Department of Anatomy & Neurobiology, Washington University School of Medicine, St. Louis, MO 63110, USA.
J Biol Rhythms. 2013 Aug;28(4):239-48. doi: 10.1177/0748730413497179.
We used real-time imaging to detect cAMP levels in neurons of intact fly brains to study the mechanisms of circadian pacemaker synchronization by the neuropeptide pigment dispersing factor (PDF) in Drosophila. PDF receptor (PDF-R) is expressed by both M (sLNv) and E (LNd) pacemaker subclasses and is coupled to G(sα) in both cases. We previously reported that PDF-R in M pacemakers elevates cAMP levels by activating the ortholog of mammalian adenylate cyclase 3 (AC3) but that AC3 disruptions had no effect on E pacemaker sensitivity to PDF. Here, we show that PDF-R in E pacemakers activates a different AC isoform, AC78C, an ortholog of mammalian AC8. Knockdown of AC78C by transgenic RNAi substantially reduces, but does not completely abrogate, PDF responses in these E pacemakers. The knockdown effect is intact when restricted to mature stages, suggesting a physiological and not a development role for AC78C in E pacemakers. The AC78C phenotype is rescued by the overexpression of AC78C but not by overexpression of the rutabaga AC. AC78C overexpression does not disrupt PDF responses in these E pacemakers, and neither AC78C knockdown nor its overexpression disrupted locomotor rhythms. Finally, knockdown of 2 AKAPs, nervy and AKAP200, partially reduces LNd PDF responses. These findings begin to identify the components of E pacemaker PDF-R signalosomes and indicate that they are distinct from PDF-R signalosomes in M pacemakers: we propose they contain AC78C and at least 1 other AC.
我们使用实时成像技术检测完整果蝇大脑神经元中的 cAMP 水平,以研究神经肽色素分散因子 (PDF) 在果蝇中对生物钟起搏细胞同步化的机制。PDF 受体 (PDF-R) 在 M (sLNv) 和 E (LNd) 起搏亚类中均有表达,并且在这两种情况下均与 G(sα)偶联。我们之前报道过,M 起搏细胞中的 PDF-R 通过激活哺乳动物腺苷酸环化酶 3 (AC3) 的同源物来升高 cAMP 水平,但 AC3 破坏对 E 起搏细胞对 PDF 的敏感性没有影响。在这里,我们表明 E 起搏细胞中的 PDF-R 激活了不同的 AC 同工型 AC78C,它是哺乳动物 AC8 的同源物。通过转基因 RNAi 敲低 AC78C 会显著降低,但不会完全消除这些 E 起搏细胞中的 PDF 反应。当限制在成熟阶段时,敲低效应仍然完整,这表明 AC78C 在 E 起搏细胞中具有生理作用,而不是发育作用。AC78C 的过表达可以挽救 AC78C 表型,但 rutabaga AC 的过表达则不能。AC78C 的过表达不会破坏这些 E 起搏细胞中的 PDF 反应,AC78C 的敲低或过表达也不会破坏运动节律。最后,敲低 2 个 AKAPs,nervy 和 AKAP200,会部分降低 LNd 的 PDF 反应。这些发现开始鉴定 E 起搏细胞 PDF-R 信号体的组成部分,并表明它们与 M 起搏细胞中的 PDF-R 信号体不同:我们提出它们包含 AC78C 和至少 1 个其他 AC。