Sort   by:  
 Page size 
The autophagy-lysosome system directs the degradation of a wide variety of cargo and is also involved in tumor progression. Here we show that immunity-related GTPase family Q protein (IRGQ) acts in the quality control of MHC-I molecules and directs misfolded MHC-I for lysosomal degradation through i...
ORGANISM(S): Homo sapiens (Human) Escherichia coli 
2024-11-26 | PXD045212 | Pride
GABARAPL2 is the only hATG8 able to fit in the LIR1-G1 loop pocket of IRGQ. To further dissect this striking evolutionary specificity, we queried the interactome of the IRGQ-GABARAPL2 complex with proteomics by using the Venus complementation affinity purification (BiCAP) method.
ORGANISM(S): Homo sapiens (Human) 
2026-03-13 | PXD066671 | Pride
interactome of endogenous IRGQ during basal and autophagy-inducing conditions
ORGANISM(S): Homo sapiens (Human) 
2024-11-01 | PXD045117 | Pride
The autophagy-lysosome system directs the degradation of a wide variety of cargo and is also involved in tumor progression. Here we show that immunity-related GTPase family Q protein (IRGQ) acts in the quality control of MHC-I molecules and directs misfolded MHC-I for lysosomal degradation through i...
ORGANISM(S): Mus musculus (Mouse) 
2025-03-28 | PXD044618 | Pride
SurfaceOME of IRGQ WT and KO 8988T cells under basal conditions
ORGANISM(S): Homo sapiens (Human) 
2024-11-01 | PXD045259 | Pride
The autophagy-lysosome system directs the degradation of a wide variety of cargo and is also involved in tumor progression. Here we show that immunity-related GTPase family Q protein (IRGQ) acts in the quality control of MHC-I molecules and directs misfolded MHC-I for lysosomal degradation through i...
ORGANISM(S): Mus musculus (Mouse) 
2024-10-31 | PXD044985 | Pride
The molecular mechanism of Cr6+ carcinogenicity is not well understood. Studies advocate a key involvement of the altered cytogenomics and dysregulated pathways in Cr6+ toxicity. However, the dissimilarity in expression of genes and pathways in cells transformed by Cr6+ has led us to supplement more...
ORGANISM(S): Mus musculus 
2015-12-31 | GSE43156 | GEO
The molecular mechanism of Cr6+ carcinogenicity is not well understood. Studies advocate a key involvement of the altered cytogenomics and dysregulated pathways in Cr6+ toxicity. However, the dissimilarity in expression of genes and pathways in cells transformed by Cr6+ has led us to supplement more...
ORGANISM(S): Mus musculus 
TBK1 phosphorylates GABARAPL2 S10. In order to test if this phosphomimetic mutation in GABARAPL2 changes its binding to other proteins a mass spectrometry based interactome study was performed.
ORGANISM(S): Homo sapiens (Human) 
2026-03-13 | PXD066665 | Pride
Sort   by:  
 Page size