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cAMP signalling in mushroom bodies modulates temperature preference behaviour in Drosophila

机译:蘑菇体内的cAMP信号传导调节果蝇的温度偏好行为

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摘要

Homoiotherms, for example mammals, regulate their body temperature with physiological responses such as a change of metabolic rate and sweating. In contrast, the body temperature of poikilotherms, for example Drosophila, is the result of heat exchange with the surrounding environment as a result of the large ratio of surface area to volume of their bodies. Accordingly, these animals must instinctively move to places with an environmental temperature as close as possible to their genetically determined desired temperature. The temperature that Drosophila instinctively prefers has a function equivalent to the 'set point' temperature in mammals. Although various temperature-gated TRP channels have been discovered, molecular and cellular components in Drosophila brain responsible for determining the desired temperature remain unknown. We identified these components by performing a large-scale genetic screen of temperature preference behaviour (TPB) in Drosophila. In parallel, we mapped areas of the Drosophila brain controlling TPB by targeted inac-tivation of neurons with tetanus toxin and a potassium channel (Kir2.1) driven with various brain-specific GAL4s. Here we show that mushroom bodies (MBs) and the cyclic AMP-cAMP-depend-ent protein kinase A (cAMP-PKA) pathway are essential for controlling TPB. Furthermore, targeted expression of cAMP-PKA pathway components in only the MB was sufficient to rescue abnormal TPB of the corresponding mutants. Preferred temperatures were affected by the level of cAMP and PKA activity in the MBs in various PKA pathway mutants.
机译:同温疗法(例如哺乳动物)通过生理反应(例如代谢率变化和出汗)来调节体温。相反,poikilotherm的体温,例如果蝇,是由于其表面积与体积之比大而与周围环境进行热交换的结果。因此,这些动物必须本能地移动到环境温度尽可能接近其遗传确定的期望温度的地方。果蝇本能地喜欢的温度具有与哺乳动物的“设定点”温度相当的功能。尽管已发现各种温度门控的TRP通道,但果蝇大脑中负责确定所需温度的分子和细胞成分仍然未知。我们通过对果蝇进行温度偏好行为(TPB)的大规模遗传筛选来鉴定这些成分。平行地,我们通过对破伤风毒素和由各种大脑特异性GAL4s驱动的钾通道(Kir2.1)的神经元进行靶向诱捕,绘制了果蝇大脑控制TPB的区域。在这里,我们显示蘑菇体(MBs)和环状AMP-cAMP依赖性蛋白激酶A(cAMP-PKA)通路对于控制TPB是必不可少的。此外,仅在MB中cAMP-PKA途径组分的靶向表达足以挽救相应突变体的异常TPB。优选的温度受各种PKA途径突变体中MB中cAMP和PKA活性水平的影响。

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