New tools reveal PCP-dependent polarized mechanics in the cortex and cytoplasm of single cells during convergent extension

Author:

Weng ShinuoORCID,Devitt Caitlin C.ORCID,Nyaoga Bill M.,Havnen Anna E.,Alvarado José,Wallingford John B.ORCID

Abstract

AbstractUnderstanding biomechanics of biological systems is crucial for unraveling complex processes like tissue morphogenesis. However, current methods for studying cellular mechanicsin vivoare limited by the need for specialized equipment and often provide limited spatiotemporal resolution. Here we introduce two new techniques, Tension by Transverse Fluctuation (TFlux) andin vivomicrorheology, that overcome these limitations. They both offer time-resolved, subcellular biomechanical analysis using only fluorescent reporters and widely available microscopes. Employing these two techniques, we have revealed a planar cell polarity (PCP)-dependent mechanical gradient both in the cell cortex and the cytoplasm of individual cells engaged in convergent extension. Importantly, the non-invasive nature of these methods holds great promise for its application for uncovering subcellular mechanical variations across a wide array of biological contexts.SummaryNon-invasive imaging-based techniques providing time-resolved biomechanical analysis at subcellular scales in developing vertebrate embryos.

Publisher

Cold Spring Harbor Laboratory

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