Target intelligence / Profile preview

Eva-1 homolog A, regulator of programmed cell death (EVA1A)

Target
EVA1A
Molecular classification
Transmembrane protein, Regulator of programmed cell death, Other
01

Overview

Eva-1 homolog A, regulator of programmed cell death (EVA1A), is a highly conserved type I transmembrane protein encoded by the EVA1A gene and known by several aliases including TMEM166 and FAM176A[2][3][6]. EVA1A localizes mainly to the endoplasmic reticulum and lysosomes[1], where it functions as a dual regulator of autophagy and apoptosis[1][2]. It plays a critical role in autophagosome formation by interacting with the ATG16L1 protein complex through its C-terminal domain, acting downstream of the BECN1 complex[1]. EVA1A is expressed in a tissue- and cell-type specific manner and is notably downregulated in several human cancers, where its restoration inhibits tumor cell proliferation through the induction of autophagy and apoptosis, often making it a candidate tumor suppressor[1][2]. Gene therapy approaches using EVA1A (Ad5-EVA1A) have been explored for their anti-tumor activities in vivo and in vitro[2]. Beyond cancer, disruptions in EVA1A activity or expression are associated with neurodevelopmental and metabolic disorders, highlighting its broader biological significance[3].

Other names
Protein eva-1 homolog AFAM176ATMEM166Transmembrane protein 166SP24FLJ13391Protein FAM176AFamily with sequence similarity 176, member A
02

Mechanism of action

Induces autophagy and apoptosis in tumor cells (gene therapy approach); Promotes the recruitment of the ATG12–ATG5/ATG16L1 complex to autophagic membranes to stimulate autophagosome formation

03

Biological functions

Regulation of autophagyInduction of apoptosisRegulation of programmed cell deathTumor suppressionCell deathEmbryonic neurogenesis
04

Disease associations

Cancer (multiple types, including gastric cancer, esophagus cancer, adrenal cortical carcinoma, pituitary adenoma, parathyroid adenoma, and papillary thyroid cancer)Neurodevelopmental disorders (potential, via autophagy regulation)Developmental and epileptic encephalopathy 98Combined oxidative phosphorylation deficiency 8Other
05

Safety considerations

Potential for excessive cell death (autophagy/apoptosis) if overexpressed, particularly relevant in gene therapy settingsUnknown risks in non-tumor tissues or for systemic overexpression; therapeutic window remains to be defined
06

Interacting drugs

Ad5-EVA1A (recombinant adenovirus vector expressing EVA1A, studied as gene therapy)
07

Biomarkers

Downregulated expression of EVA1A in tumor vs. normal tissues (proposed as biomarker for cancer)EVA1A expression as an indicator of autophagic/anti-proliferative activity in tumors

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