Knock-in human FGFR3 achondroplasia mutation as a mouse model for human skeletal dysplasia

被引:33
|
作者
Lee, Yi-Ching [1 ]
Song, I-Wen [2 ]
Pai, Ya-Ju [2 ]
Chen, Sheng-De [2 ]
Chen, Yuan-Tsong [2 ,3 ]
机构
[1] Acad Sinica, Inst Cellular & Organism Biol, Taipei 11529, Taiwan
[2] Acad Sinica, Inst Biomed Sci, Taipei 11529, Taiwan
[3] Duke Univ, Med Ctr, Dept Pediat, Durham, NC 27710 USA
来源
SCIENTIFIC REPORTS | 2017年 / 7卷
关键词
GROWTH-FACTOR RECEPTOR-3; GENE; EXPRESSION; RESCUES;
D O I
10.1038/srep43220
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Achondroplasia (ACH), the most common genetic dwarfism in human, is caused by a gain-of function mutation in fibroblast growth factor receptor 3 (FGFR3). Currently, there is no effective treatment for ACH. The development of an appropriate human-relevant model is important for testing potential therapeutic interventions before human clinical trials. Here, we have generated an ACH mouse model in which the endogenous mouse Fgfr3 gene was replaced with human FGFR3(G380R) (FGFR3(ACH)) cDNA, the most common mutation in human ACH. Heterozygous (FGFR3(ACH/+)) and homozygous (FGFR3(ACH/ACH)) mice expressing human FGFR3(G380R) recapitulate the phenotypes observed in ACH patients, including growth retardation, disproportionate shortening of the limbs, round head, mid-face hypoplasia at birth, and kyphosis progression during postnatal development. We also observed premature fusion of the cranial sutures and low bone density in newborn FGFR3(G380R) mice. The severity of the disease phenotypes corresponds to the copy number of activated FGFR3(G380R), and the phenotypes become more pronounced during postnatal skeletal development. This mouse model offers a tool for assessing potential therapeutic approaches for skeletal dysplasias related to over-activation of human FGFR3, and for further studies of the underlying molecular mechanisms.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Meclozine Promotes Longitudinal Skeletal Growth in Transgenic Mice with Achondroplasia Carrying a Gain-of-Function Mutation in the FGFR3 Gene
    Matsushita, Masaki
    Hasegawa, Satoru
    Kitoh, Hiroshi
    Mori, Kensaku
    Ohkawara, Bisei
    Yasoda, Akihiro
    Masuda, Akio
    Ishiguro, Naoki
    Ohno, Kinji
    ENDOCRINOLOGY, 2015, 156 (02) : 548 - 554
  • [22] Fibroblast growth receptor-3 (FGFR3) G375C mutation in a case of achondroplasia and thanatophoric dysplasia phenotypic overlap
    Barton, Christopher
    Sweeney, Elizabeth
    Roberts, Devender
    McPartland, Jo
    CLINICAL DYSMORPHOLOGY, 2010, 19 (03) : 146 - 149
  • [23] KNOCK-IN MOUSE MODEL OF DILATED CARDIOMYOPATHY CAUSED BY TROPONIN MUTATION
    Morimoto, Sachio
    JOURNAL OF PHYSIOLOGICAL SCIENCES, 2009, 59 : 26 - 26
  • [24] Knock-in mouse model of dilated cardiomyopathy caused by troponin mutation
    Du, Cheng-Kun
    Morimoto, Sachio
    Nishii, Kiyomasa
    Minakami, Reiko
    Ohta, Mika
    Tadano, Naoto
    Lu, Qun-Wei
    Wang, Yuan-Yuan
    Zhan, Dong-Yun
    Mochizuki, Misato
    Kita, Satomi
    Miwa, Yoshikazu
    Takahashi-Yanaga, Fumi
    Iwamoto, Takahiro
    Ohtsuki, Iwao
    Sasaguri, Toshiyuki
    CIRCULATION RESEARCH, 2007, 101 (02) : 185 - 194
  • [25] A human SIRPA knock-in xenograft mouse model to study human hematopoietic and cancer stem cells
    Jinnouchi, Fumiaki
    Yamauchi, Takuji
    Yurino, Ayano
    Nunomura, Takuya
    Nakano, Michitaka
    Iwamoto, Chika
    Obara, Teppei
    Miyawaki, Kohta
    Kikushige, Yoshikane
    Kato, Koji
    Maeda, Takahiro
    Miyamoto, Toshihiro
    Baba, Eishi
    Akashi, Koichi
    Takenaka, Katsuto
    BLOOD, 2020, 135 (19) : 1661 - 1672
  • [26] Molecular therapeutic strategies for FGFR3 gene-related skeletal dysplasia
    Jia Chen
    Jiaqi Liu
    Yangzhong Zhou
    Sen Liu
    Gang Liu
    Yuzhi Zuo
    Zhihong Wu
    Nan Wu
    Guixing Qiu
    Journal of Molecular Medicine, 2017, 95 : 1303 - 1313
  • [27] Prenatal diagnosis of skeletal dysplasia due to FGFR3 gene mutations: a 9-year experiencePrenatal diagnosis in FGFR3 gene
    M. J. Trujillo-Tiebas
    M. Fenollar-Cortés
    I. Lorda-Sánchez
    J. Díaz-Recasens
    A. Carrillo Redondo
    C. Ramos-Corrales
    C. Ayuso
    Journal of Assisted Reproduction and Genetics, 2009, 26 : 455 - 460
  • [28] Applications of the human p53 knock-in (Hupki) mouse model for human carcinogen testing
    Besaratinia, Ahmad
    Pfeifer, Gerd P.
    FASEB JOURNAL, 2010, 24 (08): : 2612 - 2619
  • [29] Molecular therapeutic strategies for FGFR3 gene-related skeletal dysplasia
    Chen, Jia
    Liu, Jiaqi
    Zhou, Yangzhong
    Liu, Sen
    Liu, Gang
    Zuo, Yuzhi
    Wu, Zhihong
    Wu, Nan
    Qiu, Guixing
    JOURNAL OF MOLECULAR MEDICINE-JMM, 2017, 95 (12): : 1303 - 1313
  • [30] A novel mutation Ser344Cys in FGFR3 causes achondroplasia with severe platyspondyly
    Takagi, Masaki
    Kouwaki, Masanori
    Kawase, Koya
    Shinohara, Hiroyuki
    Hasegawa, Yukihiro
    Yamada, Takahiro
    Fujiwara, Ikuma
    Sawai, Hideaki
    Nishimura, Gen
    Hasegawa, Tomonobu
    AMERICAN JOURNAL OF MEDICAL GENETICS PART A, 2015, 167 (11) : 2851 - 2854