首页> 美国卫生研究院文献>The Journal of Neuroscience >Defective Escape Behavior in DEAH-Box RNA Helicase Mutants Improved by Restoring Glycine Receptor Expression
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Defective Escape Behavior in DEAH-Box RNA Helicase Mutants Improved by Restoring Glycine Receptor Expression

机译:通过恢复甘氨酸受体表达改善DEAH框RNA解旋酶突变体中的逃逸行为。

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摘要

RNA helicases regulate RNA metabolism, but their substrate specificity and in vivo function remain largely unknown. We isolated spontaneous mutant zebrafish that exhibit an abnormal dorsal bend at the beginning of tactile-evoked escape swimming. Similar behavioral defects were observed in zebrafish embryos treated with strychnine, which blocks glycine receptors (GlyRs), suggesting that the abnormal motor response in mutants may be attributable to a deficit in glycinergic synaptic transmission. We identified a missense mutation in the gene encoding RNA helicase Dhx37. In Dhx37 mutants, ribosomal RNA levels were unchanged, whereas GlyR α1, α3, and α4a subunit mRNA levels were decreased due to a splicing defect. We found that Dhx37 can interact with GlyR α1, α3, and α4a transcripts but not with the GlyR α2 subunit mRNA. Overexpression of GlyR α1, α3, or α4a subunits in Dhx37-deficient embryos restored normal behavior. Conversely, antisense-mediated knockdown of multiple GlyR α subunits in wild-type embryos was required to recapitulate the Dhx37 mutant phenotype. These results indicate that Dhx37 is specifically required for the biogenesis of a subset of GlyR α subunit mRNAs, thereby regulating glycinergic synaptic transmission and associated motor behaviors. To our knowledge, this is the first identification of pathologically relevant substrates for an RNA helicase.
机译:RNA解旋酶调节RNA代谢,但其底物特异性和体内功能仍然未知。我们分离出自发突变斑马鱼,在触觉诱发的逃逸游泳开始时表现出异常的背弯。在用士的宁处理的斑马鱼胚胎中观察到了类似的行为缺陷,该蛋白阻断了甘氨酸受体(GlyRs),这表明突变体中异常的运动反应可能归因于甘氨酸能突触传递的缺陷。我们在编码RNA解旋酶Dhx37的基因中发现了一个错义突变。在Dhx37突变体中,核糖体RNA水平未发生变化,而GlyRα1,α3和α4a亚基mRNA水平由于剪接缺陷而降低。我们发现Dhx37可以与GlyRα1,α3和α4a转录物相互作用,但不能与GlyRα2亚基mRNA相互作用。 Dhx37缺陷型胚胎中GlyRα1,α3或α4a亚基的过表达恢复了正常行为。相反,需要野生型胚胎中多个GlyRα亚基的反义介导的敲除来概括Dhx37突变表型。这些结果表明,Dhx37是GlyRα亚基mRNA的一个子集的生物发生所特有的,从而调节了甘氨酸能突触传递和相关的运动行为。就我们所知,这是RNA解旋酶与病理相关的底物的首次鉴定。

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