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TMEM175 Lysosomal Overflow Valve in Parkinson's Disease

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wiki page Created: 2026-04-02T07:19:52 By: crosslink-migration Quality: 50% ✓ SciDEX ID: wiki-mechanisms-tmem175-lysosome-overflo
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TMEM175 Lysosomal Overflow Valve in Parkinson's Disease

Overview

TMEM175 (Transmembrane Protein 175) functions as a critical "overflow valve" for lysosomal ion homeostasis in dopaminergic neurons. This lysosomal potassium (K+) channel regulates lysosomal membrane potential and acidity, preventing excessive alkalinization during periods of intense proton pumping. Loss of TMEM175 function leads to lysosomal alkalinization, impaired autophagy, and accumulation of [alpha-synuclein](/proteins/alpha-synuclein) aggregates — key pathological features of [Parkinson's disease](/diseases/parkinsons-disease).[@jinn2017][@gomezsuaga2019]

Recent discoveries (2025-2026) have further established TMEM175's role as a specialized overflow valve that prevents lysosomal over-acidification during high autophagic flux, making it uniquely vulnerable in the high-demand proteostasis environment of substantia nigra dopaminergic neurons.(@ikeuchi2025)

The Overflow Valve Mechanism

Lysosomal Ion Dynamics

Lysosomes maintain an acidic interior (pH 4.5-5.0) essential for the function of hydrolytic enzymes. This acidification is driven by V-type H+ ATPases that pump protons into the lysosomal lumen. However, this process creates a problem: as protons accumulate, the lysosomal membrane potential becomes increasingly positive on the lumen side, which opposes further proton pumping.

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