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Aurora A depletion reveals centrosome-independent polarization mechanism in Caenorhabditis elegans.

Kerstin Klinkert | Nicolas Levernier | Peter Gross | Christian Gentili | Lukas von Tobel | Marie Pierron | Coralie Busso | Sarah Herrman | Stephan W Grill | Karsten Kruse | Pierre Gönczy
eLife | 2019

How living systems break symmetry in an organized manner is a fundamental question in biology. In wild-type Caenorhabditis elegans zygotes, symmetry breaking during anterior-posterior axis specification is guided by centrosomes, resulting in anterior-directed cortical flows and a single posterior PAR-2 domain. We uncover that C. elegans zygotes depleted of the Aurora A kinase AIR-1 or lacking centrosomes entirely usually establish two posterior PAR-2 domains, one at each pole. We demonstrate that AIR-1 prevents symmetry breaking early in the cell cycle, whereas centrosomal AIR-1 instructs polarity initiation thereafter. Using triangular microfabricated chambers, we establish that bipolarity of air-1(RNAi) embryos occurs effectively in a cell-shape and curvature-dependent manner. Furthermore, we develop an integrated physical description of symmetry breaking, wherein local PAR-2-dependent weakening of the actin cortex, together with mutual inhibition of anterior and posterior PAR proteins, provides a mechanism for spontaneous symmetry breaking without centrosomes.

Pubmed ID: 30801250

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Associated grants

  • Agency: H2020 European Research Council, International
    Id: 281903
  • Agency: European Molecular Biology Organization, International
    Id: ALTF 1426-2016
  • Agency: Swiss National Science Foundation, Switzerland
    Id: 31003A_155942
  • Agency: H2020 European Research Council, International
    Id: 742712
  • Agency: Swiss National Science Foundation, Switzerland
    Id: 205321_175996
  • Agency: European Molecular Biology Organization, International
    Id: ALTF 81-2017
  • Agency: European Research Council, International
    Id: 281903
  • Agency: Deutsche Forschungsgemeinschaft (DFG) under Germany ́s Excellence Strategy, International
    Id: EXC-2068 - 390729961

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MATLAB (tool)

RRID:SCR_001622

Multi paradigm numerical computing environment and fourth generation programming language developed by MathWorks. Allows matrix manipulations, plotting of functions and data, implementation of algorithms, creation of user interfaces, and interfacing with programs written in other languages, including C, C++, Java, Fortran and Python. Used to explore and visualize ideas and collaborate across disciplines including signal and image processing, communications, control systems, and computational finance.

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Addgene (tool)

RRID:SCR_002037

Non-profit plasmid repository dedicated to helping scientists around the world share high-quality plasmids. Facilitates archiving and distributing DNA-based research reagents and associated data to scientists worldwide. Repository contains over 65,000 plasmids, including special collections on CRISPR, fluorescent proteins, and ready-to-use viral preparations. There is no cost for scientists to deposit plasmids, which saves time and money associated with shipping plasmids themselves. All plasmids are fully sequenced for validation and sequencing data is openly available. We handle the appropriate Material Transfer Agreements (MTA) with institutions, facilitating open exchange and offering intellectual property and liability protection for depositing scientists. Furthermore, we curate free educational resources for the scientific community including a blog, eBooks, video protocols, and detailed molecular biology resources.

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