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Equipment Supplement: Maintenance of Adhesion and Barrier Function during Epithelial Cell Shape Changes

Equipment Supplement: Maintenance of Adhesion and Barrier Function during Epithelial Cell Shape Changes
装备补充:上皮细胞形状变化过程中粘附和屏障功能的维持
批准号:
10797415
负责人:
Ann Louise Miller
金额:
$20.41万
依托单位国家:
美国
项目类别:
财政年份:
2015
资助国家:
美国
项目状态:
已结题
起止时间:
2015-08-01 至 2024-08-31

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中文摘要
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英文摘要
Equipment Supplement – Ann Miller, University of Michigan PROJECT SUMMARY Cell-cell junctions adhere epithelial cells to one another, transmit forces from cell to cell, and generate biological barriers that selectively regulate what can pass between cells in an epithelial tissue. Fundamental questions about how epithelial cell-cell junctions dynamically remodel in response to physiological forces that that chal- lenge cell adhesion and barrier function remain unanswered. In addition to being absolutely essential for devel- opment and maintenance of organ homeostasis, disruption of adhesion and barrier function contributes to dis- eases including cancer cell metastasis and Inflammatory Bowel Disease. Therefore, it is critical to determine the mechanisms that control cell-cell junction remodeling as epithelial cells change shape. This proposal builds on recent discoveries from the lab showing that Rho flares locally reinforce tight junctions following leaks in barrier function, and that adherens junctions are reinforced by recruitment of Vinculin to the cleavage furrow of dividing epithelial cells. The overall objective of this application is to identify mechanisms that promote maintenance of adhesion and barrier function at sites of epithelial cell division and junction elongation. Our central hypothesis is that locally applied mechanical forces challenge adherens junctions and tight junctions and elicit actomyosin-mediated re- inforcement required for maintenance of adhesion and barrier function at these sites. The central hypothesis will be tested by pursuing three specific aims: 1) Identify how mechanically-induced tight junction leaks trigger Rho flares. 2) Determine how Rho flare-mediated junction contractility repairs tight junctions. 3) Define mechanisms that mediate tension transmission and barrier maintenance at sites of locally increased tension. The proposed research is innovative because it applies powerful experimental tools including: a developing ver- tebrate model system (Xenopus laevis embryos), a live imaging barrier assay recently developed in the lab, proven approaches to locally or globally manipulate tension in the intact epithelium, probes for live imaging of active Rho dynamics as well as a host of cytoskeletal proteins, junction proteins, Rho regulators, and cytoplasmic calcium, and specialized analysis tools to quantitatively analyze live imaging data. The proposed research is significant because it will advance our knowledge about a fundamentally important problem in epithelial cell biology: how epithelial cells undergo dramatic cell shape changes like cytokinesis yet maintain tissue integrity and barrier function.
期刊论文(13)
专著(0)
科研奖励(0)
会议论文
ZnUMBA - a live imaging method to detect local barrier breaches.
ZnUMBA - 一种检测局部屏障破坏的实时成像方法。
DOI: 10.1242/jcs.260668
发表时间: 2023
期刊: Journal of cell science
影响因子: 4
作者: [Higashi,Tomohito, Stephenson,RachelE, Schwayer,Cornelia, Huljev,Karla, Higashi,AtsukoY, Heisenberg,Carl-Philipp, Chiba,Hideki, Miller,AnnL]
通讯作者: Miller,AnnL
Tools for live imaging of active Rho GTPases in Xenopus.
用于非洲爪蟾中活性 Rho GTPases 实时成像的工具。
DOI: 10.1002/dvg.22998
发表时间: 2017
期刊: Genesis (New York, N.Y. : 2000)
影响因子: --
作者: [Stephenson,RachelE, Miller,AnnL]
通讯作者: Miller,AnnL
DOI: 10.1091/mbc.e16-10-0697
发表时间: 2017-07-15
期刊: Molecular biology of the cell
影响因子: 3.3
作者: [Higashi T, Miller AL]
通讯作者: Miller AL
DOI: 10.1091/mbc.e18-02-0133
发表时间: 2019-01-01
期刊: Molecular biology of the cell
影响因子: 3.3
作者: [Higashi T, Stephenson RE, Miller AL]
通讯作者: Miller AL
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    Maintenance of Adhesion and Barrier Function during Epithelial Cell Shape Changes
    Maintenance of Adhesion and Barrier Function during Epithelial Cell Shape Changes
    Regulation of localized RhoA activity in dividing epithelial cells
    Maintenance of Adhesion and Barrier Function during Epithelial Cell Shape Changes
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