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Steric hindrance of SNARE transmembrane domain organization impairs the hemifusion‐to‐fusion transition

机译:SNARE跨膜域组织的立体障碍阻碍了半融合向融合的转变

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摘要

SNAREs fuse membranes in several steps. Trans‐SNARE complexes juxtapose membranes, induce hemifused stalk structures, and open the fusion pore. A recent penetration model of fusion proposed that SNAREs force the hydrophilic C‐termini of their transmembrane domains through the hydrophobic core of the membrane(s). In contrast, the indentation model suggests that the C‐termini open the pore by locally compressing and deforming the stalk. Here we test these models in the context of yeast vacuole fusion. Addition of small hydrophilic tags renders bilayer penetration by the C‐termini energetically unlikely. It preserves fusion activity, however, arguing against the penetration model. Addition of large protein tags to the C‐termini permits SNARE activation, trans‐SNARE pairing, and hemifusion but abolishes pore opening. Fusion proceeds if the tags are detached from the membrane by a hydrophilic spacer or if only one side of the trans‐SNARE complex carries a protein tag. Thus, both sides of a trans‐SNARE complex can drive pore opening. Our results are consistent with an indentation model in which multiple SNARE C‐termini cooperate in opening the fusion pore by locally deforming the inner leaflets.
机译:SNARE通过多个步骤熔合膜。 Trans-SNARE复合物使膜并置,诱导半融合的茎结构,并打开融合孔。最近的融合渗透模型表明,SNARE迫使其跨膜结构域的亲水C-末端穿过膜的疏水核。相比之下,压痕模型表明C末端通过局部压缩和变形茎杆来打开孔。在这里,我们在酵母液泡融合的背景下测试这些模型。添加小的亲水性标签会使C-mini双层渗透在能量上不大可能。但是,它保留了融合活动,却反对渗透模型。在C末端添加大蛋白标签可实现SNARE激活,反SNARE配对和半融合,但可消除开孔。如果标签通过亲水性间隔子从膜上分离下来,或者只有反式SNARE复合物的一侧带有蛋白质标签,融合就会继续进行。因此,反式SNARE复合物的两侧都可以驱动孔的开放。我们的结果与一个压痕模型一致,在该模型中,多个SNARE C-Termmini通过局部变形内部小叶来合作打开融合孔。

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