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  5. Fam83h null mice support a neomorphic mechanism for human ADHCAI
 
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Fam83h null mice support a neomorphic mechanism for human ADHCAI

Journal
Molecular Genetics and Genomic Medicine
Journal Volume
4
Journal Issue
1
Pages
46-67
Date Issued
2016
Author(s)
SHIH-KAI WANG  
Hu Y.
Yang J.
Smith C.E.
Richardson A.S.
Yamakoshi Y.
YUAN-LING LEE  
Seymen F.
Koruyucu M.
Gencay K.
Lee M.
Choi M.
Kim J.-W.
Hu J.C.-C.
Simmer J.P.
DOI
10.1002/mgg3.178
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84989898583&doi=10.1002%2fmgg3.178&partnerID=40&md5=ab5ca727cf28f93d5af9fe0506fdeb4d
https://scholars.lib.ntu.edu.tw/handle/123456789/569395
Abstract
Truncation mutations in FAM83H (family with sequence similarity 83, member H) cause autosomal dominant hypocalcified amelogenesis imperfecta (ADHCAI), but little is known about FAM83H function and the pathogenesis of ADHCAI. We recruited three ADHCAI families and identified two novel (p.Gln457*; p.Lys639*) and one previously documented (p.Q452*) disease-causing FAM83H mutations. We generated and characterized Fam83h-knockout/lacZ-knockin mice. Surprisingly, enamel thickness, density, Knoop hardness, morphology, and prism patterns were similar in Fam83h +/+ , Fam83h +/- , and Fam83h -/- mice. The histology of ameloblasts in all stages of development, in both molars and incisors, was virtually identical in all three genotypes and showed no signs of pathology, although the Fam83h -/- mice usually died after 2 weeks and rarely survived to 7 weeks. LacZ expression in the knockin mice was used to report Fam83h expression in the epithelial tissues of many organs, notably in skin and hair follicles, which manifested a disease phenotype. Pull-down studies determined that FAM83H dimerizes through its N-terminal phospholipase D-like (PLD-like) domain and identified potential FAM83H interacting proteins. Casein kinase 1 (CK1) interacts with the FAM83H PLD-like domain via an F 270 -X-X-X-F 274 -X-X-X-F- 278 motif. CK1 can phosphorylate FAM83H in vitro, and many phosphorylation sites were identified in the FAM83H C-terminus. Truncation of FAM83H alters its subcellular localization and that of CK1. Our results support the conclusion that FAM83H is not necessary for proper dental enamel formation in mice, but may act as a scaffold protein that localizes CK1. ADHCAI is likely caused by gain-of-function effects mediated by truncated FAM83H, which potentially mislocalizes CK1 as part of its pathological mechanism. ? 2015 The Authors.
SDGs

[SDGs]SDG3

Publisher
Wiley-Blackwell
Type
journal article

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