Sanyal S, Tolar L A, Pallanck L, Krishnan K S
Molecular and Cellular Biology Department, University of Arizona, Tucson, AZ 85721, USA.
Neurosci Lett. 2001 Sep 21;311(1):21-4. doi: 10.1016/s0304-3940(01)02125-5.
NSF is an ATPase required for the fusion of secretory vesicles with plasma membrane. Conditional comatose (Drosophila homolog of N-ethylmaleimide sensitive fusion factor (NSF)) mutations in Drosophila block synaptic transmission at restrictive temperature. Current models hold that NSF-mediated dissociation of SNARE (SNAp REceptor) complexes on mature synaptic vesicles primes them for exocytic release. Paralysis in comt mutants thus reflects defective exocytosis due to buildup of unresolved SNARE complexes. Here, we analyze effects of blocking synaptic vesicle recycling on behavioral, physiological and biochemical phenotypes of comt. Behavioral recovery of comt animals and recovery of comt synapses, as assayed by electroretinograms, after exposure to high temperature is faster if synaptic vesicle recycling is simultaneously blocked using shi(ts) mutants. Concurrently, 7S complex buildup in comt shi double mutants is substantially lower than in comt mutants alone. In addition, we find that 7S complexes can form on presynaptic plasma membrane if NSF is inhibited after synaptic-vesicle depletion. Thus, our experiments demonstrate a need for continuous NSF activity required not only for dissociating cis-SNARE complexes on plasma membrane after exocytosis, but also for maintaining these cis-SNARE complexes in a dissociated state.
NSF是分泌性囊泡与质膜融合所需的一种ATP酶。果蝇中的条件性昏迷(N - 乙基马来酰亚胺敏感融合因子(NSF)的果蝇同源物)突变在限制温度下会阻断突触传递。目前的模型认为,NSF介导成熟突触囊泡上SNARE(可溶性NSF附着蛋白受体)复合物的解离,使其为胞吐释放做好准备。因此,comt突变体中的麻痹反映了由于未解决的SNARE复合物积累导致的胞吐缺陷。在这里,我们分析了阻断突触囊泡循环对comt的行为、生理和生化表型的影响。如果使用shi(ts)突变体同时阻断突触囊泡循环,那么在暴露于高温后,通过视网膜电图检测,comt动物的行为恢复和comt突触的恢复会更快。同时,comt shi双突变体中7S复合物的积累明显低于单独的comt突变体。此外,我们发现,如果在突触囊泡耗竭后抑制NSF,7S复合物可以在突触前质膜上形成。因此,我们的实验表明,不仅在胞吐后解离质膜上的顺式SNARE复合物需要持续的NSF活性,而且维持这些顺式SNARE复合物处于解离状态也需要持续的NSF活性。