Authors
Tian Liang, Shih-Kai Wang, Charles Smith, Hong Zhang, Yuanyuan Hu, Figen Seymen, Mine Koruyucu, Yelda Kasimoglu, Jung-Wook Kim, Chuhua Zhang, Thomas L Saunders, James P Simmer, Jan C-C Hu
Publication date
2022/10/1
Journal
Scientific Reports
Volume
12
Issue
1
Pages
16477
Publisher
Nature Publishing Group UK
Description
Human ACP4 (OMIM*606362) encodes a transmembrane protein that belongs to histidine acid phosphatase (ACP) family. Recessive mutations in ACP4 cause non-syndromic hypoplastic amelogenesis imperfecta (AI1J, OMIM#617297). While ACP activity has long been detected in developing teeth, its functions during tooth development and the pathogenesis of ACP4-associated AI remain largely unknown. Here, we characterized 2 AI1J families and identified a novel ACP4 disease-causing mutation: c.774_775del, p.Gly260Aspfs*29. To investigate the role of ACP4 during amelogenesis, we generated and characterized Acp4R110C mice that carry the p.(Arg110Cys) loss-of-function mutation. Mouse Acp4 expression was the strongest at secretory stage ameloblasts, and the protein localized primarily at Tomes’ processes. While Acp4 heterozygous (Acp4+/R110C) mice showed no phenotypes, incisors and molars …
Total citations
2023202451
Scholar articles
T Liang, SK Wang, C Smith, H Zhang, Y Hu, F Seymen… - Scientific Reports, 2022