Rattus norvegicus

0 known processes

Rbm5

RNA binding motif protein 5

Rbm5 biological process predictions


Filter by process size:
Biological process GO term ID Process size Probability Func Analog Org
rna metabolic process GO:0016070 406 0.087
Human
oxoacid metabolic process GO:0043436 290 0.064
cellular ketone metabolic process GO:0042180 51 0.064
positive regulation of cell communication GO:0010647 271 0.059
peptidyl amino acid modification GO:0018193 126 0.049
transcription dna templated GO:0006351 377 0.047
amine metabolic process GO:0009308 38 0.045
intracellular signal transduction GO:0035556 314 0.043
positive regulation of response to stimulus GO:0048584 285 0.041
response to temperature stimulus GO:0009266 94 0.040
regulation of intracellular signal transduction GO:1902531 218 0.036
positive regulation of multicellular organismal process GO:0051240 387 0.035
response to heat GO:0009408 60 0.035
regulation of rna metabolic process GO:0051252 391 0.035
Human
positive regulation of phosphorylation GO:0042327 177 0.034
negative regulation of metabolic process GO:0009892 331 0.034
single organism organelle organization GO:1902589 180 0.033
macromolecular complex subunit organization GO:0043933 339 0.031
Human
positive regulation of tolerance induction GO:0002645 1 0.030
regulation of cellular amino acid metabolic process GO:0006521 2 0.028
regulation of cellular amine metabolic process GO:0033238 8 0.027
positive regulation of phosphorus metabolic process GO:0010562 262 0.026
protein localization GO:0008104 191 0.025
cellular amine metabolic process GO:0044106 38 0.025
regulation of signal transduction GO:0009966 318 0.025
nucleic acid templated transcription GO:0097659 379 0.024
positive regulation of phosphate metabolic process GO:0045937 262 0.023
carboxylic acid metabolic process GO:0019752 289 0.023
regulation of nucleic acid templated transcription GO:1903506 380 0.022
cellular response to nitrogen compound GO:1901699 210 0.022
positive regulation of signal transduction GO:0009967 175 0.021
peptidyl serine modification GO:0018209 34 0.020
positive regulation of developmental process GO:0051094 283 0.020
response to monosaccharide GO:0034284 159 0.019
cellular lipid metabolic process GO:0044255 208 0.019
regulation of cellular ketone metabolic process GO:0010565 27 0.019
small gtpase mediated signal transduction GO:0007264 36 0.019
single organism biosynthetic process GO:0044711 342 0.019
peptidyl tyrosine modification GO:0018212 72 0.018
positive regulation of signaling GO:0023056 270 0.018
catabolic process GO:0009056 351 0.017
cellular response to oxygen containing compound GO:1901701 386 0.017
rna biosynthetic process GO:0032774 380 0.016
protein complex assembly GO:0006461 263 0.016
response to acid chemical GO:0001101 222 0.016
response to wounding GO:0009611 254 0.016
peptidyl tyrosine phosphorylation GO:0018108 72 0.015
positive regulation of nucleic acid templated transcription GO:1903508 197 0.015
organic acid metabolic process GO:0006082 292 0.015
response to oxygen levels GO:0070482 265 0.015
cellular amino acid metabolic process GO:0006520 107 0.015
programmed cell death GO:0012501 392 0.015
Human
regeneration GO:0031099 163 0.015
regulation of phosphorylation GO:0042325 248 0.015
protein phosphorylation GO:0006468 345 0.015
regulation of cellular localization GO:0060341 263 0.015
positive regulation of cell proliferation GO:0008284 249 0.015
multicellular organism growth GO:0035264 1 0.014
positive regulation of mapk cascade GO:0043410 92 0.014
positive regulation of intracellular signal transduction GO:1902533 138 0.014
regulation of apoptotic process GO:0042981 335 0.014
Human
organophosphate biosynthetic process GO:0090407 143 0.014
response to carbohydrate GO:0009743 183 0.014
protein autophosphorylation GO:0046777 66 0.014
apoptotic process GO:0006915 381 0.014
Human
positive regulation of nitrogen compound metabolic process GO:0051173 334 0.013
regulation of programmed cell death GO:0043067 341 0.013
Human
positive regulation of protein metabolic process GO:0051247 178 0.013
negative regulation of macromolecule metabolic process GO:0010605 260 0.013
reactive nitrogen species metabolic process GO:2001057 1 0.013
negative regulation of nitrogen compound metabolic process GO:0051172 161 0.013
positive regulation of biosynthetic process GO:0009891 319 0.013
reproductive process GO:0022414 372 0.013
organic substance catabolic process GO:1901575 316 0.012
cytoskeleton organization GO:0007010 111 0.012
ras protein signal transduction GO:0007265 29 0.012
reactive oxygen species biosynthetic process GO:1903409 8 0.012
positive regulation of cellular biosynthetic process GO:0031328 295 0.012
regulation of mapk cascade GO:0043408 116 0.012
regulation of reactive oxygen species biosynthetic process GO:1903426 5 0.012
protein complex subunit organization GO:0071822 302 0.012
cellular response to lipid GO:0071396 201 0.012
response to toxic substance GO:0009636 133 0.011
response to ketone GO:1901654 182 0.011
regulation of anatomical structure morphogenesis GO:0022603 141 0.011
positive regulation of cellular amino acid metabolic process GO:0045764 1 0.011
negative regulation of cellular metabolic process GO:0031324 281 0.011
positive regulation of cellular amine metabolic process GO:0033240 3 0.011
cellular response to stress GO:0033554 269 0.011
spindle organization GO:0007051 2 0.011
protein complex biogenesis GO:0070271 263 0.011
secretion GO:0046903 307 0.011
wound healing spreading of epidermal cells GO:0035313 2 0.011
response to hexose GO:0009746 144 0.010
phosphatidylinositol dephosphorylation GO:0046856 4 0.010
single organism intracellular transport GO:1902582 166 0.010
carbohydrate derivative biosynthetic process GO:1901137 124 0.010
aging GO:0007568 241 0.010
cell cycle GO:0007049 101 0.010
response to glucose GO:0009749 136 0.010
erk1 and erk2 cascade GO:0070371 48 0.010
response to decreased oxygen levels GO:0036293 237 0.010

Rbm5 disease predictions

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

Disease DO term ID Size Probability Func Analog Org