RNA Details
                    Disease Name
                    
                    idiopathic pulmonary fibrosis
                    
                    Tissue
                    
                    lung
                    
                    RNA Symbol
                    
                    Ptpa
                    
                RNA ID
                    
                    
                    
                RNA Type
                    
                    mRNA
                    
                Alteration Pattern
                    
                    down regulation
                    
                Species
                    
                    mus musculus
                    
                Detection Methods
                    
                     qRT-PCR; Immunohistochemistry etc.
                    
                Target
                    
                    NA
                    
                Pathway
                    
                    PP2A/HISTONE DEACETYLASE C4/MICRORNA-29 signaling pathway
                    
                PubMed ID
                    
                    
                    
                    
                    
                Title
                    
                    Pathologic Regulation of Collagen I by an Aberrant Protein Phosphatase 2A/Histone Deacetylase C4/MicroRNA-29 Signal Axis in Idiopathic Pulmonary Fibrosis Fibroblasts
                    
                Year
                    
                     2015
                    
                Function
                    
                    "The mechanism for suppression of miR-29 during IPF fibroblast interaction with polymerized collagen involves inappropriately low protein phosphatase (PP) 2A function, leading to histone deacetylase (HDA) C4 phosphorylation and decreased nuclear translocation of HDAC4.PF fibroblast interaction with polymerized type I collagen results in an aberrant PP2A/HDAC4 axis, which suppresses miR-29, causing a pathologic increase in type I collagen expression."