Mutant Prpf31 causes pre-mRNA splicing defects and rod photoreceptor cell degeneration in a zebrafish model for Retinitis pigmentosa

被引:37
作者
Yin, Jun [1 ,3 ]
Brocher, Jan [1 ,4 ]
Fischer, Utz [2 ]
Winkler, Christoph [1 ]
机构
[1] Natl Univ Singapore, Dept Biol Sci, Singapore 117543, Singapore
[2] Univ Wurzburg, Bioctr, Dept Biochem, D-97074 Wurzburg, Germany
[3] Univ Calif Davis, Sch Med, Dept Biochem & Mol Med, Davis, CA 95616 USA
[4] Orthopaed Univ Hosp Heidelberg, Div Expt Orthopaed, D-69115 Heidelberg, Germany
关键词
Retinitis pigmentosa (RP); PRPF31; AD5; mutation; SP117; haploinsufficiency; dominant-negative; rod degeneration; apoptosis; splicing defect; HOMEOBOX GENE; TRI-SNRNP; MUTATIONS; EXPRESSION; PROTEIN; RP11; PHOTOTRANSDUCTION; TRANSCRIPTION; ASSOCIATION; FAMILIES;
D O I
10.1186/1750-1326-6-56
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Background: Retinitis pigmentosa (RP) is an inherited eye disease characterized by the progressive degeneration of rod photoreceptor cells. Mutations in pre-mRNA splicing factors including PRPF31 have been identified as cause for RP, raising the question how mutations in general factors lead to tissue specific defects. Results: We have recently shown that the zebrafish serves as an excellent model allowing the recapitulation of key events of RP. Here we use this model to investigate two pathogenic mutations in PRPF31, SP117 and AD5, causing the autosomal dominant form of RP. We show that SP117 leads to an unstable protein that is mislocalized to the rod cytoplasm. Importantly, its overexpression does not result in photoreceptor degeneration suggesting haploinsufficiency as the underlying cause in human RP patients carrying SP117. In contrast, overexpression of AD5 results in embryonic lethality, which can be rescued by wild-type Prpf31. Transgenic retina-specific expression of AD5 reveals that stable AD5 protein is initially localized in the nucleus but later found in the cytoplasm concurrent with progressing rod outer segment degeneration and apoptosis. Importantly, we show for the first time in vivo that retinal transcripts are wrongly spliced in adult transgenic retinas expressing AD5 and exhibiting increased apoptosis in rod photoreceptors. Conclusion: Our data suggest that distinct mutations in Prpf31 can lead to photoreceptor degeneration through different mechanisms, by haploinsufficiency or dominant-negative effects. Analyzing the AD5 effects in our animal model in vivo, our data imply that aberrant splicing of distinct retinal transcripts contributes to the observed retina defects.
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页数:17
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共 56 条
  • [1] NMD: RNA biology meets human genetic medicine
    Bhuvanagiri, Madhuri
    Schlitter, Anna M.
    Hentze, Matthias W.
    Kulozik, Andreas E.
    [J]. BIOCHEMICAL JOURNAL, 2010, 430 : 365 - 377
  • [2] Genetics of photoreceptor degeneration and regeneration in zebrafish
    Brockerhoff, Susan E.
    Fadool, James M.
    [J]. CELLULAR AND MOLECULAR LIFE SCIENCES, 2011, 68 (04) : 651 - 659
  • [3] Study of Gene-Targeted Mouse Models of Splicing Factor Gene Prpf31 Implicated in Human Autosomal Dominant Retinitis Pigmentosa (RP)
    Bujakowska, Kinga
    Maubaret, Cecilia
    Chakarova, Christina F.
    Tanimoto, Naoyuki
    Beck, Susanne C.
    Fahl, Edda
    Humphries, Marian M.
    Kenna, Paul F.
    Makarov, Evgeny
    Makarova, Olga
    Paquet-Durand, Francois
    Ekstrom, Per A.
    van Veen, Theo
    Leveillard, Thierry
    Humphries, Peter
    Seeliger, Mathias W.
    Bhattacharya, Shomi S.
    [J]. INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2009, 50 (12) : 5927 - 5933
  • [4] Phototransduction in transgenic mice after targeted deletion of the rod transducin α-subunit
    Calvert, PD
    Krasnoperova, NV
    Lyubarsky, AL
    Isayama, T
    Nicoló, M
    Kosaras, B
    Wong, G
    Gannon, KS
    Margolskee, RF
    Sidman, RL
    Pugh, EN
    Makino, CL
    Lem, J
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (25) : 13913 - 13918
  • [5] Mutations in HPRP3, a third member of pre-mRNA splicing factor genes, implicated in autosomal dominant retinitis pigmentosa
    Chakarova, CF
    Hims, MM
    Bolz, H
    Abu-Safieh, L
    Patel, RJ
    Papaioannou, MG
    Inglehearn, CF
    Keen, TJ
    Willis, C
    Moore, AT
    Rosenberg, T
    Webster, AR
    Bird, AC
    Gal, A
    Hunt, D
    Vithana, EN
    Bhattacharya, SS
    [J]. HUMAN MOLECULAR GENETICS, 2002, 11 (01) : 87 - 92
  • [6] Disease mechanism for retinitis pigmentosa (RP11) caused by mutations in the splicing factor gene PRPF31
    Deery, EC
    Vithana, EN
    Newbold, RJ
    Gallon, VA
    Bhattacharya, SS
    Warren, MJ
    Hunt, DM
    Wilkie, SE
    [J]. HUMAN MOLECULAR GENETICS, 2002, 11 (25) : 3209 - 3219
  • [7] Development of a rod photoreceptor mosaic revealed in transgenic zebrafish
    Fadool, JM
    [J]. DEVELOPMENTAL BIOLOGY, 2003, 258 (02) : 277 - 290
  • [8] Two trans-acting eQTLs modulate the penetrance of PRPF31 mutations
    Frio, Thomas Rio
    Civic, Natacha
    Ransijn, Adriana
    Beckmann, Jacques S.
    Rivolta, Carlo
    [J]. HUMAN MOLECULAR GENETICS, 2008, 17 (20) : 3154 - 3165
  • [9] Nonsense-mediated mRNA decay in health and disease
    Frischmeyer, PA
    Dietz, HC
    [J]. HUMAN MOLECULAR GENETICS, 1999, 8 (10) : 1893 - 1900
  • [10] Retinopathy and attenuated circadian entrainment in Crx-deficient mice
    Furukawa, T
    Morrow, EM
    Li, TS
    Davis, FC
    Cepko, CL
    [J]. NATURE GENETICS, 1999, 23 (04) : 466 - 470