Sort   by:  
 Page size 
Understanding the molecular mechanisms of pathological vascular remodeling is important for treating cardiovascular diseases and complications. Recent studies have highlighted a role of deubiquitinases in vascular pathophysiology. In this study, we investigated the role of a deubiquitinase, OTUD1, i...
ORGANISM(S): Homo sapiens (Human) 
2022-12-24 | PXD037926 | Pride
Serum monoclonal immunoglobulin (Ig) is the main diagnostic factor for patients with multiple myeloma (MM), however its prognostic potential remains unclear. On a large MM patient cohort (n=4146), we observe no correlation between serum Ig levels and patient survival, while amount of intracellular I...
ORGANISM(S): Homo sapiens (Human) 
2023-03-11 | PXD037309 | Pride
The goals of the study are to compare differently expressed proteins in activated CD4T and OTUD1-deficient CD4T cells. Proteomics was performed with activated CD4T and OTUD1-deficient CD4T cells (n = 3 for each group) to identify the differently expressed proteins and related signaling pathway affe...
ORGANISM(S): Mus musculus (Mouse) 
2023-01-18 | PXD036217 | Pride
Transcriptome analysis of control and OTUD1 knockout T24 Cells
Transcriptome analysis of control and OTUD1 knockout SKOV3 Cells
Endothelial OTUD1 promotes Ang II-induced vascular remodeling by deubiquitinating SMAD3
The deubiquitinase OTUD1 attenuates periodontal inflammation by restricting neutrophil protein transport
OTUD1 aggravates pathological cardiac hypertrophy through activation of PGAM5-ASK1 signaling pathways
We have confirmed that OTUD1 interacted directly with Akt and inhibited Akt phosphorylation. To investigate the exact mechanism of OTUD1 in the regulation of Akt signaling pathway, we established T24 cells with stable OTUD1 depletion by using sgRNA.
ORGANISM(S): Homo sapiens 
2022-12-23 | GSE217570 | GEO
Sort   by:  
 Page size