Literature DB >> 26715742

CAMSAP3 orients the apical-to-basal polarity of microtubule arrays in epithelial cells.

Mika Toya1, Saeko Kobayashi1, Miwa Kawasaki1, Go Shioi2, Mari Kaneko3, Takashi Ishiuchi1, Kazuyo Misaki4, Wenxiang Meng1, Masatoshi Takeichi5.   

Abstract

Polarized epithelial cells exhibit a characteristic array of microtubules that are oriented along the apicobasal axis of the cells. The minus-ends of these microtubules face apically, and the plus-ends face toward the basal side. The mechanisms underlying this epithelial-specific microtubule assembly remain unresolved, however. Here, using mouse intestinal cells and human Caco-2 cells, we show that the microtubule minus-end binding protein CAMSAP3 (calmodulin-regulated-spectrin-associated protein 3) plays a pivotal role in orienting the apical-to-basal polarity of microtubules in epithelial cells. In these cells, CAMSAP3 accumulated at the apical cortices, and tethered the longitudinal microtubules to these sites. Camsap3 mutation or depletion resulted in a random orientation of these microtubules; concomitantly, the stereotypic positioning of the nucleus and Golgi apparatus was perturbed. In contrast, the integrity of the plasma membrane was hardly affected, although its structural stability was decreased. Further analysis revealed that the CC1 domain of CAMSAP3 is crucial for its apical localization, and that forced mislocalization of CAMSAP3 disturbs the epithelial architecture. These findings demonstrate that apically localized CAMSAP3 determines the proper orientation of microtubules, and in turn that of organelles, in mature mammalian epithelial cells.

Entities:  

Keywords:  CAMSAP; Nezha; intestinal epithelial cell; microtubule assembly; microtubule minus-end

Mesh:

Substances:

Year:  2015        PMID: 26715742      PMCID: PMC4720291          DOI: 10.1073/pnas.1520638113

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  37 in total

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