FEBS Letters · 2000 · 65 citations · 18 references
ImmunologyImmunologic MechanismCytoplasmic LocalizationCancer BiologyTumor BiologyTranscriptional RegulationSignaling PathwayCell RegulationCell SignalingIfn-inducible ProteinsAim2 GeneIfn ActionMelanomaGene ExpressionCell BiologyInterferon‐inducible ProteinCytokineSignal TransductionSystems BiologyMedicine
While interferons (IFNs) (alpha, beta and gamma), a family of cytokines, have the ability to exert the growth-inhibitory effect on target cells, the molecular mechanism(s) by which IFNs inhibit cell growth remains to be identified. Because IFN-inducible 'effector' proteins mediate the biological activities of IFNs, characterization of IFN-inducible proteins is critical to identify their functional role in IFN action. One family (the 200-family) of IFN-inducible proteins is encoded by structurally related murine (Ifi202a, Ifi202b, Ifi203, Ifi204 and D3) and human (IFI16, MNDA and AIM2) genes. The proteins encoded by genes in the family share a unique repeat of 200-amino acids and are primarily nuclear. The AIM2 gene is a newly identified gene that is not expressed in a human melanoma cell line. Here we report that AIM2 is estimated to be a 39 kDa protein and, unlike other proteins in the family, is localized primarily in the cytoplasm. Interestingly, overexpression of AIM2 in transfected cells retards proliferation and, under reduced serum conditions, increases the susceptibility to cell death. Moreover, AIM2 can heterodimerize with p202 in vitro. Together, these observations provide support to the idea that AIM2 may be an important mediator of IFN action.
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Interferons as Gene Activators
Divaker Choubey, Jay Snoddy, Venkatesh Chaturvedi et al. · Journal of Biological Chemistry · 1989 · 123 citations · Full text
Inhibition of E2F-mediated transcription by p202.
Divaker Choubey, S J Li, B Datta et al. · The EMBO Journal · 1996 · 107 citations · Full text
E2f-mediated Transcription, Transcriptional Regulation, Signal Transduction +7