Mutation of a Nopp140 gene dao-5 alters rDNA transcription and increases germ cell apoptosis in C. elegans
Human diseases of impaired ribosome biogenesis resulting from disruption of rRNA biosynthesis or loss of ribosomal components are collectively described as ‘ribosomopathies’. Treacher Collins syndrome (TCS), a representative human ribosomopathy with craniofacial abnormalities, is attributed to mutat...
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Veröffentlicht in: | Cell death & disease 2014-04, Vol.5 (4), p.e1158-e1158 |
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Zusammenfassung: | Human diseases of impaired ribosome biogenesis resulting from disruption of rRNA biosynthesis or loss of ribosomal components are collectively described as ‘ribosomopathies’. Treacher Collins syndrome (TCS), a representative human ribosomopathy with craniofacial abnormalities, is attributed to mutations in the
tcof1
gene that has a homologous gene called
nopp140
. Previous studies demonstrated that the
dao-5
(
dauer and aged animal overexpression gene 5
) of
Caenorhabditis elegans
is a member of
nopp140
gene family and plays a role in nucleogenesis in the early embryo. Here, we established a
C. elegans
model for studying Nopp140-associated ribosomopathy. A null
dao-5
mutant
ok542
with a semi-infertile phenotype showed a delay in gonadogenesis, as well as a higher incidence of germline apoptosis. These phenotypes in
dao-5
(
ok542
) are likely resulted from inefficient rDNA transcription that was observed by run-on analyses and chromatin immunoprecipitation (ChIP) assays measuring the RNA Pol I occupancy on the rDNA promoter. ChIP assays further showed that the modifications of acetylated histone 4 (H4Ac) and dimethylation at the lysine 9 of histone 3 (H3K9me2) around the rDNA promoter were altered in
dao-5
mutants compared with the N2 wild type. In addition, activated CEP-1 (a
C. elegans
p53 homolog) activity was also linked to the loss of DAO-5 in terms of the transcriptional upregulation of two CEP-1 downstream effectors, EGL-1 and CED-13. We propose that the
dao-5
mutant of
C. elegans
can be a valuable model for studying human Nopp140-associated ribosomopathy at the cellular and molecular levels. |
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ISSN: | 2041-4889 2041-4889 |
DOI: | 10.1038/cddis.2014.114 |