Centriole elimination during Caenorhabditis elegans oogenesis initiates with loss of the central tube protein SAS-1
In most metazoans, centrioles are lost during oogenesis, ensuring that the zygote is endowed with the correct number of two centrioles, which are paternally contributed. How centriole architecture is dismantled during oogenesis is not understood. Here, we analyze with unprecedent detail the ultrastructural and molecular changes during oogenesis centriole elimination in Caenorhabditis elegans. Centriole elimination begins with loss of the so-called central tube and organelle widening, followed by microtubule disassembly. The resulting cluster of centriolar proteins then disappears gradually, usually moving in a microtubule- and dynein-dependent manner to the plasma membrane. Our analysis indicates that neither Polo-like kinases nor the PCM, which modulate oogenesis centriole elimination in Drosophila, do so in C. elegans. Furthermore, we demonstrate that the central tube protein SAS-1 normally departs initially from the organelle, which loses integrity earlier in sas-1 mutants. Overall, our work provides novel mechanistic insights regarding the fundamental process of oogenesis centriole elimination.
WOS:001107597400001
2023-11-21
42
24
REVIEWED
Funder | Grant Number |
NIH Office of Research Infrastructure Programs | P40 OD010440 |
EMBO | ALTF 1426-2016 |
European Union | MCSA-IF 588594 |
DFG | MI1867/1-3 |
Novartis Foundation for Medical-Biological Research | 18C186 |
Swiss National Science Foundation | 310030_197749 |