Characterization of a novel stimulus-induced glial calcium wave in Drosophila larval peripheral segmental nerves and its role in PKG-modulated thermoprotection.

IF 1.8 4区 医学 Q3 GENETICS & HEREDITY Journal of neurogenetics Pub Date : 2021-09-01 Epub Date: 2021-07-26 DOI:10.1080/01677063.2021.1941945
Jennifer L Krill, Ken Dawson-Scully
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引用次数: 3

Abstract

Insects, as poikilotherms, have adaptations to deal with wide ranges in temperature fluctuation. Allelic variations in the foraging gene that encodes a cGMP dependent protein kinase, were discovered to have effects on behavior in Drosophila by Dr. Marla Sokolowski in 1980. This single gene has many pleiotropic effects and influences feeding behavior, metabolic storage, learning and memory and has been shown to affect stress tolerance. PKG regulation affects motoneuronal thermotolerance in Drosophila larvae as well as adults. While the focus of thermotolerance studies has been on the modulation of neuronal function, other cell types have been overlooked. Because glia are vital to neuronal function and survival, we wanted to determine if glia play a role in thermotolerance as well. In our investigation, we discovered a novel calcium wave at the larval NMJ and set out to characterize the wave's dynamics and the potential mechanism underlying the wave prior to determining what effect, if any, PKG modulation has on the thermotolerance of glia cells. Using pharmacology, we determined that calcium buffering mechanisms of the mitochondria and endoplasmic reticulum play a role in the propagation of our novel glial calcium wave. By coupling pharmacology with genetic manipulation using RNA interference (RNAi), we found that PKG modulation in glia alters thermoprotection of function as well as glial calcium wave dynamics.

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果蝇幼虫周围节段神经中刺激诱导的新型胶质钙波的特征及其在pkg调节的热保护中的作用。
昆虫作为变温动物,具有适应大范围温度波动的能力。1980年,Marla Sokolowski博士发现觅食基因中的等位基因变异对果蝇的行为有影响,该基因编码一种cGMP依赖性蛋白激酶。这个单一基因具有多种多效性,影响摄食行为、代谢储存、学习和记忆,并已被证明影响应激耐受性。PKG调节影响果蝇幼虫和成虫的运动神经元耐热性。虽然热耐受性研究的重点一直放在神经元功能的调节上,但其他类型的细胞却被忽视了。由于胶质细胞对神经元的功能和存活至关重要,我们想确定胶质细胞是否也在耐热性中发挥作用。在我们的研究中,我们在NMJ的幼虫中发现了一种新的钙波,并开始表征这种波的动力学和潜在的机制,然后确定PKG调节对胶质细胞的耐热性有什么影响(如果有的话)。利用药理学,我们确定线粒体和内质网的钙缓冲机制在我们的新型胶质钙波的传播中发挥作用。通过将药理学与RNA干扰(RNAi)的遗传操作结合起来,我们发现PKG在胶质细胞中的调节改变了胶质细胞的热保护功能和钙波动力学。
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来源期刊
Journal of neurogenetics
Journal of neurogenetics 医学-神经科学
CiteScore
4.40
自引率
0.00%
发文量
13
审稿时长
>12 weeks
期刊介绍: The Journal is appropriate for papers on behavioral, biochemical, or cellular aspects of neural function, plasticity, aging or disease. In addition to analyses in the traditional genetic-model organisms, C. elegans, Drosophila, mouse and the zebrafish, the Journal encourages submission of neurogenetic investigations performed in organisms not easily amenable to experimental genetics. Such investigations might, for instance, describe behavioral differences deriving from genetic variation within a species, or report human disease studies that provide exceptional insights into biological mechanisms
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