Sanyal S, Basole A, Krishnan K S
Department of Biological Sciences, Tata Institute of Fundamental Research, Colaba, Mumbai 400 005, India
J Neurosci. 1999 Dec 15;19(24):RC47. doi: 10.1523/JNEUROSCI.19-24-j0005.1999.
The temperature-induced paralysis of comatose (comt) mutants of Drosophila is suggestive of a function for N-ethylmaleimide-sensitive fusion factor (NSF) in the CNS. Mutations in the para gene encoding the subunit of the voltage-gated sodium channel also result in a similar phenotype. We show that paralysis in comt flies is activity-dependent, and in the doubly mutant comt para flies comt-like paralysis does not set in until the effects of para are reversed by shifting to permissive temperatures. During recording from the thoracic flight muscles, we observed that comt flies showed a burst of spontaneous activity at restrictive temperature. This has been reported earlier as a unique characteristic of comt paralysis. The comt para double mutant showed this burst of activity not at restrictive but only on shifting back to permissive temperature. The unusual behavior and electrophysiology of the doubly mutant flies reported here indicates a role for NSF in synaptic vesicle cycling.
果蝇昏迷(comt)突变体的温度诱导麻痹表明N - 乙基马来酰亚胺敏感融合因子(NSF)在中枢神经系统中具有某种功能。编码电压门控钠通道亚基的para基因发生突变也会导致类似的表型。我们发现,comt果蝇的麻痹是活动依赖性的,在双突变体comt para果蝇中,直到通过转移到允许温度来逆转para的影响后,才会出现类似comt的麻痹。在对胸部飞行肌肉进行记录时,我们观察到comt果蝇在限制温度下会出现一阵自发活动。这一点之前已被报道为comt麻痹的一个独特特征。comt para双突变体并非在限制温度下,而是仅在转移回允许温度时才出现这种活动爆发。此处报道的双突变果蝇的异常行为和电生理表明NSF在突触小泡循环中发挥作用。