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丛状蛋白/信号素拮抗作用通过接触间充质化协调集体细胞迁移、间隙闭合和器官塑形。

Plexin/Semaphorin Antagonism Orchestrates Collective Cell Migration, Gap Closure and Organ sculpting by Contact-Mesenchymalization.

作者信息

Bischoff Maik C, Norton Jenevieve E, Peifer Mark

机构信息

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

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

出版信息

bioRxiv. 2024 Oct 11:2024.10.10.617649. doi: 10.1101/2024.10.10.617649.

Abstract

Cell behavior emerges from the intracellular distribution of properties like protrusion, contractility and adhesion. Thus, characteristic emergent rules of collective migration can arise from cell-cell contacts locally tweaking architecture - orchestrating self-regulation during development, wound healing, and cancer progression. The new testis-nascent-myotube-system allows dissection of contact-dependent migration in vivo at high resolution. Here, we describe a process driving gap-closure during migration: Contact-mesenchymalization via the axon guidance factor Plexin A. This is crucial for testis myotubes to migrate as a continuous sheet, allowing normal sculpting-morphogenesis. Cells must stay filopodial and dynamically ECM-tethered near cell-cell contacts to spread while collectively moving. Our data suggest Semaphorin 1B acts as a Plexin A antagonist, fine-tuning activation. Our data reveal a contact-dependent mechanism to maintain sheet-integrity during migration, driving organ-morphogenesis using a highly conserved pathway. This is relevant for understanding mesenchymal organ-sculpting and gap-closure in migratory contexts like angiogenesis.

摘要

细胞行为源自细胞内诸如突起、收缩性和粘附等特性的分布。因此,集体迁移的特征性涌现规则可能源于细胞间接触对局部结构的微调——在发育、伤口愈合和癌症进展过程中协调自我调节。新的睾丸新生肌管系统能够在体内以高分辨率剖析接触依赖性迁移。在此,我们描述了迁移过程中驱动间隙闭合的一个过程:通过轴突导向因子丛蛋白A进行接触间充质化。这对于睾丸肌管作为一个连续的薄片迁移至关重要,从而实现正常的塑形形态发生。细胞在集体移动时必须保持丝状伪足状态,并在细胞间接触附近动态地与细胞外基质相连以实现伸展。我们的数据表明,信号素1B作为丛蛋白A的拮抗剂,对激活进行微调。我们的数据揭示了一种在迁移过程中维持薄片完整性的接触依赖性机制,利用一条高度保守的途径驱动器官形态发生。这对于理解在诸如血管生成等迁移背景下的间充质器官塑形和间隙闭合具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13a4/11482903/1226be849e1a/nihpp-2024.10.10.617649v1-f0001.jpg

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