Department of Genetics and Neuroscience Center, Geisel School of Medicine at Dartmouth, Hanover, NH 03755, USA.
Sci Signal. 2012 Nov 6;5(249):pe48. doi: 10.1126/scisignal.2003555.
Hydrocarbon pheromones on the cuticle of Drosophila melanogaster modulate the complex courtship behavior of males. Recently, three members of the degenerin/epithelial Na+ channel (DEG/ENaC) family of sodium channel subunits, Ppk25, Ppk23, and Ppk29 (also known as Nope), have been shown to function in gustatory perception of courtship-modulating contact pheromones. All three proteins are required for the activation of male courtship by female pheromones. Specific interactions between two of them have been demonstrated in cultured cells, suggesting that, in a subset of cells where they are coexpressed, these three subunits function within a common heterotrimeric DEG/ENaC channel. Such a DEG/ENaC channel may be gated by pheromones, either directly or indirectly, or alternatively may control the excitability of pheromone-sensing cells. In addition, these studies identify taste neurons that respond specifically to courtship-modulating pheromones and mediate their effects on male behavior. Two types of pheromone-sensing taste neurons, F and M cells, have been defined on the basis of their specific response to either female or male pheromones. These reports set the stage for the dissection of the molecular and cellular mechanisms that mediate gustatory detection of contact pheromones.
表皮烃类信息素调控黑腹果蝇的复杂求偶行为。最近,钠离子通道亚基退化/上皮钠离子通道(DEG/ENaC)家族的三个成员,ppk25、ppk23 和 ppk29(也称为 Nope),已被证明在味觉感知求偶调节接触信息素中发挥作用。这三种蛋白都需要雌性信息素来激活雄性的求偶行为。在培养的细胞中已经证明了它们之间的两种特定相互作用,这表明在它们共同表达的一组细胞中,这三种亚基在一个共同的 DEG/ENaC 三聚体通道中发挥作用。这种 DEG/ENaC 通道可能直接或间接由信息素门控,或者可能控制感觉信息素的细胞的兴奋性。此外,这些研究确定了专门响应求偶调节信息素并介导其对雄性行为影响的味觉神经元。基于其对雌性或雄性信息素的特定反应,已经定义了两种类型的信息素感觉味觉神经元,F 和 M 细胞。这些报告为解析介导接触信息素味觉检测的分子和细胞机制奠定了基础。