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A closed conformation of the Caenorhabditis elegans separase–securin complex

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posted on 2016-10-05, 09:46 authored by Gudrun Bachmann, Mark W. Richards, Anja Winter, Fabienne Beuron, Edward Morris, Richard Bayliss
The protease separase plays a key role in sister chromatid disjunction and centriole disengagement. To maintain genomic stability, separase activity is strictly regulated by binding of an inhibitory protein, securin. Despite its central role in cell division, the separase and securin complex is poorly understood at the structural level. This is partly owing to the difficulty of generating a sufficient quantity of homogeneous, stable protein. Here, we report the production of Caenorhabditis elegans separase–securin complex, and its characterization using biochemical methods and by negative staining electron microscopy. Single particle analysis generated a density map at a resolution of 21–24 Å that reveals a close, globular structure of complex connectivity harbouring two lobes. One lobe matches closely a homology model of the N-terminal HEAT repeat domain of separase, whereas the second lobe readily accommodates homology models of the separase C-terminal death and caspase-like domains. The globular structure of the C. elegans separase–securin complex contrasts with the more elongated structure previously described for the Homo sapiens complex, which could represent a different functional state of the complex, suggesting a mechanism for the regulation of separase activity through conformational change.

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Citation

Open Biology, 2016, 6 : 160032.

Author affiliation

/Organisation/COLLEGE OF MEDICINE, BIOLOGICAL SCIENCES AND PSYCHOLOGY/MBSP Non-Medical Departments/Molecular & Cell Biology

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  • VoR (Version of Record)

Published in

Open Biology

Publisher

Royal Society, The

eissn

2046-2441

Acceptance date

2016-03-18

Copyright date

2016

Available date

2016-10-05

Publisher version

http://rsob.royalsocietypublishing.org/content/6/4/160032

Language

en

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