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Elsevier, Biophysical Journal, 1(102), p. 48-55, 2012

DOI: 10.1016/j.bpj.2011.11.4009

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A Novel Phase of Compressed Bilayers That Models the Prestalk Transition State of Membrane Fusion

Journal article published in 2012 by Shuo Qian ORCID, Huey W. Huang
This paper is made freely available by the publisher.
This paper is made freely available by the publisher.

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Abstract

The force model of protein-mediated membrane fusion hypothesizes that fusion is driven by mechanical forces exerted on the membranes, but many details are unknown. Here, we investigated by x-ray diffraction the consequence of applying compressive force on a stack of membranes against the hydration barrier. We found that as the osmotic pressure increased, the lamellar phase transformed first to a new phase of tetragonal lattice (T-phase) over a narrow range of relative humidity, and then to a phase of rhombohedral lattice. The unit cell structure changed from parallel bilayers to a bent configuration with a point contact between adjacent bilayers and then to the stalk hemifusion configuration. The T-phase is discussed as a possible transition state in the membrane merging pathway of fusion. We estimate the work required to form the T-phase and the subsequent hemifusion-stalk-resembling R-phase. The work for the formation of a stalk is compatible with the energy estimated to be released by several SNARE complexes.