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PMID: 21273289 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Impairment of the tRNA-splicing endonuclease subunit 54 (tsen54) gene causes neurological abnormalities and larval death in zebrafish models of pontocerebellar hypoplasia.

Human molecular genetics ·Vol. 20 ·No. 8 ·2011-04-15 ·Pages 1574-84

Kasher PR, Namavar Y, van Tijn P, Fluiter K, Sizarov A, Kamermans M, Grierson AJ, Zivkovic D, Baas F

Abstract

Pontocerebellar hypoplasia (PCH) represents a group (PCH1-6) of neurodegenerative autosomal recessive disorders characterized by hypoplasia and/or atrophy of the cerebellum, hypoplasia of the ventral pons, progressive microcephaly and variable neocortical atrophy. The majority of PCH2 and PCH4 cases are caused by mutations in the TSEN54 gene; one of the four subunits comprising the tRNA-splicing endonuclease (TSEN) complex. We hypothesized that TSEN54 mutations act through a loss of function mechanism. At 8 weeks of gestation, human TSEN54 is expressed ubiquitously in the brain, yet strong expression is seen within the telencephalon and metencephalon. Comparable expression patterns for tsen54 are observed in zebrafish embryos. Morpholino (MO) knockdown of tsen54 in zebrafish embryos results in loss of structural definition in the brain. This phenotype was partially rescued by co-injecting the MO with human TSEN54 mRNA. A developmental patterning defect was not associated with tsen54 knockdown; however, an increase in cell death within the brain was observed, thus bearing resemblance to PCH pathophysiology. Additionally, N-methyl-N-nitrosourea mutant zebrafish homozygous for a tsen54 premature stop-codon mutation die within 9 days post-fertilization. To determine whether a common disease pathway exists between TSEN54 and other PCH-related genes, we also monitored the effects of mitochondrial arginyl-tRNA synthetase (rars2; PCH1 and PCH6) knockdown in zebrafish. Comparable brain phenotypes were observed following the inhibition of both genes. These data strongly support the hypothesis that TSEN54 mutations cause PCH through a loss of function mechanism. Also we suggest that a common disease pathway may exist between TSEN54- and RARS2-related PCH, which may involve a tRNA processing-related mechanism.

MeSH Terms
Animals Arginine-tRNA Ligase/genetics Base Sequence Body Patterning/genetics Brain/abnormalities,embryology,metabolism Cell Death/genetics Endoribonucleases/genetics,metabolism Fibroblast Growth Factors/genetics Gene Silencing Humans In Situ Hybridization Larva/growth & development Olivopontocerebellar Atrophies/genetics Otx Transcription Factors/genetics Phenotype Transcription, Genetic Zebrafish/embryology,genetics,growth & development Zebrafish Proteins/genetics,metabolism
Chemicals
Otx Transcription Factors Zebrafish Proteins fgf8a protein, zebrafish otx2b protein, zebrafish Fibroblast Growth Factors Endoribonucleases TSEN54 protein, human TSEN54 protein, zebrafish Arginine-tRNA Ligase
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Kasher Paul R
Department of Genome Analysis, Academic Medical Center, Meibergdreef 9, 1105AZ Amsterdam, The Netherlands.
Namavar Yasmin
van Tijn Paula
Fluiter Kees
Sizarov Aleksander
Kamermans Maarten
Grierson Andrew J
Zivkovic Danica
Baas Frank
Article Info
Journal
Human molecular genetics
Abbr.
Hum Mol Genet
ISSN
1460-2083
Published
2011-04-15
Epub
2011-00-27
Pages
1574-84
Language
English
Region
England
NLM ID
9208958
Subset
IM
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