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Transient Receptor Potential Melastatin (TRPM) Channels Mediate Clozapine-induced Phenotypes in Caenorhabditis elegans

机译:瞬时受体潜在melastatin(TRPM)通道介导氯氮平诱导秀丽隐杆线虫的表型。

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The molecular mechanisms of action of antipsychotic drugs (APDs) are not fully understood. Here, we characterize phenotypes of missense and knockout mutations in the Caenorhabditis elegans transient receptor potential melastatin (TRPM) channel ortholog gtl-2, a candidate APD target identified in a genome-wide RNAi (RNA interference) screen for S uppressors of Clozapine-induced Larval Arrest (scla genes). We then employ the developmental phenotypes of gtl-2(lf) mutants to validate our previous gtl-2(RNAi) result. GTL-2 acts in the excretory canal cell to regulate Mg2+ homeostasis. Using exc (excretory canal abnormal) gene mutants, we demonstrate that excretory canal cell function is necessary for clozapine-induced developmental delay and lethality. Moreover, cell-specific promoter-driven expression studies reveal that GTL-2 function in the excretory canal cell is important for its role in the SCLA phenotype. We then investigate the mechanism by which GTL-2 function in the excretory canal cell impacts clozapine-induced phenotypes. gtl-2(lf) mutations cause hypermagnesemia, and we show that exposure of the wild-type strain to high Mg2+ phenocopies gtl-2(lf) with respect to suppression of clozapine-induced developmental delay and lethality. Our results suggest that GTL-2 TRPM channel function in the excretory canal cell is important for clozapine's developmental effects. TRP channels are expressed in mammalian brain and are implicated in the pathogenesis of mental illnesses but have not been previously implicated in APD action.
机译:抗精神病药物(APDs)作用的分子机制尚未完全了解。在这里,我们表征秀丽隐杆线虫瞬时受体电位褪黑素(TRPM)通道直系同源基因gtl-2的错义和敲除突变的表型,这是在全基因组RNAi(RNA干扰)筛选中确定的氯氮平诱导的S抑制剂的候选APD目标幼虫逮捕(scla基因)。然后,我们采用gtl-2(lf)突变体的发育表型来验证我们先前的gtl-2(RNAi)结果。 GTL-2在排泄管细胞中起作用,以调节Mg2 +稳态。使用exc(排泄管异常)基因突变体,我们证明排泄管细胞功能对于氯氮平诱导的发育延迟和致死性是必要的。此外,细胞特异性启动子驱动的表达研究表明,排泄管细胞中的GTL-2功能对其在SCLA表型中的作用很重要。然后,我们研究了排泄管细胞中GTL-2功能影响氯氮平诱导的表型的机制。 gtl-2(lf)突变引起高镁血症,我们表明野生型菌株接触高Mg2 +表型gtl-2(lf)抑制氯氮平诱导的发育延迟和致死性。我们的结果表明,排泄管细胞中的GTL-2 TRPM通道功能对于氯氮平的发育作用很重要。 TRP通道在哺乳动物的大脑中表达,与精神疾病的发病机制有关,但以前并未与APD的作用有关。

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