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秀丽隐杆线虫的一种信息素通过G蛋白偶联途径拮抗挥发性麻醉剂的作用。

A Caenorhabditis elegans pheromone antagonizes volatile anesthetic action through a go-coupled pathway.

作者信息

van Swinderen Bruno, Metz Laura B, Shebester Laynie D, Crowder C Michael

机构信息

Department of Anesthesiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

Genetics. 2002 May;161(1):109-19. doi: 10.1093/genetics/161.1.109.

DOI:10.1093/genetics/161.1.109
PMID:12019227
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1462086/
Abstract

Volatile anesthetics (VAs) disrupt nervous system function by an ill-defined mechanism with no known specific antagonists. During the course of characterizing the response of the nematode C. elegans to VAs, we discovered that a C. elegans pheromone antagonizes the VA halothane. Acute exposure to pheromone rendered wild-type C. elegans resistant to clinical concentrations of halothane, increasing the EC(50) from 0.43 +/- 0.03 to 0.90 +/- 0.02. C. elegans mutants that disrupt the function of sensory neurons required for the action of the previously characterized dauer pheromone blocked pheromone-induced resistance (Pir) to halothane. Pheromone preparations from loss-of-function mutants of daf-22, a gene required for dauer pheromone production, lacked the halothane-resistance activity, suggesting that dauer and Pir pheromone are identical. However, the pathways for pheromone's effects on dauer formation and VA action were not identical. Not all mutations that alter dauer formation affected the Pir phenotype. Further, mutations in genes not known to be involved in dauer formation completely blocked Pir, including those altering signaling through the G proteins Goalpha and Gqalpha. A model in which sensory neurons transduce the pheromone activity through antagonistic Go and Gq pathways, modulating VA action against neurotransmitter release machinery, is proposed.

摘要

挥发性麻醉剂(VAs)通过一种尚不明确的机制破坏神经系统功能,且目前尚无已知的特异性拮抗剂。在对线虫秀丽隐杆线虫对VAs的反应进行表征的过程中,我们发现一种秀丽隐杆线虫信息素可拮抗VA氟烷。急性暴露于信息素可使野生型秀丽隐杆线虫对临床浓度的氟烷产生抗性,将其半数有效浓度(EC50)从0.43±0.03提高到0.90±0.02。破坏先前表征的滞育信息素作用所需的感觉神经元功能的秀丽隐杆线虫突变体阻断了信息素诱导的对氟烷的抗性(Pir)。来自daf - 22功能丧失突变体的信息素制剂,daf - 22是滞育信息素产生所需的基因,缺乏氟烷抗性活性,这表明滞育信息素和Pir信息素是相同的。然而,信息素对滞育形成和VA作用的影响途径并不相同。并非所有改变滞育形成的突变都会影响Pir表型。此外,一些未知参与滞育形成的基因中的突变完全阻断了Pir,包括那些改变通过G蛋白Goα和Gqα信号传导的突变。我们提出了一个模型,即感觉神经元通过拮抗的Go和Gq途径转导信息素活性,调节VA对神经递质释放机制的作用。

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本文引用的文献

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Goalpha regulates volatile anesthetic action in Caenorhabditis elegans.Goα调节秀丽隐杆线虫中挥发性麻醉剂的作用。
Genetics. 2001 Jun;158(2):643-55. doi: 10.1093/genetics/158.2.643.
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The G-protein beta-subunit GPB-2 in Caenorhabditis elegans regulates the G(o)alpha-G(q)alpha signaling network through interactions with the regulator of G-protein signaling proteins EGL-10 and EAT-16.秀丽隐杆线虫中的G蛋白β亚基GPB-2通过与G蛋白信号调节蛋白EGL-10和EAT-16相互作用来调节G(o)α-G(q)α信号网络。
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eat-11 encodes GPB-2, a Gbeta(5) ortholog that interacts with G(o)alpha and G(q)alpha to regulate C. elegans behavior.eat-11编码GPB-2,一种与G(o)α和G(q)α相互作用以调节线虫行为的Gβ(5)直系同源物。
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Excitatory synaptic transmission mediated by NMDA receptors is more sensitive to isoflurane than are non-NMDA receptor-mediated responses.由NMDA受体介导的兴奋性突触传递比非NMDA受体介导的反应对异氟烷更敏感。
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Agonist gating and isoflurane potentiation in the human gamma-aminobutyric acid type A receptor determined by the volume of a second transmembrane domain residue.通过第二个跨膜结构域残基的体积确定人γ-氨基丁酸A型受体中的激动剂门控和异氟烷增强作用。
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