ATP6AP2 notes

Research workflow

Curation synthesis

PN decision

Falcon deep research synthesis (2026-06-21)

The Falcon report (file:human/ATP6AP2/ATP6AP2-deep-research-falcon.md) reinforces
the PN decision above (V-ATPase accessory/assembly is the proteostasis-relevant
core; RAS/Wnt/MAPK are non-core elaborations) and adds three useful points.

Evolutionary argument that the V-ATPase function is ancestral/primary.
ATP6AP2 is conserved from yeast to human, and homologs that lack renin-binding
function exist in organisms with no renin-angiotensin system
, indicating the
V-ATPase accessory role is the fundamental, conserved function and the
(pro)renin-receptor/RAS role is a vertebrate-specific elaboration
(falace2024vatpasedysfunctionin; figueiredo2021). This is a strong independent
justification for treating the V-ATPase-assembly / lysosomal-acidification
branch as core and the RAS/angiotensin annotations as non-core.

Proteolytic processing nuance (relevant to which "form" does what). In the
trans-Golgi, ATP6AP2 is cleaved by furin / site-1 protease (S1P) / ADAM19 into a
~28-kDa soluble (pro)renin receptor (sPRR) and a truncated membrane fragment
M8.9 that remains associated with V-ATPase. Reviews describe M8.9 as the
V-ATPase-associated portion — i.e. the proteostasis-relevant activity is carried
by the membrane-retained fragment, while the soluble ectodomain participates in
RAS signaling (kourieh2025overviewofrenin). Worth noting when interpreting
isoform/fragment-specific annotations.

Structural placement (Abbas 2020; Wang 2020). Cryo-EM of mammalian/human
V-ATPase places the ATP6AP2/PRR transmembrane anchor inside the V0 c-ring
alongside the cleaved ATP6AP1/Ac45 anchor (enzyme ATP:H+ ratio 3:10), confirming
ATP6AP2 as a structural/assembly contributor to the membrane sector rather than a
catalytic subunit — consistent with the GO:0070072 V-ATPase-assembly and
GO:0060590 ATPase-regulator calls already made.

Other corroborated (non-core) roles: trafficking/stabilization of
LRP6/β-catenin and N-cadherin/β-catenin at the membrane (Wnt; xiong2024),
megalin/cubilin receptor-mediated endocytosis in renal proximal tubule
(figueiredo2021), and tissue-specific KO phenotypes (osteoblast bone formation,
placental trophoblast invasion, endothelial tip-cell polarity/angiogenesis). No
change to the core call.