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Homeostatic plasticity fails at the intersection of autism-gene mutations and a novel class of common genetic modifiers

机译:稳态可塑性在自闭症 - 基因突变和新型常见遗传改性剂中失败

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摘要

We identify a set of common phenotypic modifiers that interact with five independent autism gene orthologs (RIMS1, CHD8, CHD2, WDFY3, ASH1L) causing a common failure of presynaptic homeostatic plasticity (PHP) in Drosophila. Heterozygous null mutations in each autism gene are demonstrated to have normal baseline neurotransmission and PHP. However, PHP is sensitized and rendered prone to failure. A subsequent electrophysiology-based genetic screen identifies the first known heterozygous mutations that commonly genetically interact with multiple ASD gene orthologs, causing PHP to fail. Two phenotypic modifiers identified in the screen, PDPK1 and PPP2R5D, are characterized. Finally, transcriptomic, ultrastructural and electrophysiological analyses define one mechanism by which PHP fails; an unexpected, maladaptive up-regulation of CREG, a conserved, neuronally expressed, stress response gene and a novel repressor of PHP. Thus, we define a novel genetic landscape by which diverse, unrelated autism risk genes may converge to commonly affect the robustness of synaptic transmission.
机译:我们鉴定了一组常见的表型改性剂,其与五个独立的自闭症基因直肠(RIMS1,CHD8,CHD2,WDFY3,ASH11)相互作用,导致果蝇中的突触前稳性塑性(PHP)的常见失败。证明每种自闭症基因中的杂合无效突变具有正常的基线神经递质和PHP。但是,PHP敏感并易于失败。随后的基于电生理学的遗传筛网鉴定了一种与多个ASD基因直肠的遗传相互作用的第一已知的杂合突变,导致PHP失效。在筛选中,PDPK1和PPP2R5D中鉴定的两种表型改性剂的特征在于。最后,转录组,超微结构和电生理学分析定义了PHP失败的一种机制;一种意外,不良的升高调节,保守,神经表达,应激反应基因和PHP的新型压抑。因此,我们定义了一种新的遗传景观,通过这种方式,多样化的无关的自闭症风险基因可能会聚,以通常影响突触传输的稳健性。

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