Department of Genetics and Neuroscience Center, Geisel School of Medicine at Dartmouth, Hanover, New Hampshire 03755-1404, USA.
J Neurosci. 2012 Aug 22;32(34):11879-89. doi: 10.1523/JNEUROSCI.1376-12.2012.
Trimeric sodium channels of the DEG/ENaC family have important roles in neurons, but the specific functions of different subunits present in heteromeric channels are poorly understood. We previously reported that the Drosophila DEG/ENaC subunit Ppk25 is essential in a small subset of gustatory neurons for activation of male courtship behavior, likely through detection of female pheromones. Here we show that, like mutations in ppk25, mutations in another Drosophila DEG/ENaC subunit gene, nope, specifically impair male courtship of females. nope regulatory sequences drive reporter gene expression in gustatory neurons of the labellum wings, and legs, including all gustatory neurons in which ppk25 function is required for male courtship of females. In addition, gustatory-specific knockdown of nope impairs male courtship. Further, the impaired courtship response of nope mutant males to females is rescued by targeted expression of nope in the subset of gustatory neurons in which ppk25 functions. However, nope and ppk25 have nonredundant functions, as targeted expression of ppk25 does not compensate for the lack of nope and vice versa. Moreover, Nope and Ppk25 form specific complexes when coexpressed in cultured cells. Together, these data indicate that the Nope and Ppk25 polypeptides have specific, nonredundant functions in a subset of gustatory neurons required for activation of male courtship in response to females, and suggest the hypothesis that Nope and Ppk25 function as subunits of a heteromeric DEG/ENaC channel required for gustatory detection of female pheromones.
三聚体钠离子通道的 DEG/ENaC 家族在神经元中具有重要作用,但异源通道中不同亚基的特定功能知之甚少。我们之前报道过,果蝇 DEG/ENaC 亚基 Ppk25 在一小部分味觉神经元中对于雄性求偶行为的激活是必不可少的,可能是通过检测雌性信息素。在这里,我们发现与 ppk25 突变一样,果蝇另一个 DEG/ENaC 亚基基因 nope 的突变也特异性地损害了雌性的雄性求偶行为。 nope 的调控序列驱动了标签翅和腿的味觉神经元中的报告基因表达,包括所有需要 ppk25 功能才能对雌性进行雄性求偶的味觉神经元。此外,味觉特异性敲低 nope 会损害雄性求偶。此外,通过靶向表达 nope 在 ppk25 功能所需的味觉神经元亚群中,可挽救 nope 突变雄性对雌性的受损求偶反应。然而, nope 和 ppk25 具有非冗余的功能,因为靶向表达 ppk25 不能弥补 nope 的缺乏,反之亦然。此外, Nope 和 Ppk25 在培养细胞中共同表达时形成特定的复合物。总之,这些数据表明, Nope 和 Ppk25 多肽在雄性对雌性求偶反应的激活所需的味觉神经元亚群中具有特定的、非冗余的功能,并提出了这样一种假设,即 Nope 和 Ppk25 作为一个异源 DEG/ENaC 通道的亚基发挥作用,该通道是味觉检测雌性信息素所必需的。