4.8 Article

Loss of MACF1 Abolishes Ciliogenesis and Disrupts Apicobasal Polarity Establishment in the Retina

Journal

CELL REPORTS
Volume 17, Issue 5, Pages 1399-1413

Publisher

CELL PRESS
DOI: 10.1016/j.celrep.2016.09.089

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Funding

  1. NEI/NIH [ZIA-EY000490]
  2. NICHD/NIH
  3. NIDCD/NIH (Advanced Imaging Core Facility Code) [ZIC DC000081]
  4. BBSRC [BBS/E/R/00001614, BBS/E/D/20221657, BB/F024347/1] Funding Source: UKRI
  5. Biotechnology and Biological Sciences Research Council [1513235, BBS/E/R/00001614, BB/F024347/1, BBS/E/D/20221657] Funding Source: researchfish

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Microtubule actin crosslinking factor 1 (MACF1) plays a role in the coordination of microtubules and actin in multiple cellular processes. Here, we show that MACF1 is also critical for ciliogenesis in multiple cell types. Ablation of Macf1 in the developing retina abolishes ciliogenesis, and basal bodies fail to dock to ciliary vesicles or migrate apically. Photoreceptor polarity is randomized, while inner retinal cells laminate correctly, suggesting that photoreceptor maturation is guided by polarity cues provided by cilia. Deletion of MACF1 in adult photoreceptors causes reversal of basal body docking and loss of outer segments, reflecting a continuous requirement for MACF1 function. MACF1 also interacts with the ciliary proteins MKKS and TALPID3. We propose that a disruption of trafficking across microtubles to actin filaments underlies the ciliogenesis defect in cells lacking MACF1 and that MKKS and TALPID3 are involved in the coordination of microtubule and actin interactions.

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