Molecular basis for SNX-BAR-mediated assembly of distinct endosomal sorting tubules
Autor: | Van Weering, Jan R.T., Sessions, Richard B., Traer, Colin J., Kloer, Daniel P., Bhatia, Vikram K., Stamou, Dimitrios, Carlsson, Sven R., Hurley, James H., Cullen, Peter J. |
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Přispěvatelé: | Functional Genomics, Neuroscience Campus Amsterdam - Systems Biology of the Synapse, Human genetics, Amsterdam Neuroscience - Cellular & Molecular Mechanisms |
Jazyk: | angličtina |
Rok vydání: | 2012 |
Předmět: | |
Zdroj: | EMBO Journal, 31(23), 4466-4480. Nature Publishing Group Van Weering, J R T, Sessions, R B, Traer, C J, Kloer, D P, Bhatia, V K, Stamou, D, Carlsson, S R, Hurley, J H & Cullen, P J 2012, ' Molecular basis for SNX-BAR-mediated assembly of distinct endosomal sorting tubules ', EMBO Journal, vol. 31, no. 23, pp. 4466-4480 . https://doi.org/10.1038/emboj.2012.283 EMBO Journal, 31(23), 4466-4480. Wiley-Blackwell |
ISSN: | 0261-4189 |
DOI: | 10.1038/emboj.2012.283 |
Popis: | Sorting nexins (SNXs) are regulators of endosomal sorting. For the SNX-BAR subgroup, a Bin/Amphiphysin/Rvs (BAR) domain is vital for formation/ stabilization of tubular subdomains that mediate cargo recycling. Here, by analysing the in vitro membrane remodelling properties of all 12 human SNX-BARs, we report that some, but not all, can elicit the formation of tubules with diameters that resemble sorting tubules observed in cells. We reveal that SNX-BARs display a restricted pattern of BAR domainmediated dimerization, and by resolving a 2.8A° structure of a SNX1-BAR domain homodimer, establish that dimerization is achieved in part through neutralization of charged residues in the hydrophobic BAR-dimerization interface. Membrane remodelling also requires functional amphipathic helices, predicted to be present in all SNX-BARs, and the formation of high order SNX-BAR oligomers through selective 'tip-loop' interactions. Overall, the restricted and selective nature of these interactions provide a molecular explanation for how distinct SNX-BAR-decorated tubules are nucleated from the same endosomal vacuole, as observed in living cells. Our data provide insight into the molecular mechanism that generates and organizes the tubular endosomal network. |
Databáze: | OpenAIRE |
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