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Genetic Analysis of a Synaptic Calcium Channel in Drosophila: Intragenic Modifiers of a Temperature-Sensitive Paralytic Mutant of cacophony

机译:果蝇中突触钙通道的遗传分析:高温敏感瘫痪突变体的腺体调节剂

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Our previous genetic analysis of synaptic mechanisms in Drosophila identified a temperature-sensitive paralytic mutant of the voltage-gated calcium channel α1 subunit gene, cacophony ( cac ). Electrophysiological studies in this mutant, designated cacTS2 , indicated cac encodes a primary calcium channel α1 subunit functioning in neurotransmitter release. To further examine the functions and interactions of cac -encoded calcium channels, a genetic screen was performed to isolate new mutations that modify the cacTS2 paralytic phenotype. The screen recovered 10 mutations that enhance or suppress cacTS2 , including second-site mutations in cac (intragenic modifiers) as well as mutations mapping to other genes (extragenic modifiers). Here we report molecular characterization of three intragenic modifiers and examine the consequences of these mutations for temperature-sensitive behavior, synaptic function, and processing of cac pre-mRNAs. These mutations may further define the structural basis of calcium channel α1 subunit function in neurotransmitter release.
机译:我们先前对果蝇突触机制的遗传分析鉴定了电压门控钙通道α1亚基基因,CACOCOCON(CAC)的温度敏感的麻痹突变体。该突变体中的电生理学研究指定的仙发2,表明CAC编码神经递质释放中的主要钙通道α1亚基功能。为了进一步检查CAC-encoded钙通道的功能和相互作用,进行遗传筛查,以分离改变仙人掌2瘫表型的新突变。筛网回收了10个突变,其增强或抑制CAC(内瘤改性剂)中的第二位点突变以及突出映射到其他基因(胶质改性剂)。在这里,我们报告了三种内瘤改性剂的分子表征,并检查了CAC前MRNA的温度敏感行为,突触功能和加工的这些突变的后果。这些突变可以进一步定义神经递质释放中钙通道α1亚基功能的结构基。

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