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一项大规模反向遗传学筛选鉴定出众多睾丸新生肌管集体细胞迁移和集体器官塑形的调节因子。

A large reverse-genetic screen identifies numerous regulators of testis nascent myotube collective cell migration and collective organ sculpting.

作者信息

Bischoff Maik C, Norton Jenevieve E, Munguia Erika A, Clark Sarah E, Gurley Noah J, Korankye Rebecca, Gyabaah Emmanuel Addai, Encarnacion Taino, Serody Christopher J, Jones Corbin D, Peifer Mark

机构信息

Department of Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599-3280.

Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599.

出版信息

Mol Biol Cell. 2025 Feb 1;36(2):ar21. doi: 10.1091/mbc.E24-10-0456. Epub 2025 Jan 2.

Abstract

Collective cell migration is critical for morphogenesis, homeostasis, and wound healing. Migrating mesenchymal cells form tissues that shape the body's organs. We developed a powerful model, exploring how nascent myotubes migrate onto the testis during pupal development, forming the muscles ensheathing it and creating its characteristic spiral shape. To define genes regulating this, we used RNA sequencing (RNA-seq) to identify genes expressed in myotubes during migration. Using this dataset, we curated a list of 131 ligands, receptors, and cytoskeletal regulators, including all Rho/Ras/Rap1 regulators, as candidates. We then expressed 279 short hairpin RNAs (shRNAs) targeting these genes and examined adult testes. We identified 29 genes with diverse roles in morphogenesis. Some have phenotypes consistent with defective migration, while others alter testis shape in different ways, revealing the underlying logic of testis morphogenesis. We followed up on the Rho-family GEF dPix in detail. dPix knockdown drastically reduced migration and thus muscle coverage. Our data suggest different isoforms of dPix play distinct roles in this process and reveal a role for its partner Git. We also explored whether dPix regulates Cdc42 activity or cell adhesion. Our RNA-seq dataset and genetic analysis provide an important resource for the community to explore cell migration and organ morphogenesis.

摘要

集体细胞迁移对于形态发生、体内平衡和伤口愈合至关重要。迁移的间充质细胞形成塑造身体器官的组织。我们开发了一个强大的模型,探究在蛹发育过程中新生肌管如何迁移到睾丸上,形成包裹它的肌肉并形成其特有的螺旋形状。为了确定调控这一过程的基因,我们使用RNA测序(RNA-seq)来识别迁移过程中肌管中表达的基因。利用这个数据集,我们精心挑选了131个配体、受体和细胞骨架调节因子的列表,包括所有Rho/Ras/Rap1调节因子,作为候选基因。然后我们表达了针对这些基因的279个短发夹RNA(shRNA),并检查成年睾丸。我们鉴定出29个在形态发生中具有不同作用的基因。一些基因的表型与迁移缺陷一致,而另一些则以不同方式改变睾丸形状,揭示了睾丸形态发生的潜在逻辑。我们详细研究了Rho家族鸟苷酸交换因子dPix。敲低dPix会显著减少迁移,从而减少肌肉覆盖。我们的数据表明dPix的不同异构体在这个过程中发挥着不同的作用,并揭示了其伙伴Git的作用。我们还探究了dPix是否调节Cdc42活性或细胞粘附。我们的RNA-seq数据集和遗传分析为该领域探索细胞迁移和器官形态发生提供了重要资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc47/11809313/5fd727de5f15/mbc-36-ar21-g001.jpg

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