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TTL 表达调节上皮形态发生。

TTL-Expression Modulates Epithelial Morphogenesis.

作者信息

Müller Manuel, Ringer Karina, Hub Florian, Kamm Natalia, Worzfeld Thomas, Jacob Ralf

机构信息

Department of Cell Biology and Cell Pathology, Philipps-Universität Marburg, Marburg, Germany.

DFG Research Training Group, Membrane Plasticity in Tissue Development and Remodelling, Philipps-Universität Marburg, Marburg, Germany.

出版信息

Front Cell Dev Biol. 2021 Feb 5;9:635723. doi: 10.3389/fcell.2021.635723. eCollection 2021.

Abstract

Epithelial monolayer formation depends on the architecture and composition of the microtubule cytoskeleton. Microtubules control bidirectional trafficking and determine the positioning of structural cellular proteins. We studied the role of tubulin tyrosination in epithelial cell shape and motility. Tubulin tyrosine ligase (TTL), the enzyme that adds tyrosine to the carboxy terminus of detyrosinated α-tubulin, was depleted or overexpressed in 2D epithelial monolayers as well as in 3D intestinal organoids. We demonstrate qualitatively and quantitatively that in the absence of TTL the cells comprise high levels of detyrosinated tubulin, change their shape into an initial flat morphology and retardedly acquire a differentiated columnar epithelial cell shape. Enhanced adhesion and accelerated migration patterns of TTL-knockout cells combined with reverse effects in TTL-overexpressing cells indicate that the loss of TTL affects the organization of cell adhesion foci. Precipitation of detyrosinated tubulin with focal adhesion scaffold components coincides with increased quantities and persistence of focal adhesion plaques. Our results indicate that the equilibrium between microtubules enriched in detyrosinated or tyrosinated tubulin modulates epithelial tissue formation, cell morphology, and adhesion.

摘要

上皮单层形成依赖于微管细胞骨架的结构和组成。微管控制双向运输并决定细胞结构蛋白的定位。我们研究了微管蛋白酪氨酸化在上皮细胞形状和运动中的作用。在二维上皮单层以及三维肠类器官中,使给去酪氨酸化的α-微管蛋白羧基末端添加酪氨酸的酶——微管蛋白酪氨酸连接酶(TTL)缺失或过表达。我们定性和定量地证明,在没有TTL的情况下,细胞含有高水平的去酪氨酸化微管蛋白,其形状变为初始的扁平形态,并延迟获得分化的柱状上皮细胞形状。TTL基因敲除细胞增强的黏附力和加速的迁移模式,以及TTL过表达细胞中的相反效应表明,TTL的缺失会影响细胞黏附焦点的组织。去酪氨酸化微管蛋白与黏着斑支架成分的沉淀与黏着斑数量的增加和持续性一致。我们的结果表明,富含去酪氨酸化或酪氨酸化微管蛋白的微管之间的平衡调节上皮组织形成、细胞形态和黏附。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7bf1/7892909/296d276033fd/fcell-09-635723-g001.jpg

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