+ |
MAPKAPK5 | down-regulates activity
phosphorylation
|
RHEB |
0.412 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-276313 |
Ser130 |
LHMERVIsYEEGKAL |
Homo sapiens |
HEK-293 Cell |
pmid |
sentence |
21336308 |
Phosphorylation of Rheb at Ser 130 by PRAK impairs the nucleotide-binding ability of Rheb and inhibits Rheb-mediated mTORC1 activation. |
|
Publications: |
1 |
Organism: |
Homo Sapiens |
+ |
RHEB | up-regulates activity
binding
|
MTOR |
0.949 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-162006 |
|
|
Homo sapiens |
HEK-293 Cell |
pmid |
sentence |
20006481 |
Rheb stimulates the phosphorylation of mtor and plays an essential role in regulation of s6k and 4ebp1 in response to nutrients and cellular energy status. |
|
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-135770 |
|
|
Homo sapiens |
HEK-293 Cell |
pmid |
sentence |
15854902 |
Rheb binds and regulates the mTOR kinase. |
|
Publications: |
2 |
Organism: |
Homo Sapiens |
Pathways: | MTOR Signaling |
+ |
TSC1 | down-regulates activity
binding
|
RHEB |
0.909 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-162096 |
|
|
Homo sapiens |
|
pmid |
sentence |
20006481 |
Tsc1 and tsc2 proteins, which together inhibit rheb through the gap activity of tsc2. |
|
Publications: |
1 |
Organism: |
Homo Sapiens |
Pathways: | Insulin Signaling |
+ |
TSC | down-regulates activity
gtpase-activating protein
|
RHEB |
0.914 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-235895 |
|
|
Homo sapiens |
|
pmid |
sentence |
15340059 |
Tsc2 functions as a gap to inhibit rheb activity. Tsc2 displays gap (gtpase-activating protein) activity specifically towards the small g protein rheb and inhibits its ability to stimulate the mtor signaling pathway. It has recently been shown that tsc2 has gtpase-activating protein (gap) activity towards the ras family small gtpase rheb (ras homolog enriched in brain), and tsc1/2 antagonizes the mtor signaling pathway via stimulation of gtp hydrolysis of rheb. |
|
Publications: |
1 |
Organism: |
Homo Sapiens |
Pathways: | AMPK Signaling, Insulin Signaling, Luminal Breast Cancer, mTOR in cancer, MTOR Signaling |
+ |
TSC2 | down-regulates activity
gtpase-activating protein
|
RHEB |
0.92 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-128432 |
|
|
Homo sapiens |
|
pmid |
sentence |
15340059 |
Tsc2 functions as a gap to inhibit rheb activity. Tsc2 displays gap (gtpase-activating protein) activity specifically towards the small g protein rheb and inhibits its ability to stimulate the mtor signaling pathway. It has recently been shown that tsc2 has gtpase-activating protein (gap) activity towards the ras family small gtpase rheb (ras homolog enriched in brain), and tsc1/2 antagonizes the mtor signaling pathway via stimulation of gtp hydrolysis of rheb. |
|
Publications: |
1 |
Organism: |
Homo Sapiens |
Tissue: |
Brain |
+ |
RHEB | down-regulates activity
binding
|
EIF2AK3 |
0.2 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-260873 |
|
|
in vitro |
|
pmid |
sentence |
25660019 |
Rheb GTPase directly binds and activates PERK in vitro |
|
Publications: |
1 |
Organism: |
In Vitro |
+ |
RHEB | down-regulates activity
gtpase-activating protein
|
FKBP8 |
0.552 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-233568 |
|
|
Homo sapiens |
|
pmid |
sentence |
19222999 |
Recent studies document that Rheb activates mTORC1 via direct, GTP-dependent interaction with the peptidyl-prolyl-cis/trans-isomerase FKBP38, which is proposed to act as an inhibitor of mTORC1. |
|
Publications: |
1 |
Organism: |
Homo Sapiens |
+ |
RHEB | up-regulates activity
|
mTORC1 |
0.791 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-235355 |
|
|
Mus musculus |
3T3-L1 Cell |
pmid |
sentence |
19299511 |
These results suggest that Rheb induces alteration in the binding of 4E-BP1 with mTORC1 to regulate mTORC1 activation. |
|
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-232208 |
|
|
Homo sapiens |
|
pmid |
sentence |
19222999 |
Recent studies document that Rheb activates mTORC1 via direct, GTP-dependent interaction with the peptidyl-prolyl-cis/trans-isomerase FKBP38, which is proposed to act as an inhibitor of mTORC1. |
|
Publications: |
2 |
Organism: |
Mus Musculus, Homo Sapiens |
Pathways: | AMPK Signaling, Insulin Signaling, Luminal Breast Cancer, mTOR in cancer |
+ |
RHEB | up-regulates
binding
|
PLD1 |
0.554 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-178892 |
|
|
Homo sapiens |
|
pmid |
sentence |
18550814 |
Rheb binds and activates pld1 in vitro in a gtp-dependent manner, strongly suggesting that pld1 is a bona fide effector for rheb. |
|
Publications: |
1 |
Organism: |
Homo Sapiens |
+ |
BNIP3 | down-regulates
binding
|
RHEB |
0.742 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-158274 |
|
|
Homo sapiens |
|
pmid |
sentence |
17928295 |
Bnip3, a hypoxia-inducible bcl-2 homology 3 domain-containing protein, directly binds rheb and inhibits the mtor pathway. Bnip3 decreases rheb gtp levels in a manner depending on the binding to rheb. |
|
Publications: |
1 |
Organism: |
Homo Sapiens |
+ |
RHEB | down-regulates
binding
|
FKBP8 |
0.552 |
Identifier |
Residue |
Sequence |
Organism |
Cell Line |
SIGNOR-159016 |
|
|
Homo sapiens |
|
pmid |
sentence |
17991864 |
Rheb interacts directly with fkbp38 and prevents its association with mtor in a guanosine 5'-triphosphate (gtp)-dependent manner. |
|
Publications: |
1 |
Organism: |
Homo Sapiens |