Saccharomyces cerevisiae

15 known processes

VMA21 (YGR105W)

Vma21p

VMA21 biological process predictions


Filter by process size:
Biological process GO term ID Process size Probability Func Analog Org
establishment of protein localization to organelle GO:0072594 278 0.572
protein targeting GO:0006605 272 0.345
protein complex assembly GO:0006461 302 0.326
cellular homeostasis GO:0019725 138 0.249
vesicle mediated transport GO:0016192 335 0.237
protein complex biogenesis GO:0070271 314 0.237
regulation of biological quality GO:0065008 391 0.203
intracellular protein transport GO:0006886 319 0.164
single organism cellular localization GO:1902580 375 0.137
multi organism process GO:0051704 233 0.128
cellular ion homeostasis GO:0006873 112 0.108
cellular macromolecule catabolic process GO:0044265 363 0.104
cellular nitrogen compound catabolic process GO:0044270 494 0.092
chemical homeostasis GO:0048878 137 0.079
ion homeostasis GO:0050801 118 0.076
positive regulation of nucleobase containing compound metabolic process GO:0045935 409 0.057
protein transport GO:0015031 345 0.057
nitrogen compound transport GO:0071705 212 0.054
positive regulation of macromolecule metabolic process GO:0010604 394 0.047
carbohydrate derivative metabolic process GO:1901135 549 0.046
homeostatic process GO:0042592 227 0.046
regulation of transcription from rna polymerase ii promoter GO:0006357 394 0.040
nucleobase containing compound catabolic process GO:0034655 479 0.036
protein localization to organelle GO:0033365 337 0.036
nucleobase containing compound transport GO:0015931 124 0.032
single organism developmental process GO:0044767 258 0.030
cellular cation homeostasis GO:0030003 100 0.030
macromolecule catabolic process GO:0009057 383 0.029
mitotic cell cycle GO:0000278 306 0.028
cell wall biogenesis GO:0042546 93 0.027
ubiquitin dependent protein catabolic process GO:0006511 181 0.026
heterocycle catabolic process GO:0046700 494 0.026
regulation of localization GO:0032879 127 0.024
transmembrane transport GO:0055085 349 0.023
cell wall macromolecule metabolic process GO:0044036 27 0.022
cellular chemical homeostasis GO:0055082 123 0.022
cation homeostasis GO:0055080 105 0.021
positive regulation of rna metabolic process GO:0051254 294 0.020
mitotic cell cycle process GO:1903047 294 0.019
organic cyclic compound catabolic process GO:1901361 499 0.019
rna localization GO:0006403 112 0.019
protein catabolic process GO:0030163 221 0.017
protein targeting to nucleus GO:0044744 57 0.016
signal transduction GO:0007165 208 0.016
positive regulation of cellular catabolic process GO:0031331 128 0.016
aromatic compound catabolic process GO:0019439 491 0.015
cellular response to chemical stimulus GO:0070887 315 0.015
establishment of rna localization GO:0051236 92 0.015
ribonucleoside triphosphate catabolic process GO:0009203 327 0.014
positive regulation of nucleic acid templated transcription GO:1903508 286 0.014
single organism signaling GO:0044700 208 0.014
dna repair GO:0006281 236 0.013
regulation of cell cycle GO:0051726 195 0.012
organelle fission GO:0048285 272 0.012
regulation of molecular function GO:0065009 320 0.012
cellular component macromolecule biosynthetic process GO:0070589 24 0.012
glycosyl compound catabolic process GO:1901658 335 0.012
positive regulation of gene expression GO:0010628 321 0.012
endosomal transport GO:0016197 86 0.012
regulation of catalytic activity GO:0050790 307 0.011
negative regulation of nitrogen compound metabolic process GO:0051172 300 0.011
regulation of response to stimulus GO:0048583 157 0.011
multi organism reproductive process GO:0044703 216 0.011
establishment of protein localization GO:0045184 367 0.011
anatomical structure morphogenesis GO:0009653 160 0.011
ion transport GO:0006811 274 0.011
modification dependent protein catabolic process GO:0019941 181 0.010
proton transporting two sector atpase complex assembly GO:0070071 15 0.010

VMA21 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