DONSON, a gene responsible for microcephalic primordial dwarfism, ensures proper centriole duplication cycle by maintaining centriole engagement during interphase.
Matsuhashi, K.; Watanabe, K.; Ito, K. K.; Chinen, T.; Hata, S.; Stewart, G. S.; Kitagawa, D.
Show abstract
Microcephalic primordial dwarfism (MPD) is a genetic disorder characterized by short stature and microcephaly. MPD-related genes are known to regulate centrosome biogenesis, DNA replication or the DNA damage response. Although some of the MPD-related proteins that are implicated in DNA replication localize to centrosomes, how these proteins affect centrosome biogenesis remains mostly elusive. Here, we revisit the potential function of these DNA replication mediators in human centrosome biogenesis. Among these proteins, depletion of DONSON leads to excessive number of centrosomes in interphase, caused by precocious centriole disengagement. Such disengaged centrioles are converted to centrosomes, followed by centriole reduplication during interphase. These extra centrosomes lead to abnormal spindle formation and chromosome segregation errors. Importantly, similar defects are observed in MPD patients cells with DONSON mutations, suggesting a possible cause of the disease. Overall, these results indicate that DONSON is involved in regulating the centriole duplication cycle by ensuring the maintenance of centriole engagement during interphase.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Cep57 and Cep57L1 cooperatively maintain centriole engagement during interphase to ensure proper centriole duplication cycle 98%
- Centriole and PCM cooperatively recruit CEP192 to spindle poles to promote bipolar spindle assembly 97%
- Microtubule-associated proteins promote microtubule generation in the absence of γ-tubulin in human colon cancer cells 96%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- PLK1 controls centriole distal appendage formation and centrobin removal via independent pathways 97%
- Cep57 and Cep57l1 cooperate to recruit the Cep63-Cep152 complex for centriole biogenesis 97%
- Overexpression of Mdm36 reveals Num1 foci that mediate dynein-dependent microtubule sliding in budding yeast 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.