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感觉神经元转录组揭示了 mec-2/Stomatin 剪接的复杂神经元特异性功能和调控。

Sensory neuron transcriptomes reveal complex neuron-specific function and regulation of mec-2/Stomatin splicing.

机构信息

Southern Methodist University, Dallas, TX 75275, USA.

出版信息

Nucleic Acids Res. 2022 Mar 21;50(5):2401-2416. doi: 10.1093/nar/gkab1134.

Abstract

The function and identity of a cell is shaped by transcription factors controlling transcriptional networks, and further shaped by RNA binding proteins controlling post-transcriptional networks. To overcome limitations inherent to analysis of sparse single-cell post-transcriptional data, we leverage the invariant Caenorhabditis elegans cell lineage, isolating thousands of identical neuron types from thousands of isogenic individuals. The resulting deep transcriptomes facilitate splicing network analysis due to increased sequencing depth and uniformity. We focus on mechanosensory touch-neuron splicing regulated by MEC-8/RBPMS. We identify a small MEC-8-regulated network, where MEC-8 establishes touch-neuron isoforms differing from default isoforms found in other cells. MEC-8 establishes the canonical long mec-2/Stomatin isoform in touch neurons, but surprisingly the non-canonical short isoform predominates in other neurons, including olfactory neurons, and mec-2 is required for olfaction. Forced endogenous isoform-specific expression reveals that the short isoform functions in olfaction but not mechanosensation. The long isoform is functional in both processes. Remarkably, restoring the long isoform completely rescues mec-8 mutant mechanosensation, indicating a single MEC-8 touch-neuron target is phenotypically relevant. Within the long isoform we identify a cassette exon further diversifying mec-2 into long/extra-long isoforms. Neither is sufficient for mechanosensation. Both are simultaneously required, likely functioning as heteromers to mediate mechanosensation.

摘要

细胞的功能和特性由转录因子控制的转录网络决定,并进一步由 RNA 结合蛋白控制的转录后网络决定。为了克服稀疏单细胞转录后数据分析固有的局限性,我们利用不变的秀丽隐杆线虫细胞谱系,从数千个同基因个体中分离出数千个相同的神经元类型。由于测序深度和均匀性的增加,由此产生的深度转录组有利于剪接网络分析。我们专注于由 MEC-8/RBPMS 调节的机械感觉神经元剪接。我们确定了一个小的 MEC-8 调节网络,其中 MEC-8 建立了不同于在其他细胞中发现的默认异构体的机械感觉神经元异构体。MEC-8 在机械感觉神经元中建立了典型的长 mec-2/Stomatin 异构体,但令人惊讶的是,非典型的短异构体在其他神经元中占主导地位,包括嗅觉神经元,并且 mec-2 对嗅觉是必需的。强制内源性异构体特异性表达表明,短异构体在嗅觉中起作用,但不在机械感觉中起作用。长异构体在这两个过程中都具有功能。值得注意的是,恢复长异构体完全挽救了 mec-8 突变体的机械感觉,表明单个 MEC-8 机械感觉神经元靶标在表型上是相关的。在长异构体中,我们鉴定出一个盒外显子,进一步将 mec-2 多样化为长/超长异构体。两者都不足以进行机械感觉。两者都同时需要,可能作为异源二聚体起作用以介导机械感觉。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ef8/8934639/2f2824919fde/gkab1134figgra1.jpg

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