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A novel phase of compressed bilayers that models the prestalk transition state of membrane fusion.

机译:压缩双层的一个新阶段,模拟膜融合的茎前过渡状态。

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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.
机译:蛋白质介导的膜融合的力模型假设融合是由施加在膜上的机械力驱动的,但许多细节尚不清楚。在这里,我们通过X射线衍射研究了对一叠膜施加抗水合屏障压力的结果。我们发现,随着渗透压的增加,层状相首先在相对湿度的狭窄范围内转变为四方晶格的新相(T相),然后转变为菱面体晶格的相。晶胞结构从平行的双层变为具有相邻双层之间的点接触的弯曲构造,然后变为茎部半融合构造。 T相被认为是融合膜融合途径中可能的过渡态。我们估计形成T相和随后的类似R的半融合柄的工作。形成茎的工作与几种SNARE复合体估计释放的能量兼容。

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