Characterization of genetic loss-of-function of Fus in zebrafish

被引:18
|
作者
Lebedeva, Svetlana [1 ]
Domingues, Antonio M. de Jesus [1 ]
Butter, Falk [1 ]
Ketting, Rene F. [1 ]
机构
[1] Inst Mol Biol, Mainz, Germany
关键词
CRISPR-Cas9; Danio rerio; Fus; genetic knockout; morpholino; zebrafish; MOTOR-NEURON DEGENERATION; WILD-TYPE; TOXIC GAIN; ALS; PROTEINS; FUS/TLS; BINDING; MUTATIONS; TDP-43; DEFICIENCY;
D O I
10.1080/15476286.2016.1256532
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The RNA-binding protein FUS is implicated in transcription, alternative splicing of neuronal genes and DNA repair. Mutations in FUS have been linked to human neurodegenerative diseases such as ALS (amyotrophic lateral sclerosis). We genetically disrupted fus in zebrafish (Danio rerio) using the CRISPR-Cas9 system. The fus knockout animals are fertile and did not show any distinctive phenotype. Mutation of fus induces mild changes in gene expression on the transcriptome and proteome level in the adult brain. We observed a significant influence of genetic background on gene expression and 3UTR usage, which could mask the effects of loss of Fus. Unlike published fus morphants, maternal zygotic fus mutants do not show motoneuronal degeneration and exhibit normal locomotor activity.
引用
收藏
页码:29 / 35
页数:7
相关论文
共 50 条
  • [21] Drought adaptation in Arabidopsis thaliana by extensive genetic loss-of-function
    Monroe, J. Grey
    Powell, Tyler
    Price, Nicholas
    Mullen, Jack L.
    Howard, Anne
    Evans, Kyle
    Lovell, John T.
    McKay, John K.
    ELIFE, 2018, 7
  • [22] Loss-of-function variants
    Orli Bahcall
    Nature Genetics, 2012, 44 (4) : 368 - 368
  • [23] From transcriptomic to protein level changes in TDP-43 and FUS loss-of-function cell models
    Colombrita, Claudia
    Onesto, Elisa
    Buratti, Emanuele
    de la Grange, Pierre
    Gumina, Valentina
    Baralle, Francisco E.
    Silani, Vincenzo
    Ratti, Antonia
    BIOCHIMICA ET BIOPHYSICA ACTA-GENE REGULATORY MECHANISMS, 2015, 1849 (12): : 1398 - 1410
  • [24] Phenotyping Young GluA1 Deficient Mice - A Behavioral Characterization in a Genetic Loss-of-Function Model
    Reiber, Maria
    Stirling, Helen
    Sprengel, Rolf
    Gass, Peter
    Palme, Rupert
    Potschka, Heidrun
    FRONTIERS IN BEHAVIORAL NEUROSCIENCE, 2022, 16
  • [25] Clinical, Radiological, and Genetic Characterization of a Patient with a Novel Homoallelic Loss-of-Function Variant in DNM1
    AlTassan, Ruqaiah
    AlQudairy, Hanan
    Alromayan, Rakan
    Alfalah, Abdullah
    AlHarbi, Omar A.
    Gonzalez-Alvarez, Ana C.
    Arold, Stefan T.
    Kaya, Namik
    GENES, 2022, 13 (12)
  • [26] Characterization of human CYP2G genes:: widespread loss-of-function mutations and genetic polymorphism
    Sheng, JJ
    Guo, JC
    Hua, ZC
    Caggana, M
    Ding, XX
    PHARMACOGENETICS, 2000, 10 (08): : 667 - 678
  • [27] Clinical, radiological, and genetic characterization of a patient with a novel homoallelic loss-of-function variant in DNM1
    AlQudairy, Hanan
    AlTassan, Ruqaiah
    Alromayan, Rakan
    Alfalah, Abdullah
    AlHarbi, Omar
    Gonzalez-Alvarez, Ana
    Arold, Stefan T.
    Kaya, Namik
    EUROPEAN JOURNAL OF HUMAN GENETICS, 2024, 32 : 206 - 206
  • [28] A nop56 Zebrafish Loss-of-Function Model Exhibits a Severe Neurodegenerative Phenotype
    Quelle-Regaldie, Ana
    Folgueira, Monica
    Yanez, Julian
    Sobrido-Camean, Daniel
    Alba-Gonzalez, Anabel
    Barreiro-Iglesias, Anton
    Sobrido, Maria-Jesus
    Sanchez, Laura
    BIOMEDICINES, 2022, 10 (08)
  • [29] Genome-edited zebrafish model of ABCC8 loss-of-function disease
    Ikle, Jennifer M.
    Tryon, Robert C.
    Singareddy, Soma S.
    York, Nathaniel W.
    Remedi, Maria S.
    Nichols, Colin G.
    ISLETS, 2022, 14 (01) : 200 - 209
  • [30] FUS loss of function pathomechanism in FTLD
    Mackenzie, Ian R. A.
    DEMENTIA AND GERIATRIC COGNITIVE DISORDERS, 2012, 33 : 2 - 2