five

Mechanical heterogeneity along single cell-cell junctions is driven by lateral clustering of cadherins during vertebrate axis elongation

收藏
DataONE2021-07-27 更新2025-05-31 收录
下载链接:
https://search.dataone.org/view/sha256:3fd03b8114f56fd0413e76577394a1ba55a6d721228caf25aef1447ff6752fcd
下载链接
链接失效反馈
官方服务:
资源简介:
Morphogenesis is governed by the interplay of molecular signals and mechanical forces across multiple length scales.  The last decade has seen tremendous advances in our understanding of the dynamics of protein localization and turnover at sub-cellular length scales, and at the other end of the spectrum, of mechanics at tissue-level length scales.  Integrating the two remains a challenge, however, because we lack a detailed understanding of the subcellular patterns of mechanical properties of cells within tissues.  Here, in the context of the elongating body axis of Xenopus embryos, we combine tools from cell biology and physics to demonstrate that individual cell-cell junctions display finely-patterned local mechanical heterogeneity along their length. We show that such local mechanical patterning is essential for the cell movements of convergent extension and is imparted by locally patterned clustering of a classical cadherin.  Finally, the patterning of cadherins and thus local mecha...
创建时间:
2025-05-10
二维码
社区交流群
二维码
科研交流群
商业服务