PaxillinB在盘状骨细胞-底物粘附中的差异动力学。

IF 1.7 4区 生物学 Q3 BIOLOGY
Biology Open Pub Date : 2025-10-15 Epub Date: 2025-09-26 DOI:10.1242/bio.062197
Julio C Fierro Morales, Minna Roh-Johnson
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引用次数: 0

摘要

基于黏附的迁移是由黏附调控的,黏附是一种多蛋白纳米结构,将细胞内的细胞骨架与细胞外的底物连接起来。基于黏附的高效迁移受黏附动力学的调控,如黏附寿命、大小和周转率,而这些又受黏附分子组成的影响。我们最近在盘形盘形骨中发现了具有不同分子组成的细胞-底物粘附群体的形成,但尚不清楚这些不同的组成如何影响盘形盘形骨的粘附动力学和细胞迁移。在这里,我们进一步研究了VinculinB -盘状网柱体定位的同源物在盘状网柱体粘附寿命和细胞迁移过程中蛋白质周转中的作用。研究表明,VinculinB与PaxillinB阳性细胞底物的共定位增加了粘附寿命,而不改变PaxillinB的营业额。我们进一步表明,截断PaxillinB n端,扰乱了VinculinB对粘附的共定位,也令人惊讶地增加了粘附寿命,减少了PaxillinB在粘附时的周转率。这些发现表明,与哺乳动物的局灶性黏附类似,盘基骨柱细胞-底物黏附的分子组成调节了它们的黏附寿命和蛋白质周转,这为盘基骨柱细胞迁移过程中细胞-底物黏附的功能提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Differential PaxillinB dynamics at Dictyostelium cell-substrate adhesions.

Differential PaxillinB dynamics at Dictyostelium cell-substrate adhesions.

Differential PaxillinB dynamics at Dictyostelium cell-substrate adhesions.

Differential PaxillinB dynamics at Dictyostelium cell-substrate adhesions.

Adhesion-based migration is regulated by focal adhesions: multi-protein nanostructures linking the intracellular cytoskeleton to the extracellular substrate. Efficient adhesion-based migration has been shown to be regulated by focal adhesion dynamics such as lifetime, size and turnover, which in turn are influenced by the molecular composition of focal adhesions. We recently identified the formation of cell-substrate adhesion populations in Dictyostelium discoideum with differing molecular compositions, but it is unclear how these distinct compositions influence Dictyostelium adhesion dynamics and cell migration. Here, we further investigate the role of VinculinB - the Dictyostelium homologue of Vinculin - localization on Dictyostelium adhesion lifetime and protein turnover during cell migration. We show that co-localization of VinculinB to PaxillinB-positive cell-substrate adhesions increases adhesion lifetime without changing PaxillinB turnover. We further show that truncation of the PaxillinB N-terminus, which perturbs VinculinB co-localization to adhesions, surprisingly also increases adhesion lifetime and decreases PaxillinB turnover at adhesions. These findings suggest that similar to mammalian focal adhesions, molecular composition of Dictyostelium cell-substrate adhesion regulates their adhesion lifetimes and protein turnover, providing insight into how cell-substrate adhesions function during Dictyostelium cell migration.

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来源期刊
Biology Open
Biology Open BIOLOGY-
CiteScore
3.90
自引率
0.00%
发文量
162
审稿时长
8 weeks
期刊介绍: Biology Open (BiO) is an online Open Access journal that publishes peer-reviewed original research across all aspects of the biological sciences. BiO aims to provide rapid publication for scientifically sound observations and valid conclusions, without a requirement for perceived impact.
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