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High-resolution characterization of centriole distal appendage morphology and dynamics by correlative STORM and electron microscopy

Author

Listed:
  • Mathew Bowler

    (NIH/NCI/CCR
    NIH/NCI/CCR)

  • Dong Kong

    (NIH/NCI/CCR)

  • Shufeng Sun

    (New York State Department of Health)

  • Rashmi Nanjundappa

    (Washington University)

  • Lauren Evans

    (Johns Hopkins University School of Medicine)

  • Veronica Farmer

    (NIH/NCI/CCR
    Vanderbilt University School of Medicine)

  • Andrew Holland

    (Johns Hopkins University School of Medicine)

  • Moe R. Mahjoub

    (Washington University
    Washington University)

  • Haixin Sui

    (New York State Department of Health
    University of Albany)

  • Jadranka Loncarek

    (NIH/NCI/CCR)

Abstract

Centrioles are vital cellular structures that form centrosomes and cilia. The formation and function of cilia depends on a set of centriole’s distal appendages. In this study, we use correlative super resolution and electron microscopy to precisely determine where distal appendage proteins localize in relation to the centriole microtubules and appendage electron densities. Here we characterize a novel distal appendage protein ANKRD26 and detail, in high resolution, the initial steps of distal appendage assembly. We further show that distal appendages undergo a dramatic ultra-structural reorganization before mitosis, during which they temporarily lose outer components, while inner components maintain a nine-fold organization. Finally, using electron tomography we reveal that mammalian distal appendages associate with two centriole microtubule triplets via an elaborate filamentous base and that they appear as almost radial finger-like protrusions. Our findings challenge the traditional portrayal of mammalian distal appendage as a pinwheel-like structure that is maintained throughout mitosis.

Suggested Citation

  • Mathew Bowler & Dong Kong & Shufeng Sun & Rashmi Nanjundappa & Lauren Evans & Veronica Farmer & Andrew Holland & Moe R. Mahjoub & Haixin Sui & Jadranka Loncarek, 2019. "High-resolution characterization of centriole distal appendage morphology and dynamics by correlative STORM and electron microscopy," Nature Communications, Nature, vol. 10(1), pages 1-15, December.
  • Handle: RePEc:nat:natcom:v:10:y:2019:i:1:d:10.1038_s41467-018-08216-4
    DOI: 10.1038/s41467-018-08216-4
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    Cited by:

    1. Ting-Jui Ben Chang & Jimmy Ching-Cheng Hsu & T. Tony Yang, 2023. "Single-molecule localization microscopy reveals the ultrastructural constitution of distal appendages in expanded mammalian centrioles," Nature Communications, Nature, vol. 14(1), pages 1-15, December.

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