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Lee, Dong Woog
Interfacial Physics and Chemistry Lab.
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Real-time intermembrane force measurements and imaging of lipid domain morphology during hemifusion

Author(s)
Lee, Dong WoogKristiansen, KaiDonaldson, Stephen H., Jr.Cadirov, NicholasBanquy, XavierIsraelachvili, Jacob N.
Issued Date
2015-05
DOI
10.1038/ncomms8238
URI
https://scholarworks.unist.ac.kr/handle/201301/18291
Fulltext
http://www.nature.com/ncomms/2015/150526/ncomms8238/full/ncomms8238.html
Citation
NATURE COMMUNICATIONS, v.6, pp.1 - 8
Abstract
Membrane fusion is the core process in membrane trafficking and is essential for cellular transport of proteins and other biomacromolecules. During protein-mediated membrane fusion, membrane proteins are often excluded from the membrane-membrane contact, indicating that local structural transformations in lipid domains play a major role. However, the rearrangements of lipid domains during fusion have not been thoroughly examined. Here using a newly developed Fluorescence Surface Forces Apparatus (FL-SFA), migration of liquid-disordered clusters and depletion of liquid-ordered domains at the membrane-membrane contact are imaged in real time during hemifusion of model lipid membranes, together with simultaneous force-distance and lipid membrane thickness measurements. The load and contact time-dependent hemifusion results show that the domain rearrangements decrease the energy barrier to fusion, illustrating the significance of dynamic domain transformations in membrane fusion processes. Importantly, the FL-SFA can unambiguously correlate interaction forces and in situ imaging in many dynamic interfacial systems.
Publisher
NATURE PUBLISHING GROUP
ISSN
2041-1723

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