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Molecular architecture of a cylindrical self-assembly at human centrosomes. | LitMetric

AI Article Synopsis

  • Super-resolution microscopy revealed that proteins involved in this pericentriolar material are organized around centrioles, but how this organization works on a molecular level is not fully understood.
  • This research identifies that two specific proteins, Cep63 and Cep152, form a complex structure that is essential for recruiting other proteins needed for centriole duplication, highlighting a conserved mechanism across different organisms.

Article Abstract

The cell is constructed by higher-order structures and organelles through complex interactions among distinct structural constituents. The centrosome is a membraneless organelle composed of two microtubule-derived structures called centrioles and an amorphous mass of pericentriolar material. Super-resolution microscopic analyses in various organisms revealed that diverse pericentriolar material proteins are concentrically localized around a centriole in a highly organized manner. However, the molecular nature underlying these organizations remains unknown. Here we show that two human pericentriolar material scaffolds, Cep63 and Cep152, cooperatively generate a heterotetrameric α-helical bundle that functions in conjunction with its neighboring hydrophobic motifs to self-assemble into a higher-order cylindrical architecture capable of recruiting downstream components, including Plk4, a key regulator for centriole duplication. Mutations disrupting the self-assembly abrogate Plk4-mediated centriole duplication. Because pericentriolar material organization is evolutionarily conserved, this work may offer a paradigm for investigating the assembly and function of centrosomal scaffolds in various organisms.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6411776PMC
http://dx.doi.org/10.1038/s41467-019-08838-2DOI Listing

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