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RhoGAPp190:果蝇中 tbph 介导的神经退行性变的潜在参与者。

RhoGAPp190: A potential player in tbph-mediated neurodegeneration in Drosophila.

机构信息

International Centre for Genetic Engineering and Biotechnology, Trieste, Italy.

Department of Life Sciences, University of Trieste, Trieste, Italy.

出版信息

PLoS One. 2018 Apr 13;13(4):e0195845. doi: 10.1371/journal.pone.0195845. eCollection 2018.

Abstract

TDP-43 is an ubiquitous and highly conserved ribonucleoprotein involved in several cellular processes including pre-mRNA splicing, transcription, mRNA stability and transport. Notwithstanding the evidence of TDP-43 involvement in the pathogenesis of different neurodegenerative disorders (i.e. ALS and FTLD), the underlying mechanisms are still unclear. Given the high degree of functional similarity between the human and fly orthologs of TDP-43, Drosophila melanogaster is a simple and useful model to study the pathophysiological role of this protein in vivo. It has been demonstrated that the depletion of the TDP-43 fly ortholog (tbph) induces deficient locomotive behaviors and reduces life span and anatomical defects at the neuromuscular junction. In this study, using the known binding specificity of TDP-43/tbph for (UG) repeated sequences, we performed a bioinformatic screening for fly genes with at least 6 (TG) repeats in a row within the 3'-UTR regions in order to identify the genes that might be regulated by this factor. Among these genes, we were able to identify RhoGAPp190 as a potential target of the tbph-mediated neurodegeneration. RhoGAPp190 is a negative regulator of Drosophila RhoA, a GTPase protein implicated in the fine modulation of critical cellular processes including axon branch stability and motor axon defasciculation at muscle level and cognitive processes. We were able to demonstrate that the RhoGAPp190 expression is upregulated in a tbph-null fly model, providing evidence that this deregulation is associated to tbph silencing. Our results introduce RhoGAPp190 as a novel potential mediator in the complex scenario of events resulting from in vivo tbph loss-of-function.

摘要

TDP-43 是一种普遍存在且高度保守的核蛋白,参与多种细胞过程,包括前体 mRNA 剪接、转录、mRNA 稳定性和运输。尽管有证据表明 TDP-43 参与了不同神经退行性疾病(即 ALS 和 FTLD)的发病机制,但潜在的机制仍不清楚。鉴于 TDP-43 与人源和果蝇同源物之间高度的功能相似性,黑腹果蝇是研究该蛋白在体内病理生理作用的简单而有用的模型。已经证明,TDP-43 果蝇同源物(tbph)的耗竭会导致运动行为缺陷,并缩短寿命和神经肌肉接头的解剖缺陷。在这项研究中,我们利用 TDP-43/tbph 对(UG)重复序列的已知结合特异性,在 3'UTR 区域内进行了至少 6 个(TG)重复的果蝇基因的生物信息学筛选,以鉴定可能受该因子调控的基因。在这些基因中,我们能够鉴定出 RhoGAPp190 是 tbph 介导的神经退行性变的潜在靶标。RhoGAPp190 是果蝇 RhoA 的负调节因子,RhoA 是一种 GTP 酶蛋白,参与包括轴突分支稳定性和肌肉水平运动轴突去纤维、认知过程在内的关键细胞过程的精细调节。我们能够证明,RhoGAPp190 的表达在 tbph 缺失的果蝇模型中上调,这表明这种失调与 tbph 沉默有关。我们的研究结果将 RhoGAPp190 作为一种潜在的新型调节剂引入到源自体内 tbph 功能丧失的复杂事件场景中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abd6/5898758/0493261c8c5a/pone.0195845.g001.jpg

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