Mutations of family with sequence similarity 20‐member C gene causing lethal and nonlethal Raine syndrome causes hypophosphatemia rickets

Author:

Liu Peihong12,Li Jiaxuan1,Tang Linghao3,Cong Wei4,Jin Han5,Zhang Hong1,Cui Bing1,Yang Shan1,Xiao Jing4,Liu Chao4ORCID,Saiyin Wuliji1

Affiliation:

1. Department of Stomatology The First Affiliated Hospital of Harbin Medical University Harbin China

2. Laboratory of Longjiang Scholar, The First Affifiliated Hospital of Harbin Medical University Harbin China

3. Department of Otorhinolaryngology The First Affiliated Hospital of Dalian Medical University Dalian China

4. Department of Oral Pathology School of Stomatology Dalian Medical University Dalian China

5. Heilongjiang Provincial Key Laboratory of Hard Tissue Development and Regeneration, The Second Affiliated Hospital of Harbin Medical University Harbin China

Abstract

AbstractFamily with sequence similarity 20‐member C (FAM20C) is a kinase specific to most of the secreted phosphoproteome. FAM20C has been identified as the causative gene of Raine syndrome, initially characterized by lethal osteosclerosis bone dysplasia. However, since the identification of the cases of nonlethal Raine syndrome characterized by hypophosphatemia rickets, the previous definition of Raine syndrome has become debatable and raised a question about the role of mutations of FAM20C in controversial skeletal manifestation in the two forms of the disease. In this study, we aimed to investigate the influence of FAM20C mutations on skeletogenesis. We developed transgenic mice expressing Fam20c mutations mimicking those associated with human lethal and nonlethal Raine syndrome. The results revealed that transgenic mice expressing the mutant Fam20c found in the lethal (KO;G374R) and nonlethal (KO;D446N) Raine syndrome exhibited osteomalacia without osteosclerotic features. Additionally, both mutants significantly increased the expression of the Fgf23, indicating that Fam20c deficiency in skeletal compartments causes hypophosphatemia rickets. Furthermore, as FAM20C kinase activity catalyzes the phosphorylation of secreted proteomes other than those in the skeletal system, global FAM20C deficiency may trigger alterations in other systems resulting in osteosclerosis secondary to hypophosphatemia rickets. Together, the findings of this study suggest that FAM20C deficiency primarily causes hypophosphatemia rickets or osteomalacia; however, the heterogeneous skeletal manifestation in Raine syndrome was not determined solely by specific mutations of FAM20C. The findings also implicated that rickets or osteomalacia caused by FAM20C deficiency would deteriorate into osteosclerosis by the defects from other systems or environmental impacts.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Heilongjiang Province

Publisher

Wiley

Subject

Cell Biology,Clinical Biochemistry,Physiology

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