Abstract:
:The cilia and cell cycles are inextricably linked. Centrioles in the basal body of cilia nucleate the ciliary axoneme and sequester pericentriolar matrix (PCM) at the centrosome to organize the mitotic spindle. Cilia themselves respond to growth signals, prompting cilia resorption and cell cycle re-entry. We describe a fluorescent cilia and cell cycle biosensor allowing live imaging of cell cycle progression and cilia assembly and disassembly kinetics in cells and inducible mice. We define assembly and disassembly in relation to cell cycle stage with single-cell resolution and explore the intercellular heterogeneity in cilia kinetics. In all cells and tissues analyzed, we observed cilia that persist through the G1/S transition and into S/G2/M-phase. We conclude that persistence of cilia after the G1/S transition is a general property. This resource will shed light at an individual cell level on the interplay between the cilia and cell cycles in development, regeneration, and disease.
journal_name
Dev Celljournal_title
Developmental cellauthors
Ford MJ,Yeyati PL,Mali GR,Keighren MA,Waddell SH,Mjoseng HK,Douglas AT,Hall EA,Sakaue-Sawano A,Miyawaki A,Meehan RR,Boulter L,Jackson IJ,Mill P,Mort RLdoi
10.1016/j.devcel.2018.10.027subject
Has Abstractpub_date
2018-11-19 00:00:00pages
509-523.e5issue
4eissn
1534-5807issn
1878-1551pii
S1534-5807(18)30881-5journal_volume
47pub_type
杂志文章abstract::Signaling circuits often coordinate cellular membranes and actin filaments at distinct sites to direct cell behavior. In this issue of Developmental Cell, Bershteyn et al. outline how the molecular scaffold protein, MIM, which bends membranes and binds actin filaments, is at the middle of one such circuit to regulate ...
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