作者
Milos Galic, Isabell Begemann, Abhiyan Viplav, Maja Matis
发表日期
2014/5/4
期刊
Bioarchitecture
卷号
4
期号
4-5
页码范围
164-168
出版商
Taylor & Francis
简介
Force-regulation at cellular membranes relies on dynamic molecular platforms that integrate intra- and extracellular signals to control cell shape and function. To correctly respond to a continuously changing environment, activity of these platforms needs to be tightly controlled in space and time. Over the last few years, curvature-dependent mechano-chemical signal translation—a receptor-independent signaling mechanism where physical forces at the plasma membrane trigger nanoscale membrane deformations that are then translated into chemical signal transduction cascades—has emerged as a new signaling principle that cells use to regulate forces at the membrane. However, until recently, technical limitations have precluded studies of this force-induced curvature-dependent signaling at the physiological scale. Here, we comment on recent advancements that allow studying curvature-dependent signaling …
引用总数
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学术搜索中的文章
M Galic, I Begemann, A Viplav, M Matis - Bioarchitecture, 2014