Multiple regulators constrain the abundance of Caenorhabditis elegans DLK-1 in ciliated sensory neurons.

IF 2.2 3区 生物学 Q3 GENETICS & HEREDITY G3: Genes|Genomes|Genetics Pub Date : 2025-03-18 DOI:10.1093/g3journal/jkaf004
Yue Sun, Junxiang Zhou, Arunima Debnath, Bokun Xie, Zhiping Wang, Yishi Jin
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Abstract

The conserved MAP3K DLKs are widely known for their functions in synapse formation, axonal regeneration and degeneration, and neuronal survival, notably under traumatic injury and chronic disease conditions. In contrast, their roles in other neuronal compartments are much less explored. Through an unbiased forward genetic screening in C. elegans for altered patterns of GFP-tagged DLK-1 expressed from the endogenous locus, we have recently uncovered a mechanism by which the abundance of DLK-1 is tightly regulated by intraflagellar transport in ciliated sensory neurons. Here, we report additional mutants identified from the genetic screen. Most mutants exhibit increased accumulation of GFP::DLK-1 in sensory endings, and the levels of misaccumulated GFP::DLK-1 are exacerbated by loss of function in cebp-1, the b-Zip transcription factor acting downstream of DLK-1. We identify several new mutations in genes encoding proteins functioning in intraflagellar transport and cilia assembly, in components of BBSome, MAPK-15, and DYF-5 kinases. We report a novel mutation in the chaperone HSP90 that causes misaccumulation of GFP::DLK-1 and up-regulation of CEBP-1 selectively in ciliated sensory neurons. We also find that the guanylate cyclase ODR-1 constrains GFP::DLK-1 abundance throughout cilia and dendrites of AWC neurons. Moreover, in odr-1 mutants, AWC cilia display distorted morphology, which is ameliorated by loss of function in dlk-1 or cebp-1. These data expand the landscape of DLK-1 signaling in ciliated sensory neurons and underscore a high degree of cell- and neurite- specific regulation.

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多个调节因子限制秀丽隐杆线虫纤毛感觉神经元中DLK-1的丰度。
保守的MAP3K DLKs因其在突触形成、轴突再生和退化以及神经元存活中的功能而广为人知,特别是在创伤性损伤和慢性疾病条件下。相比之下,它们在其他神经元室中的作用却很少被探索。通过对秀丽隐杆线虫中gfp标记的DLK-1内源性位点表达模式的无偏正向遗传筛选,我们最近发现了DLK-1的丰度受到纤毛感觉神经元的鞭毛内转运的严格调控的机制。在这里,我们报告了从基因筛选中发现的其他突变体。大多数突变体表现出GFP::DLK-1在感觉末端的积累增加,并且由于DLK-1下游的b-Zip转录因子cebp-1的功能丧失,错误积累的GFP::DLK-1水平加剧。我们发现了一些新的基因突变,这些基因编码的蛋白质在鞭毛内运输和纤毛组装中起作用,在BBSome、MAPK-15和DYF-5激酶的成分中起作用。我们报道了伴侣蛋白HSP90的一种新突变,该突变导致纤毛感觉神经元中GFP::DLK-1的错误积累和CEBP-1的选择性上调。我们还发现鸟苷酸环化酶ODR-1限制了AWC神经元纤毛和树突中GFP::DLK-1的丰度。此外,在odr-1突变体中,AWC纤毛表现出扭曲的形态,这通过dlk-1或cebp-1的功能丧失而得到改善。这些数据扩展了DLK-1信号在纤毛感觉神经元中的作用,并强调了高度的细胞和神经突特异性调控。
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来源期刊
G3: Genes|Genomes|Genetics
G3: Genes|Genomes|Genetics GENETICS & HEREDITY-
CiteScore
5.10
自引率
3.80%
发文量
305
审稿时长
3-8 weeks
期刊介绍: G3: Genes, Genomes, Genetics provides a forum for the publication of high‐quality foundational research, particularly research that generates useful genetic and genomic information such as genome maps, single gene studies, genome‐wide association and QTL studies, as well as genome reports, mutant screens, and advances in methods and technology. The Editorial Board of G3 believes that rapid dissemination of these data is the necessary foundation for analysis that leads to mechanistic insights. G3, published by the Genetics Society of America, meets the critical and growing need of the genetics community for rapid review and publication of important results in all areas of genetics. G3 offers the opportunity to publish the puzzling finding or to present unpublished results that may not have been submitted for review and publication due to a perceived lack of a potential high-impact finding. G3 has earned the DOAJ Seal, which is a mark of certification for open access journals, awarded by DOAJ to journals that achieve a high level of openness, adhere to Best Practice and high publishing standards.
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