Tong Jiansong, Borbat Peter P, Freed Jack H, Shin Yeon-Kyun
Department of Biochemistry, Biophysics, and Molecular Biology, Iowa State University, Ames, IA 50011, USA.
Proc Natl Acad Sci U S A. 2009 Mar 31;106(13):5141-6. doi: 10.1073/pnas.0813138106. Epub 2009 Feb 27.
Neurotransmitter release at the synapse requires membrane fusion. The SNARE complex, composed of the plasma membrane t-SNAREs syntaxin 1A and SNAP-25 and the vesicle v-SNARE synaptobrevin, mediates the fusion of 2 membranes. Synaptic vesicles contain unusually high cholesterol, but the exact role of cholesterol in fusion is not known. In this study, cholesterol was found to stimulate SNARE-mediated lipid mixing of proteoliposomes by a factor of 5 at a physiological concentration. Surprisingly, however, the stimulatory effect was more pronounced when cholesterol was on the v-SNARE side than when it was on the t-SNARE side. Site-directed spin labeling and both continuous wave (CW) and pulsed EPR revealed that cholesterol induces a conformational change of the v-SNARE transmembrane domain (TMD) from an open scissors-like dimer to a parallel dimer. When the TMD was forced to form a parallel dimer by the disulfide bond, the rate was stimulated 2.3-fold even without cholesterol, supporting the relevance of the open-to-closed conformational change to the fusion activity. The open scissors-like conformation may be unfavorable for fusion and cholesterol may relieve this inhibitory factor.
突触处神经递质的释放需要膜融合。由质膜t-SNARE蛋白 syntaxin 1A和SNAP-25以及囊泡v-SNARE蛋白突触小泡蛋白组成的SNARE复合体介导了两个膜的融合。突触小泡含有异常高的胆固醇,但胆固醇在融合中的确切作用尚不清楚。在本研究中,发现胆固醇在生理浓度下可将SNARE介导的蛋白脂质体脂质混合刺激5倍。然而,令人惊讶的是,当胆固醇位于v-SNARE一侧时,其刺激作用比位于t-SNARE一侧时更为明显。定点自旋标记以及连续波(CW)和脉冲EPR显示,胆固醇诱导v-SNARE跨膜结构域(TMD)从开放的剪刀状二聚体构象转变为平行二聚体。当通过二硫键迫使TMD形成平行二聚体时,即使没有胆固醇,融合速率也会提高2.3倍,这支持了从开放到闭合的构象变化与融合活性的相关性。开放的剪刀状构象可能不利于融合,而胆固醇可能会消除这种抑制因素。