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在果蝇(Drosophila melanogaster)中,血管紧张素转化酶同系物对于挥发性信息素的检测、气味结合蛋白的分泌以及正常的求偶行为是必需的。

An angiotensin converting enzyme homolog is required for volatile pheromone detection, odorant binding protein secretion and normal courtship behavior in Drosophila melanogaster.

机构信息

Department of Biomedical Science, Daegu University, 201 Daegudae-ro, Gyeongsan-si, Gyeongbuk, 38453Republic of Korea.

Department of Pharmacology, University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd., Dallas, TX 75390-9111, USA.

出版信息

Genetics. 2023 Aug 9;224(4). doi: 10.1093/genetics/iyad109.

Abstract

In many arthropods, including insects responsible for transmission of human diseases, behaviors that include mating, aggregation, and aggression are triggered by detection of pheromones. Extracellular odorant binding proteins are critical for pheromone detection in many insects and are secreted into the fluid bathing the olfactory neuron dendrites. In Drosophila melanogaster, the odorant binding protein LUSH is essential for normal sensitivity to the volatile sex pheromone, 11-cis vaccenyl acetate (cVA). Using a genetic screen for cVA pheromone insensitivity, we identified ANCE-3, a homolog of human angiotensin converting enzyme that is required for detection of cVA pheromone. The mutants have normal dose-response curves for food odors, although olfactory neuron amplitudes are reduced in all olfactory neurons examined. ance-3 mutants have profound delays in mating, and the courtship defects are primarily but not exclusively due to loss of ance-3 function in males. We demonstrate that ANCE-3 is required in the sensillae support cells for normal reproductive behavior, and that localization of odorant binding proteins to the sensillum lymph is blocked in the mutants. Expression of an ance-3 cDNA in sensillae support cells completely rescues the cVA responses, LUSH localization, and courtship defects. We show the courtship latency defects are not due to effects on olfactory neurons in the antenna nor mediated through ORCO receptors, but instead stem from ANCE-3-dependent effects on chemosensory sensillae in other body parts. These findings reveal an unexpected factor critical for pheromone detection with profound influence on reproductive behaviors.

摘要

在许多节肢动物中,包括那些传播人类疾病的昆虫,包括交配、聚集和攻击在内的行为都是通过检测信息素来触发的。细胞外气味结合蛋白对于许多昆虫的信息素检测至关重要,它们被分泌到嗅觉神经元树突周围的液体中。在黑腹果蝇中,气味结合蛋白 LUSH 对于正常感知挥发性性信息素 11-顺式-十一碳烯乙酸酯(cVA)是必不可少的。我们利用一种针对 cVA 信息素不敏感的遗传筛选方法,鉴定出了 ANCE-3,它是人类血管紧张素转换酶的同源物,是检测 cVA 信息素所必需的。突变体对食物气味的剂量反应曲线正常,尽管在所有检查的嗅觉神经元中,嗅觉神经元的振幅都降低了。ance-3 突变体的交配延迟严重,而且求爱缺陷主要但不是完全归因于雄性 ance-3 功能的丧失。我们证明,ANCE-3 在感觉细胞支持细胞中对于正常的生殖行为是必需的,并且在突变体中,气味结合蛋白向感觉淋巴的定位被阻断。在感觉细胞支持细胞中表达 ance-3 cDNA 可完全挽救 cVA 反应、LUSH 定位和求爱缺陷。我们表明,求爱潜伏期缺陷不是由于触角中的嗅觉神经元的影响,也不是通过 ORCO 受体介导的,而是由于 ANCE-3 对其他身体部位的化学感觉感器的依赖作用所致。这些发现揭示了一个意想不到的因素,它对于信息素检测至关重要,并对生殖行为产生了深远的影响。

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