Mechanobiology Institute

@mbisg.bsky.social

Have you ever wondered how microtubules withstand and respond to mechanical stress in cells? Here we show by in vitro reconstitution assays that MAP65-1 and PRC1 promote microtubule nucleation on existing lattices, especially on those with structural irregularities linked to mechanical stress.

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bioRxivpreprint@biorxivpreprint.bsky.social · 11mo ago

MAP65-1/PRC1 reinforces microtubules through nucleation https://www.biorxiv.org/content/10.1101/2025.09.14.676082v1

Mineko Kengaku from Kyoto University continues the theme by sharing how Piezo-1 switches on a force generation mechanism in neuron migration and how DNA damage due to mechanostress in these narrow interstitial spaces is repaired by enhanced expression of topolsomerase IIb. #MBIMPG2025

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Next, Tamal Das @tifr.res.in revealed the influence of lysosomes in leader cell formation and the ER in supporting lamellipodial crawling and purse-string contraction, identifying them as key integrators of mechanochemical cues to drive collective cell migration. #MBIMPG2025

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Just one more day of #MBIMPG2025 left! But plenty to look forward to—one last Session of scientific talks, and two social excursions to the jungles! An exotic morning rainforest jungle walk and evening drinks at the concrete jungle roof-top bars @ Marina Bay! 🏞️🍹 See you there!

Time for some plant mechanobiology Yansong Miao from NTU Singapore spoke about how condensation drives immunity in plant cells. Using phase separation, modelling and biophysics, he presented how the mechanical scaffolding structure of the plant cell changes to combat pathogens. #MBIMPG2025

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