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Updated: Jan 7, 2026

Quantification of Hypopigmentation Activity In Vitro
Published on: March 6, 2019
OCA2 deficiency enhances TPC2 channel activity to reduce melanosomal pH and pigment production
Yizhen Wang1, Zengge Wang1, Shushu Lv2
1Laboratory for Genetics of Birth Defects, Beijing Pediatric Research Institute, Beijing, China; MOE Key Laboratory of Major Diseases in Children, Beijing, China; Genetics and Birth Defects Control Center, National Center for Children's Health, Beijing, China; Beijing Children's Hospital, Capital Medical University, Beijing, China.
Abstract:
Albinism is a heterogeneous inherited disorder with at least 21 known causative genes. Clinically, interpreting the potential digenic or oligogenic effects of the variants is a big challenge. We identified digenic mutations in a Chinese individual with oculocutaneous albinism, carrying a loss-of-function mutation in the Cl- (chloride) channel gene OCA2 (c.808-3C>G) and an unreported gain-of-function mutation in the Na+/Ca2+ channel gene TPCN2 (p.Ala24Val), which was confirmed by patch-clamp analysis. We further demonstrated that Cl- bilaterally modulated TPC2 activity by patch clamping: cytosolic high Cl- inhibited but luminal high Cl- enhanced TPC2 channel activity. Using CRISPR/Cas9-mediated knockout cell models and knockin mouse models, we confirmed that OCA2 modulated TPC2 activity by influencing melanosomal pH and pigment production. Mice mimicking double heterozygotes for the OCA2 loss-of-function p.Val443Ile and the TPCN2 gain-of-function p.Arg210Cys exhibited synergistic hypopigmentation in both fur and retina, phenocopying the albinism patient with digenic loss-of-function OCA2 and gain-of-function TPCN2 heterozygous mutations. This study provides experimental evidence supporting an oligogenic mode of inheritance in albinism, pinpoints melanosomal ion homeostasis as a key pathogenic mechanism and potential therapeutic target, and establishes a generalized research framework for elucidating gene-gene interactions in heterogeneous inherited disorders, especially for the channelopathies.
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