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Since PRSS35 only exhibited tumor suppressive effects in mice, but not in the cultured cells, we speculated that some factors in the microenvironment are affected by PRSS35. To explore this possibility, we performed SILAC proteomic analysis in conjunction with RNA sequencing to identify secreted pro...
ORGANISM(S): Homo sapiens (Human) 
2023-02-15 | PXD033579 | Pride
We identified the serine protease PRSS35 as a major player in the response to hyperosmotic stress. To gain insight into the mechanisms of action of PRSS35 in human primary fibroblasts, we searched for PRSS35-BirA-HA proximal proteins using BioID interaction screening.
ORGANISM(S): Homo sapiens (Human) 
2023-08-03 | PXD042894 | Pride
Substrates of PRSS35 in PLC cells
Since PRSS35 only exhibited tumor suppressive effects in mice, but not in the cultured cells, we speculated that some factors in the microenvironment are affected by PRSS35. To explore this possibility, we performed SILAC proteomic analysis in conjunction with RNA sequencing to identify secreted pro...
ORGANISM(S): Homo sapiens 
2023-02-15 | GSE201311 | GEO
In the project four sets of label-free proteomics studies were performed to characterize the extra cellular matrix (ECM) proteome of differentially treated cells (see below). All cells were treated with sorbitol to induce the expression of PRSS35. Only in set IV PRSS35 is downregulated. For each set...
ORGANISM(S): Homo sapiens (Human) 
2023-07-25 | PXD040684 | Pride
Results: Prenatal SUL altered baseline lung genes involved in organ/cell development and grow (e.g., Ibsp, Ctsk, Igfbp5) and ARE responses (e.g., Aldh3a1, Maff, Mafg) in Nrf2+/+ neonates and in cell morphogenesis and cell death and organismal injury/abnormality inhibition (e.g., Neat1, Nox4, Vegfa, ...
ORGANISM(S): Mus musculus 
2022-01-05 | GSE164699 | GEO
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