Myopia disease mouse models: a missense point mutation (S673G) and a protein-truncating mutation of the Zfp644 mimic human disease phenotype

被引:0
|
作者
Katarzyna I. Szczerkowska
Silvia Petrezselyova
Jiri Lindovsky
Marcela Palkova
Jan Dvorak
Peter Makovicky
Mingyan Fang
Chongyi Jiang
Lingyan Chen
Mingming Shi
Xiao Liu
Jianguo Zhang
Agnieszka Kubik-Zahorodna
Bjoern Schuster
Inken M. Beck
Vendula Novosadova
Jan Prochazka
Radislav Sedlacek
机构
[1] Institute of Molecular Genetics CAS,Laboratory of Transgenic Models of Diseases
[2] Institute of Molecular Genetics CAS,Czech Centre for Phenogenomics
[3] Karolinska Institutet at Karolinska University Hospital Huddinge,Division of Clinical Immunology, Department of Laboratory Medicine
[4] BGI-Shenzhen,China National GeneBank
[5] BGI-Shenzhen,Animal Research Center
[6] Ulm University,undefined
来源
关键词
Myopia; Mouse model; Genetics; Zinc finger 644; Vision; Eye;
D O I
暂无
中图分类号
学科分类号
摘要
Zinc finger 644 (Zfp644 in mouse, ZNF644 in human) gene is a transcription factor whose mutation S672G is considered a potential genetic factor of inherited high myopia. ZNF644 interacts with G9a/GLP complex, which functions as a H3K9 methyltransferase to silence transcription. In this study, we generated mouse models to unravel the mechanisms leading to symptoms associated with high myopia. Employing TALEN technology, two mice mutants were generated, either with the disease-carrying mutation (Zfp644S673G) or with a truncated form of Zfp644 (Zfp644Δ8). Eye morphology and visual functions were analysed in both mutants, revealing a significant difference in a vitreous chamber depth and lens diameter, however the physiological function of retina was preserved as found under the high-myopia conditions. Our findings prove that ZNF644/Zfp644 is involved in the development of high-myopia, indicating that mutations such as, Zfp644S673G and Zfp644Δ8 are causative for changes connected with the disease. The developed models represent a valuable tool to investigate the molecular basis of myopia pathogenesis and its potential treatment.
引用
收藏
相关论文
共 5 条
  • [1] Myopia disease mouse models: a missense point mutation (S673G) and a protein-truncating mutation of the Zfp644 mimic human disease phenotype
    Szczerkowska, Katarzyna I.
    Petrezselyova, Silvia
    Lindovsky, Jiri
    Palkova, Marcela
    Dvorak, Jan
    Makovicky, Peter
    Fang, Mingyan
    Jiang, Chongyi
    Chen, Lingyan
    Shi, Mingming
    Liu, Xiao
    Zhang, Jianguo
    Kubik-Zahorodna, Agnieszka
    Schuster, Bjoern
    Beck, Inken M.
    Novosadova, Vendula
    Prochazka, Jan
    Sedlacek, Radislav
    CELL AND BIOSCIENCE, 2019, 9 (1):
  • [2] Calcineurin inhibitors cause an acceleration of the neurological phenotype in a mouse transgenic for the human Huntington's disease mutation
    Hernandez-Espinosa, David
    Morton, A. Jennifer
    BRAIN RESEARCH BULLETIN, 2006, 69 (06) : 669 - 679
  • [3] Brain Transcriptome Analysis of a Protein-Truncating Mutation in Sortilin-Related Receptor 1 Associated With Early-Onset Familial Alzheimer's Disease Indicates Early Effects on Mitochondrial and Ribosome Function
    Barthelson, Karissa
    Pederson, Stephen Martin
    Newman, Morgan
    Lardelli, Michael
    JOURNAL OF ALZHEIMERS DISEASE, 2021, 79 (03) : 1105 - 1119
  • [4] Presenilin 2 mutation accelerates the onset of impairment in trace eyeblink conditioning in a mouse model of Alzheimer's disease overexpressing human mutant amyloid precursor protein
    Kishimoto, Yasushi
    Kirino, Yutaka
    NEUROSCIENCE LETTERS, 2013, 538 : 15 - 19
  • [5] The Parkinson's disease VPS35[D620N] mutation enhances LRRK2-mediated Rab protein phosphorylation in mouse and human
    Mir, Rafeeq
    Tonelli, Francesca
    Lis, Pawel
    Macartney, Thomas
    Polinski, Nicole K.
    Martinez, Terina N.
    Chou, Meng-Yun
    Howden, Andrew J. M.
    Koenig, Theresa
    Hotzy, Christoph
    Milenkovic, Ivan
    Bruecke, Thomas
    Zimprich, Alexander
    Sammler, Esther
    Alessi, Dario R.
    BIOCHEMICAL JOURNAL, 2018, 475 : 1861 - 1883