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Searched for: data_source:IMID [All Organisms, All Data Sources]

Your search has found 1547 relevant records:

Molecules (1547)
Showing Results 11 - 20 of 1,547  | Next 10 | Previous 10 | First Page
44%44%
Protein: JUN_HUMAN [Homo sapiens]  from IntAct, MINT, HPRD, BioGRID, Reactome, Cancer Cell Map, IMID, NCI / Nature Pathway Interaction Database  [141 pathways, 488 interactions]
Transcription factor AP-1

Summary:  FUNCTION: Transcription factor that recognizes and binds to the enhancer heptamer motif 5'-TGA[CG]TCA-3'. Promotes activity of NR5A1 when phosphorylated by HIPK3 leading to increased steroidogenic gene expression upon cAMP signaling pathway stimulation.

44%44%
Protein: SHC1_HUMAN [Homo sapiens]  from IntAct, MINT, HPRD, BioGRID, Reactome, Cancer Cell Map, IMID, NCI / Nature Pathway Interaction Database  [99 pathways, 483 interactions]
SHC-transforming protein 1

Summary:  FUNCTION: Signaling adapter that couples activated growth factor receptors to signaling pathways. Isoform p46Shc and isoform p52Shc, once phosphorylated, couple activated receptor tyrosine kinases to Ras via the recruitment of the GRB2/SOS complex and are implicated in the cytoplasmic propagation of mitogenic signals. Isoform p46Shc and isoform p52Shc may thus function as initiators of the Ras signaling cascade in various non-neuronal systems. Isoform p66Shc does not mediate Ras activation, but is involved in signal transduction pathways that regulate the cellular response to oxidative stress and life span. Isoform p66Shc acts as a downstream target of the tumor suppressor p53 and is indispensable for the ability of stress-activated p53 to induce elevation of intracellular oxidants, cytochrome c release and apoptosis. The expression of isoform p66Shc has been correlated with life span (By similarity).

42%42%
Protein: ABL1_HUMAN [Homo sapiens]  from IntAct, MINT, BioGRID, Reactome, Cancer Cell Map, IMID, NCI / Nature Pathway Interaction Database  [62 pathways, 504 interactions]
Tyrosine-protein kinase ABL1

Summary:  FUNCTION: Non-receptor tyrosine-protein kinase that plays a role in many key processes linked to cell growth and survival such as cytoskeleton remodeling in response to extracellular stimuli, cell motility and adhesion, receptor endocytosis, autophagy, DNA damage response and apoptosis. Coordinates actin remodeling through tyrosine phosphorylation of proteins controlling cytoskeleton dynamics like WASF3 (involved in branch formation); ANXA1 (involved in membrane anchoring); DBN1, DBNL, CTTN, RAPH1 and ENAH (involved in signaling); or MAPT and PXN (microtubule-binding proteins). Phosphorylation of WASF3 is critical for the stimulation of lamellipodia formation and cell migration. Involved in the regulation of cell adhesion and motility through phosphorylation of key regulators of these processes such as BCAR1, CRK, CRKL, DOK1, EFS or NEDD9. Phosphorylates multiple receptor tyrosine kinases and more particularly promotes endocytosis of EGFR, facilitates the formation of neuromuscular synapses throuhgh MUSK, inhibits PDGFRB-mediated chemotaxis and modulates the endocytosis of activated B cell receptor complexes. Other substrates which are involved in endocytosis regulation are the caveolin (CAV1) and RIN1. Moreover, ABL1 regulates the CBL family of ubiquitin ligases that drive receptor down-regulation and actin remodeling. Phosphorylation of CBL leads to increased EGFR stability. Involved in late-stage autophagy by regulating positively the trafficking and function of lysosomal components. ABL1 targets to mitochondria in response to oxidative stress and thereby mediates mitochondrial dysfunction and cell death. ABL1 is also translocated in the nucleus where it has DNA-binding activity and is involved in DNA-damage response and apoptosis. Many substrates are known mediators of DNA repair: DDB1, DDB2, ERCC3, ERCC6, RAD9A, RAD51, RAD52 or WRN. Activates the proapoptotic pathway when the DNA damage is too severe to be repaired. Phosphorylates TP73, a primary regulator for this type of damage- induced appoptosis. Phosphorylates PSMA7 that leads to an inhibition of proteasomal activity and cell cycle transition blocks. ABL1 acts also as a regulator of multiple pathological signaling cascades during infection. Several known tyrosine- phosphorylated microbial proteins have been identified as ABL1 substrates. This is the case of A36R of Vaccinia virus, Tir (translocated intimin receptor) of pathogenic E.coli and possibly Citrobacter, CagA (cytotoxin-associated gene A) of H.pylori, or AnkA (ankyrin repeat-containing protein A) of A.phagocytophilum. Pathogens can highjack ABL1 kinase signaling to reorganize the host actin cytoskeleton for multiple purposes, like facilitating intracellular movement and host cell exit. Finally, functions as its own regulator through autocatalytic activity as well as through phosphorylation of its inhibitor, ABI1. CATALYTIC ACTIVITY: ATP + a [protein]-L-tyrosine = ADP + a [protein]-L-tyrosine phosphate. COFACTOR: Magnesium or manganese.

