0.022
oxidoreduction coenzyme metabolic process GO:0006733 58 0.022
single organism cellular localization GO:1902580 375 0.022
organic acid transport GO:0015849 77 0.021
macromolecule catabolic process GO:0009057 383 0.021
nucleobase containing compound transport GO:0015931 124 0.021
cofactor biosynthetic process GO:0051188 80 0.021
endosomal transport GO:0016197 86 0.021
energy derivation by oxidation of organic compounds GO:0015980 125 0.021
fungal type cell wall organization GO:0031505 145 0.020
nucleus organization GO:0006997 62 0.019
nucleoside phosphate metabolic process GO:0006753 458 0.018
cellular response to chemical stimulus GO:0070887 315 0.018
oxidation reduction process GO:0055114 353 0.018
single organism developmental process GO:0044767 258 0.017
single organism membrane organization GO:0044802 275 0.017
cellular macromolecule catabolic process GO:0044265 363 0.017
negative regulation of macromolecule metabolic process GO:0010605 375 0.016
regulation of protein metabolic process GO:0051246 237 0.016
establishment or maintenance of cell polarity GO:0007163 96 0.016
late endosome to vacuole transport GO:0045324 42 0.016
regulation of organelle organization GO:0033043 243 0.015
cellular protein catabolic process GO:0044257 213 0.015
homeostatic process GO:0042592 227 0.015
proteolysis GO:0006508 268 0.015
positive regulation of macromolecule metabolic process GO:0010604 394 0.014
pigment metabolic process GO:0042440 23 0.014
cellular response to organic substance GO:0071310 159 0.014
regulation of protein modification process GO:0031399 110 0.013
fungal type cell wall organization or biogenesis GO:0071852 169 0.013
carbohydrate derivative biosynthetic process GO:1901137 181 0.013
response to organic cyclic compound GO:0014070 1 0.013
cytoskeleton organization GO:0007010 230 0.013
developmental process GO:0032502 261 0.013
cell communication GO:0007154 345 0.013
organophosphate metabolic process GO:0019637 597 0.012
nitrogen compound transport GO:0071705 212 0.012
vacuolar transport GO:0007034 145 0.012
cation transport GO:0006812 166 0.012
negative regulation of organelle organization GO:0010639 103 0.012
ion transport GO:0006811 274 0.011
mitochondrion organization GO:0007005 261 0.011
regulation of cellular protein metabolic process GO:0032268 232 0.011
protein ubiquitination GO:0016567 118 0.011
ubiquitin dependent protein catabolic process GO:0006511 181 0.011
amino acid transport GO:0006865 45 0.011
organic cyclic compound catabolic process GO:1901361 499 0.010
growth GO:0040007 157 0.010

OSW5 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