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De novo centriole formation in human cells is error-prone and does not require SAS-6 self-assembly

  • Won Jing Wang
  • , Devrim Acehan
  • , Chien Han Kao
  • , Wann Neng Jane
  • , Kunihiro Uryu
  • , Meng Fu Bryan Tsou
  • National Yang Ming Chiao Tung University
  • Academia Sinica - Institute of Plant and Microbial Biology
  • Rockefeller University
  • Memorial Sloan-Kettering Cancer Center

Research output: Contribution to journalArticlepeer-review

46 Scopus citations

Abstract

Vertebrate centrioles normally propagate through duplication, but in the absence of preexisting centrioles, de novo synthesis can occur. Consistently, centriole formation is thought to strictly rely on self-assembly, involving self-oligomerization of the centriolar protein SAS-6. Here, through reconstitution of de novo synthesis in human cells, we surprisingly found that normal looking centrioles capable of duplication and ciliation can arise in the absence of SAS-6 self- oligomerization. Moreover, whereas canonically duplicated centrioles always form correctly, de novo centrioles are prone to structural errors, even in the presence of SAS-6 self-oligomerization. These results indicate that centriole biogenesis does not strictly depend on SAS-6 self-assembly, and may require preexisting centrioles to ensure structural accuracy, fundamentally deviating from the current paradigm.

Original languageEnglish
Article numbere10586
JournaleLife
Volume4
Issue numberNOVEMBER2015
DOIs
StatePublished - Nov 26 2015

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