42%42%
Protein: NCK1_HUMAN [Homo sapiens]  from MINT, HPRD, BioGRID, Reactome, Cancer Cell Map, IMID, NCI / Nature Pathway Interaction Database  [60 pathways, 527 interactions]
Cytoplasmic protein NCK1

Summary:  FUNCTION: Adapter protein which associates with tyrosine- phosphorylated growth factor receptors or their cellular substrates. Maintains low levels of EIF2S1 phosphorylation by promoting its dephosphorylation by PP1. Plays a role in the DNA damage response, not in the detection of the damage by ATM/ATR, but for efficient activation of downstream effectors, such as that of CHEK2.

37%37%
Protein: PTN11_HUMAN [Homo sapiens]  from IntAct, MINT, HumanCyc, HPRD, BioGRID, Reactome, Cancer Cell Map, IMID, NCI / Nature Pathway Interaction Database  [145 pathways, 435 interactions]
Tyrosine-protein phosphatase non-receptor type 11

Summary:  FUNCTION: Acts downstream of various receptor and cytoplasmic protein tyrosine kinases to participate in the signal transduction from the cell surface to the nucleus. Dephosphorylates ROCK2 at Tyr-722 resulting in stimulatation of its RhoA binding activity. CATALYTIC ACTIVITY: Protein tyrosine phosphate + H(2)O = protein tyrosine + phosphate.

37%37%
Protein: NFKB1_HUMAN [Homo sapiens]  from IntAct, MINT, HPRD, BioGRID, Reactome, Cancer Cell Map, IMID, NCI / Nature Pathway Interaction Database  [96 pathways, 409 interactions]
Nuclear factor NF-kappa-B p105 subunit

