首页> 外文期刊>Stem Cell Research & Therapy >Single-molecule fluorescence in-situ hybridization reveals that human SHANK3 mRNA expression varies during development and in autism-associated SHANK3 heterozygosity
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Single-molecule fluorescence in-situ hybridization reveals that human SHANK3 mRNA expression varies during development and in autism-associated SHANK3 heterozygosity

机译:单分子荧光原位杂交揭示人类SHANK3 mRNA表达在发育过程中和自闭症相关的SHANK3杂合性中发生变化

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Deletions and mutations in the SHANK3 gene are strongly associated with autism spectrum disorder and underlie the autism-associated disorder Phelan–McDermid syndrome. SHANK3 is a scaffolding protein found at the post-synaptic membrane of excitatory neurons. Single-molecule fluorescence in-situ hybridization (smFISH) allows the visualization of single mRNA transcripts in vitro. Here we perform and quantify smFISH in human inducible pluripotent stem cell (hiPSC)-derived cortical neurons, targeting the SHANK3 transcript. Both smFISH and conventional immunofluorescence staining demonstrated a developmental increase in SHANK3 mRNA and protein, respectively, in control human cortical neurons. Analysis of single SHANK3 mRNA molecules in neurons derived from an autistic individual heterozygous for SHANK3 indicated that while the number of SHANK3 mRNA transcripts remained comparable with control levels in the cell soma, there was a 50% reduction within neuronal processes, suggesting that local, dendritic targeting of SHANK3 mRNA may be specifically affected in SHANK3 haploinsufficiency. Human SHANK3 mRNA shows developmentally regulated dendritic localization in hiPSC-derived neurons, which is reduced in neurons generated from a haploinsufficient individual with autism. Although further replication is needed, given the importance of local mRNA translation in synaptic function, this could represent an important early abnormality.
机译:SHANK3基因的缺失和突变与自闭症谱系障碍密切相关,并且是自闭症相关疾病Phelan–McDermid综合征的基础。 SHANK3是一种在兴奋性神经元的突触后膜上发现的支架蛋白。单分子荧光原位杂交(smFISH)可以在体外可视化单个mRNA转录本。在这里,我们执行和量化smFISH在人类诱导性多能干细胞(hiPSC)衍生的皮质神经元中,靶向SHANK3转录本。 smFISH和常规免疫荧光染色均显示在对照人类皮层神经元中,SHANK3 mRNA和蛋白质的发育分别增加。分析来自自闭症个体杂合子的SHANK3的神经元中的单个SHANK3 mRNA分子表明,尽管SHANK3 mRNA转录物的数量仍与细胞体中的对照水平相当,但神经元过程内减少了50%,表明局部树突状SHANK3 mRNA的靶向可能在SHANK3单倍剂量不足中受到特定影响。人SHANK3 mRNA在hiPSC衍生的神经元中显示出发育调控的树突状定位,而自闭症单倍体不足个体所产生的神经元中树突状定位减少。尽管需要进一步复制,但鉴于局部mRNA翻译在突触功能中的重要性,这可能代表重要的早期异常。

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