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Membrane curvature at a glance

Journal of Cell Science · 2015 · Vol. 128(6) · pp. 1065–1070
Harvey T. McMahonEmmanuel Boucrot

Abstract

Membrane curvature is an important parameter in defining the morphology of cells, organelles and local membrane subdomains. Transport intermediates have simpler shapes, being either spheres or tubules. The generation and maintenance of curvature is of central importance for maintaining trafficking and cellular functions. It is possible that local shapes in complex membranes could help to define local subregions. In this Cell Science at a Glance article and accompanying poster, we summarize how generating, sensing and maintaining high local membrane curvature is an active process that is mediated and controlled by specialized proteins using general mechanisms: (i) changes in lipid composition and asymmetry, (ii) partitioning of shaped transmembrane domains of integral membrane proteins or protein or domain crowding, (iii) reversible insertion of hydrophobic protein motifs, (iv) nanoscopic scaffolding by oligomerized hydrophilic protein domains and, finally, (v) macroscopic scaffolding by the cytoskeleton with forces generated by polymerization and by molecular motors. We also summarize some of the discoveries about the functions of membrane curvature, where in addition to providing cell or organelle shape, local curvature can affect processes like membrane scission and fusion as well as protein concentration and enzyme activation on membranes.

Cellular transport and secretionLipid Membrane Structure and BehaviorRNA and protein synthesis mechanismsMembrane curvatureBiologyMembraneCurvatureElasticity of cell membranesOrganelleTransmembrane proteinBiophysicsMembrane proteinCytoskeleton

MeSH terms

AnimalsCell MembraneHumansIntracellular MembranesLipid Bilayers

Funding

  • Biotechnology and Biological Sciences Research Council
Citations
724
FWCI
25.17
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References
84
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100%
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References
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Nature Structural & Molecular Biology · 2007 · 567 citations
SNAREs — engines for membrane fusion
Nature Reviews Molecular Cell Biology · 2006 · 2,613 citations
Molecular mechanism and physiological functions of clathrin-mediated endocytosis
Nature Reviews Molecular Cell Biology · 2011 · 2,243 citations
Refined Structure of the Nicotinic Acetylcholine Receptor at 4Å Resolution
Journal of Molecular Biology · 2004 · 1,643 citations
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