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Prostate transmembrane protein, androgen induced 1 (PMEPA1)

Target
PMEPA1
Molecular classification
Transmembrane protein (type 1b), Other (not a receptor, enzyme, transporter, transcription factor, ion channel, or histone modifier)
01

Overview

PMEPA1 (Prostate transmembrane protein, androgen induced 1) is a highly conserved, type 1b transmembrane protein with luminal, membrane spanning, and cytoplasmic domains[2][4][6]. Induced by androgens and TGF-β, PMEPA1 serves as a critical regulator of both androgen receptor (AR) and TGF-β signaling pathways via negative feedback mechanisms[1][2][4][7]. It suppresses AR protein levels by facilitating ubiquitination (likely via NEDD4 E3 ligase recruitment) and inhibits canonical TGF-β/Smad transcription[1][4]. PMEPA1 is implicated in several solid tumors, particularly prostate cancer, where it may function as a tumor suppressor or promoter depending on context and isoform[2][4]. Reduced PMEPA1 expression is associated with increased AR signaling, poor prognosis, higher Gleason scores, and resistance to AR-targeted therapeutics[4]. PMEPA1 acts as both a biomarker and a potential therapeutic target, and its alternative splicing yields multiple functionally distinct isoforms[2][4][8]. It is tissue enhanced in prostate, with prognostic value in certain cancers[7]. Disease roles include direct involvement in cancer progression and associations with other pathologies such as aortic aneurysm and melanoma[1][7]. There are currently no well-established drugs that directly target PMEPA1[1][6].

Other names
TMEPAISTAG1Solid tumor-associated 1 proteinTransmembrane prostate androgen-induced proteinSolid tumor-associated gene 1Transmembrane, prostate androgen induced RNAProtein TMEPAI
02

Mechanism of action

Drugs targeting PMEPA1 (not well-established) would act through modulation of TGF-β signaling or AR degradation

03

Biological functions

Negative regulation of transforming growth factor beta (TGF-β) signalingNegative regulation of androgen receptor (AR) signalingRegulation of cell proliferationRegulation of cell differentiationRegulation of apoptosisCell motilityExtracellular matrix productionImmunosuppression
04

Disease associations

Cancer (prostate, breast, colon, lung)Aortic aneurysm (familial thoracic)Malignant melanoma (breast)
05

Safety considerations

Potential risk of promoting androgen-independent growth of prostate cancer if PMEPA1 is suppressedSilencing PMEPA1 may confer resistance to AR inhibitorsLost PMEPA1 may enhance metastasis through TGF-β activation
06

Biomarkers

Expression ratio of PMEPA1 isoforms (e.g., PMEPA1-b versus PMEPA1-d/e for Gleason score)PMEPA1 gene methylation status in prostate cancerPMEPA1 protein levels as a prognostic marker

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