Ohyama Tomoko, Verstreken Patrik, Ly Cindy V, Rosenmund Tanja, Rajan Akhila, Tien An-Chi, Haueter Claire, Schulze Karen L, Bellen Hugo J
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, TX 77030, USA.
J Cell Biol. 2007 Dec 31;179(7):1481-96. doi: 10.1083/jcb.200710061. Epub 2007 Dec 24.
Posttranslational modification through palmitoylation regulates protein localization and function. In this study, we identify a role for the Drosophila melanogaster palmitoyl transferase Huntingtin-interacting protein 14 (HIP14) in neurotransmitter release. hip14 mutants show exocytic defects at low frequency stimulation and a nearly complete loss of synaptic transmission at higher temperature. Interestingly, two exocytic components known to be palmitoylated, cysteine string protein (CSP) and SNAP25, are severely mislocalized at hip14 mutant synapses. Complementary DNA rescue and localization experiments indicate that HIP14 is required solely in the nervous system and is essential for presynaptic function. Biochemical studies indicate that HIP14 palmitoylates CSP and that CSP is not palmitoylated in hip14 mutants. Furthermore, the hip14 exocytic defects can be suppressed by targeting CSP to synaptic vesicles using a chimeric protein approach. Our data indicate that HIP14 controls neurotransmitter release by regulating the trafficking of CSP to synapses.
通过棕榈酰化进行的翻译后修饰调节蛋白质的定位和功能。在本研究中,我们确定了果蝇棕榈酰转移酶亨廷顿相互作用蛋白14(HIP14)在神经递质释放中的作用。hip14突变体在低频刺激下表现出胞吐缺陷,在较高温度下突触传递几乎完全丧失。有趣的是,已知两种被棕榈酰化的胞吐成分,半胱氨酸串蛋白(CSP)和SNAP25,在hip14突变体突触处严重定位错误。互补DNA拯救和定位实验表明,HIP14仅在神经系统中起作用,对突触前功能至关重要。生化研究表明,HIP14使CSP棕榈酰化,而在hip14突变体中CSP未被棕榈酰化。此外,通过使用嵌合蛋白方法将CSP靶向突触小泡,可以抑制hip14的胞吐缺陷。我们的数据表明,HIP14通过调节CSP向突触的运输来控制神经递质的释放。