Muscleblind-1 interacts with tubulin mRNAs to regulate the microtubule cytoskeleton in C. elegans mechanosensory neurons.

IF 4.5 2区 生物学 Q1 Agricultural and Biological Sciences PLoS Genetics Pub Date : 2023-08-21 eCollection Date: 2023-08-01 DOI:10.1371/journal.pgen.1010885
Dharmendra Puri, Sunanda Sharma, Sarbani Samaddar, Sruthy Ravivarma, Sourav Banerjee, Anindya Ghosh-Roy
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Abstract

Regulation of the microtubule cytoskeleton is crucial for the development and maintenance of neuronal architecture, and recent studies have highlighted the significance of regulated RNA processing in the establishment and maintenance of neural circuits. In a genetic screen conducted using mechanosensory neurons of C. elegans, we identified a mutation in muscleblind-1/mbl-1 as a suppressor of loss of kinesin-13 family microtubule destabilizing factor klp-7. Muscleblind-1(MBL-1) is an RNA-binding protein that regulates the splicing, localization, and stability of RNA. Our findings demonstrate that mbl-1 is required cell-autonomously for axon growth and proper synapse positioning in the posterior lateral microtubule (PLM) neuron. Loss of mbl-1 leads to increased microtubule dynamics and mixed orientation of microtubules in the anterior neurite of PLM. These defects are also accompanied by abnormal axonal transport of the synaptic protein RAB-3 and reduction of gentle touch sensation in mbl-1 mutant. Our data also revealed that mbl-1 is genetically epistatic to mec-7 (β tubulin) and mec-12 (α tubulin) in regulating axon growth. Furthermore, mbl-1 is epistatic to sad-1, an ortholog of BRSK/Brain specific-serine/threonine kinase and a known regulator of synaptic machinery, for synapse formation at the correct location of the PLM neurite. Notably, the immunoprecipitation of MBL-1 resulted in the co-purification of mec-7, mec-12, and sad-1 mRNAs, suggesting a direct interaction between MBL-1 and these transcripts. Additionally, mbl-1 mutants exhibited reduced levels and stability of mec-7 and mec-12 transcripts. Our study establishes a previously unknown link between RNA-binding proteins and cytoskeletal machinery, highlighting their crucial roles in the development and maintenance of the nervous system.

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Muscleblind-1与微管蛋白mRNA相互作用,调节秀丽隐杆线虫机械感觉神经元中的微管细胞骨架。
微管细胞骨架的调节对于神经元结构的发展和维持至关重要,最近的研究强调了受调节的RNA处理在神经回路的建立和维持中的重要性。在使用秀丽隐杆线虫的机械感觉神经元进行的遗传筛选中,我们确定了毒蕈林-1/mbl-1中的一个突变是驱动蛋白-13家族微管失稳因子klp-7缺失的抑制剂。Muscleblin-1(MBL-1)是一种RNA结合蛋白,调节RNA的剪接、定位和稳定性。我们的研究结果表明,mbl-1是后外侧微管(PLM)神经元轴突生长和适当突触定位所需的自主细胞。mbl-1的缺失导致PLM前突中微管动力学增加和微管的混合取向。在mbl-1突变体中,这些缺陷还伴随着突触蛋白RAB-3的异常轴突运输和轻柔触感的减少。我们的数据还表明,mbl-1在调节轴突生长方面与mec-7(β微管蛋白)和mec-12(α微管蛋白)具有遗传上位性。此外,mbl-1是sad-1的上位性,sad-1是BRSK/脑特异性丝氨酸/苏氨酸激酶的直系同源物,也是突触机制的已知调节因子,用于在PLM轴突的正确位置形成突触。值得注意的是,MBL-1的免疫沉淀导致mec-7、mec-12和sad-1 mRNA的共纯化,表明MBL-1和这些转录物之间存在直接相互作用。此外,mbl-1突变体表现出mec-7和mec-12转录物的水平和稳定性降低。我们的研究在RNA结合蛋白和细胞骨架机制之间建立了一种以前未知的联系,强调了它们在神经系统发育和维持中的关键作用。
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来源期刊
PLoS Genetics
PLoS Genetics 生物-遗传学
CiteScore
8.10
自引率
2.20%
发文量
438
审稿时长
1 months
期刊介绍: PLOS Genetics is run by an international Editorial Board, headed by the Editors-in-Chief, Greg Barsh (HudsonAlpha Institute of Biotechnology, and Stanford University School of Medicine) and Greg Copenhaver (The University of North Carolina at Chapel Hill). Articles published in PLOS Genetics are archived in PubMed Central and cited in PubMed.
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