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Tubulin Monoglutamylation is Sufficient to Rescue the Ciliary Motility Defects in a Chlamydomonas Polyglutamylation Deficient Mutant

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Title
Tubulin Monoglutamylation is Sufficient to Rescue the Ciliary Motility Defects in a Chlamydomonas Polyglutamylation Deficient Mutant
Description
The axonemes of eukaryotic cilia and flagella display high tubulin glutamylation heterogeneity, yet the functional significance of this variation remains elusive. We previously showed that long-chain polyglutamylation is crucial for ciliary motility in Chlamydomonas. However, the respective contributions of long-chain polyglutamylation versus short-chain species to motility remain unclear, as existing mutants did not allow for a clear functional dissection of these two modification states. Here, we generated mutants deficient in deglutamylases, cytosolic carboxypeptidases (CCPs) 1, 2, and 5. Importantly, CCP5 is known to remove the branch-point glutamate residue, the final step in deglutamylation. While axonemal polyglutamylation levels remained largely unaffected in these mutants, abundance of short-chain glutamylation was significantly increased in both the axonemal and cytoplasmic microtubules of ccp5-1, consistent with CCP5’s role as a branch-point deglutamylase. Although each single mutant exhibited slightly reduced swimming velocity, the loss of CCP5 in the tpg1 background lacking long polyglutamate side chains resulted in a significant restoration of motility. These findings indicate that the abundance of short-chain species, regulated by CCP5, plays a distinct role in modulating ciliary motility, particularly in the absence of long polyglutamate side chains. This suggests that even minimal glutamylation can functionally support dynein-driven microtubule sliding.
Submission date
2026-04-22
Release date
2026-06-05
Update date
-
License
CC BY 4.0
Funding information
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716 files / 4.57 GiB
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6 files / 3.72 GiB

Papers
https://doi.org/10.64898/2026.04.09.717589
Sasaki, Rinka, Oda, Toshiyuki, Kubo, Tomohiro (2026/01/01), Tubulin Monoglutamylation is Sufficient to Rescue the Ciliary Motility Defects in a <em>Chlamydomonas</em> Polyglutamylation Deficient Mutant, bioRxiv, 2026.04.09.717589
https://doi.org/10.3389/fcell.2026.1857091 PMID: 42326015 PMCID: 13279043
Rinka Sasaki, Toshiyuki Oda, Tomohiro Kubo (2026) Tubulin monoglutamylation is sufficient to rescue the ciliary motility defects in a Chlamydomonas polyglutamylation deficient mutant., Frontiers in cell and developmental biology, Volume 14, pp. 1857091

Persons

Tomohiro Kubo
University of Yamanashi Medical School
Contact

Ontology terms

Organism
Chlamydomonas reinhardtii(NCBI:txid3055),
Strain
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Cell line
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Molecular function
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Biological process
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Cellular component
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Medical subject heading
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Biological imaging method
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