Summary:  FUNCTION: NF-kappa-B is a pleiotropic transcription factor which is present in almost all cell types and is involved in many biological processed such as inflammation, immunity, differentiation, cell growth, tumorigenesis and apoptosis. NF- kappa-B is a homo- or heterodimeric complex formed by the Rel-like domain-containing proteins RELA/p65, RELB, NFKB1/p105, NFKB1/p50, REL and NFKB2/p52 and the heterodimeric p65-p50 complex appears to be most abundant one. The dimers bind at kappa-B sites in the DNA of their target genes and the individual dimers have distinct preferences for different kappa-B sites that they can bind with distinguishable affinity and specificity. Different dimer combinations act as transcriptional activators or repressors, respectively. NF-kappa-B is controlled by various mechanisms of post-translational modification and subcellular compartmentalization as well as by interactions with other cofactors or corepressors. NF-kappa-B complexes are held in the cytoplasm in an inactive state complexed with members of the NF- kappa-B inhibitor (I-kappa-B) family. In a conventional activation pathway, I-kappa-B is phosphorylated by I-kappa-B kinases (IKKs) in response to different activators, subsequently degraded thus liberating the active NF-kappa-B complex which translocates to the nucleus. NF-kappa-B heterodimeric p65-p50 and RelB-p50 complexes are transcriptional activators. The NF-kappa-B p50-p50 homodimer is a transcriptional repressor, but can act as a transcriptional activator when associated with BCL3. NFKB1 appears to have dual functions such as cytoplasmic retention of attached NF-kappa-B proteins by p105 and generation of p50 by a cotranslational processing. The proteasome-mediated process ensures the production of both p50 and p105 and preserves their independent function, although processing of NFKB1/p105 also appears to occur post- translationally. p50 binds to the kappa-B consensus sequence 5'- GGRNNYYCC-3', located in the enhancer region of genes involved in immune response and acute phase reactions. In a complex with MAP3K8, NFKB1/p105 represses MAP3K8-induced MAPK signaling; active MAP3K8 is released by proteasome-dependent degradation of NFKB1/p105.

37%37%
Protein: RAF1_HUMAN [Homo sapiens]  from IntAct, MINT, HumanCyc, HPRD, BioGRID, Reactome, Cancer Cell Map, IMID, NCI / Nature Pathway Interaction Database  [126 pathways, 451 interactions]
RAF proto-oncogene serine/threonine-protein kinase

Summary:  FUNCTION: Involved in the transduction of mitogenic signals from the cell membrane to the nucleus. Part of the Ras-dependent signaling pathway from receptors to the nucleus. Protects cells from apoptosis mediated by STK3. CATALYTIC ACTIVITY: ATP + a protein = ADP + a phosphoprotein. COFACTOR: Binds 2 zinc ions per subunit.

37%37%
Protein: HS90A_HUMAN [Homo sapiens]  from IntAct, MINT, HPRD, BioGRID, Reactome, Cancer Cell Map, IMID, NCI / Nature Pathway Interaction Database  [80 pathways, 449 interactions]
Heat shock protein HSP 90-alpha

Summary:  FUNCTION: Molecular chaperone that promotes the maturation, structural maintenance and proper regulation of specific target proteins involved for instance in cell cycle control and signal transduction. Undergoes a functional cycle that is linked to its ATPase activity. This cycle probably induces conformational changes in the client proteins, thereby causing their activation. Interacts dynamically with various co-chaperones that modulate its substrate recognition, ATPase cycle and chaperone function.

35%35%
Protein: CRK_HUMAN [Homo sapiens]  from MINT, HPRD, BioGRID, Cancer Cell Map, IMID, NCI / Nature Pathway Interaction Database  [61 pathways, 387 interactions]
Adapter molecule crk

Summary:  FUNCTION: The Crk-I and Crk-II forms differ in their biological activities. Crk-II has less transforming activity than Crk-I. Crk- II mediates attachment-induced MAPK8 activation, membrane ruffling and cell motility in a Rac-dependent manner. Involved in phagocytosis of apoptotic cells and cell motility via its interaction with DOCK1 and DOCK4.

35%35%
Protein: MK01_HUMAN [Homo sapiens]  from IntAct, MINT, HPRD, BioGRID, Reactome, Cancer Cell Map, IMID, NCI / Nature Pathway Interaction Database  [124 pathways, 408 interactions]
Mitogen-activated protein kinase 1

Summary:  FUNCTION: Involved in both the initiation and regulation of meiosis, mitosis, and postmitotic functions in differentiated cells by phosphorylating a number of transcription factors such as ELK1. Phosphorylates EIF4EBP1; required for initiation of translation. Phosphorylates microtubule-associated protein 2 (MAP2). Phosphorylates SPZ1 (By similarity). Phosphorylates heat shock factor protein 4 (HSF4) and ARHGEF2.