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Argonaute2 Suppresses Drosophila Fragile X Expression Preventing Neurogenesis and Oogenesis Defects

机译:Argonaute2抑制果蝇易碎的X表达防止神经发生和卵子发生缺陷。

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摘要

Fragile X Syndrome is caused by the silencing of the Fragile X Mental Retardation gene (FMR1). Regulating dosage of FMR1 levels is critical for proper development and function of the nervous system and germ line, but the pathways responsible for maintaining normal expression levels are less clearly defined. Loss of Drosophila Fragile X protein (dFMR1) causes several behavioral and developmental defects in the fly, many of which are analogous to those seen in Fragile X patients. Over-expression of dFMR1 also causes specific neuronal and behavioral abnormalities. We have found that Argonaute2 (Ago2), the core component of the small interfering RNA (siRNA) pathway, regulates dfmr1 expression. Previously, the relationship between dFMR1 and Ago2 was defined by their physical interaction and co-regulation of downstream targets. We have found that Ago2 and dFMR1 are also connected through a regulatory relationship. Ago2 mediated repression of dFMR1 prevents axon growth and branching defects of the Drosophila neuromuscular junction (NMJ). Consequently, the neurogenesis defects in larvae mutant for both dfmr1 and Ago2 mirror those in dfmr1 null mutants. The Ago2 null phenotype at the NMJ is rescued in animals carrying an Ago2 genomic rescue construct. However, animals carrying a mutant Ago2 allele that produces Ago2 with significantly reduced endoribonuclease catalytic activity are normal with respect to the NMJ phenotypes examined. dFMR1 regulation by Ago2 is also observed in the germ line causing a multiple oocyte in a single egg chamber mutant phenotype. We have identified Ago2 as a regulator of dfmr1 expression and have clarified an important developmental role for Ago2 in the nervous system and germ line that requires dfmr1 function.
机译:脆性X综合征是由脆性X智力低下基因(FMR1)沉默引起的。调节FMR1水平的剂量对于神经系统和种系的正常发育和功能至关重要,但是负责维持正常表达水平的途径尚不清楚。果蝇脆性X蛋白(dFMR1)的丢失会导致果蝇的行为和发育缺陷,其中许多类似于脆性X患者所见。 dFMR1的过度表达也会引起特定的神经元和行为异常。我们已经发现,Argonaute2(Ago2),小干扰RNA(siRNA)途径的核心组件,调节dfmr1的表达。以前,dFMR1和Ago2之间的关系是通过它们的物理相互作用和下游靶标的共同调控来定义的。我们发现Ago2和dFMR1也通过调节关系连接。 Ago2介导的dFMR1抑制阻止果蝇神经肌肉接头(NMJ)的轴突生长和分支缺陷。因此,dfmr1和Ago2的幼虫突变体中的神经发生缺陷与dfmr1 null突变体中的神经缺陷相同。在携带Ago2基因组营救构建体的动物中营救了NMJ处的Ago2无效表型。但是,相对于所检查的NMJ表型,携带突变型Ago2等位基因的动物是正常的,该突变型Ago2等位基因产生的Ago2的内切核糖核酸酶催化活性明显降低。在种系中也观察到Ago2对dFMR1的调节,从而在单个卵室突变表型中引起多个卵母细胞。我们已经确定Ago2为dfmr1表达的调节剂,并阐明了Ago2在需要dfmr1功能的神经系统和生殖细胞系中的重要发育作用。

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