FAM83H and casein kinase I regulate the organization of the keratin cytoskeleton and formation of desmosomes

被引:0
|
作者
Takahisa Kuga
Mitsuho Sasaki
Toshinari Mikami
Yasuo Miake
Jun Adachi
Maiko Shimizu
Youhei Saito
Minako Koura
Yasunori Takeda
Junichiro Matsuda
Takeshi Tomonaga
Yuji Nakayama
机构
[1] Kyoto Pharmaceutical University,Department of Biochemistry & Molecular Biology
[2] Laboratory of Animal Models for Human Diseases,Division of Anatomical and Cellular Pathology, Department of Pathology
[3] National Institutes of Biomedical Innovation,Department of Histology and Developmental Biology
[4] Health and Nutrition,undefined
[5] Iwate Medical University,undefined
[6] Tokyo Dental College,undefined
[7] Laboratory of Proteome Research,undefined
[8] National Institutes of Biomedical Innovation,undefined
[9] Health and Nutrition,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
FAM83H is essential for the formation of dental enamel because a mutation in the FAM83H gene causes amelogenesis imperfecta (AI). We previously reported that the overexpression of FAM83H often occurs and disorganizes the keratin cytoskeleton in colorectal cancer cells. We herein show that FAM83H regulates the organization of the keratin cytoskeleton and maintains the formation of desmosomes in ameloblastoma cells. FAM83H is expressed and localized on keratin filaments in human ameloblastoma cell lines and in mouse ameloblasts and epidermal germinative cells in vivo. FAM83H shows preferential localization to keratin filaments around the nucleus that often extend to cell-cell junctions. Alterations in the function of FAM83H by its overexpression, knockdown, or an AI-causing truncated mutant prevent the proper organization of the keratin cytoskeleton in ameloblastoma cells. Furthermore, the AI-causing mutant prevents desmosomal proteins from being localized to cell-cell junctions. The effects of the AI-causing mutant depend on its binding to and possible inhibition of casein kinase I (CK-1). The suppression of CK-1 by its inhibitor, D4476, disorganizes the keratin cytoskeleton. Our results suggest that AI caused by the FAM83H mutation is mediated by the disorganization of the keratin cytoskeleton and subsequent disruption of desmosomes in ameloblasts.
引用
收藏
相关论文
共 9 条
  • [1] FAM83H and casein kinase I regulate the organization of the keratin cytoskeleton and formation of desmosomes
    Kuga, Takahisa
    Sasaki, Mitsuho
    Mikami, Toshinari
    Miake, Yasuo
    Adachi, Jun
    Shimizu, Maiko
    Saito, Youhei
    Koura, Minako
    Takeda, Yasunori
    Matsuda, Junichiro
    Tomonaga, Takeshi
    Nakayama, Yuji
    SCIENTIFIC REPORTS, 2016, 6
  • [2] A novel mechanism of keratin cytoskeleton organization through casein kinase Iα and FAM83H in colorectal cancer
    Kuga, Takahisa
    Kume, Hideaki
    Kawasaki, Naoko
    Sato, Misako
    Adachi, Jun
    Shiromizu, Takashi
    Hoshino, Isamu
    Nishimori, Takanori
    Matsubara, Hisahiro
    Tomonaga, Takeshi
    JOURNAL OF CELL SCIENCE, 2013, 126 (20) : 4721 - 4731
  • [3] FAM83H regulates organization of the keratin cytoskeleton in colorectal cancer cells.
    Kuga, T.
    Saito, Y.
    Yamagishi, N.
    Tomonaga, T.
    Nakayama, Y.
    MOLECULAR BIOLOGY OF THE CELL, 2014, 25
  • [4] The conserved C-terminal residues of FAM83H are required for the recruitment of casein kinase 1 to the keratin cytoskeleton
    Takahisa Kuga
    Naoki Inoue
    Kensuke Sometani
    Shino Murataka
    Minami Saraya
    Rina Sugita
    Toshinari Mikami
    Yasunori Takeda
    Masanari Taniguchi
    Kentaro Nishida
    Nobuyuki Yamagishi
    Scientific Reports, 12
  • [5] The conserved C-terminal residues of FAM83H are required for the recruitment of casein kinase 1 to the keratin cytoskeleton
    Kuga, Takahisa
    Inoue, Naoki
    Sometani, Kensuke
    Murataka, Shino
    Saraya, Minami
    Sugita, Rina
    Mikami, Toshinari
    Takeda, Yasunori
    Taniguchi, Masanari
    Nishida, Kentaro
    Yamagishi, Nobuyuki
    SCIENTIFIC REPORTS, 2022, 12 (01)
  • [6] Casein kinase 1 is recruited to nuclear speckles by FAM83H and SON
    Takahisa Kuga
    Hideaki Kume
    Jun Adachi
    Naoko Kawasaki
    Maiko Shimizu
    Isamu Hoshino
    Hisahiro Matsubara
    Youhei Saito
    Yuji Nakayama
    Takeshi Tomonaga
    Scientific Reports, 6
  • [7] Casein kinase 1 is recruited to nuclear speckles by FAM83H and SON
    Kuga, Takahisa
    Kume, Hideaki
    Adachi, Jun
    Kawasaki, Naoko
    Shimizu, Maiko
    Hoshino, Isamu
    Matsubara, Hisahiro
    Saito, Youhei
    Nakayama, Yuji
    Tomonaga, Takeshi
    SCIENTIFIC REPORTS, 2016, 6
  • [8] Effects of Fam83h overexpression on enamel and dentine formation
    Kueon, Young-Sun
    Lee, Kyung-Eun
    Ko, Jiyeon
    Hu, Jan C. -C.
    Simmer, James P.
    Kim, Jung-Wook
    ARCHIVES OF ORAL BIOLOGY, 2013, 58 (09) : 1148 - 1154
  • [9] Loss of FAM83H promotes cell migration and invasion in cutaneous squamous cell carcinoma via impaired keratin distribution
    Tokuchi, Keiko
    Kitamura, Shinya
    Maeda, Takuya
    Watanabe, Masashi
    Hatakeyama, Shigetsugu
    Kano, Satoshi
    Tanaka, Shinya
    Ujiie, Hideyuki
    Yanagi, Teruki
    JOURNAL OF DERMATOLOGICAL SCIENCE, 2021, 104 (02) : 112 - 121