Dual-color live imaging unveils stepwise organization of multiple basal body arrays by cytoskeletons

Author:

Shiratsuchi Gen,Konishi SatoshiORCID,Yano Tomoki,Yanagihashi Yuichi,Nakayama ShogoORCID,Katsuno TatsuyaORCID,Kashihara Hiroka,Tanaka Hiroo,Tsukita KazutoORCID,Suzuki KoyaORCID,Herawati ElisaORCID,Watanabe Hitomi,Hirai Toyohiro,Yagi Takeshi,Kondoh Gen,Gotoh ShimpeiORCID,Tamura Atsushi,Tsukita SachikoORCID

Abstract

AbstractFor mucociliary clearance of pathogens, tracheal multiciliated epithelial cells (MCCs) organize coordinated beating of cilia, which originate from basal bodies (BBs) with basal feet (BFs) on one side. To clarify the self-organizing mechanism of coordinated intracellular BB-arrays composed of a well-ordered BB-alignment and unidirectional BB-orientation, determined by the direction of BB to BF, we generated double transgenic mice with GFP-centrin2-labeled BBs and mRuby3-Cep128-labeled BFs for long-term, high-resolution, dual-color live-cell imaging in primary-cultured tracheal MCCs. At early timepoints of MCC differentiation, BB-orientation and BB-local alignment antecedently coordinated in an apical microtubule-dependent manner. Later during MCC differentiation, fluctuations in BB-orientation were restricted, and locally aligned BB-arrays were further coordinated to align across the entire cell (BB-global alignment), mainly in an apical intermediate-sized filament-lattice-dependent manner. Thus, the high coordination of the BB-array was established for efficient mucociliary clearance as the primary defense against pathogen infection, identifying apical cytoskeletons as potential therapeutic targets.

Funder

MEXT | Japan Society for the Promotion of Science

MEXT | Japan Science and Technology Agency

Takeda Science Foundation

Kobayashi International Scholarship Foundation

KOSE Cosmetology Research Foundation

Publisher

Springer Science and Business Media LLC

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