🚨 Second preprint of the week!
We uncover the multiscale dynamics of active viscoelastic buckling in epithelia.
We harness these mechanical instabilities for synthetic morphogenesis.
Led by @onenimesa🙌. Theory by Marino Arroyo and team.
https://t.co/Gtmqggt4ou
A new optical biosensor can probe the activities of native GPCRs in live cells, and, unlike typical sensors doesn’t interfere with downstream signaling and can be deployed in many cell types with only a single construct. https://t.co/LwXiRz1EaC @scisignal
Sound-sheet microscopy is born! Congratulations to Baptiste Heiles, lab members and collaborators at the Shapiro Lab (Caltech) and Gazzola Lab (NIN/KNAW) for this scientific achievement 🚀.
In our new preprint, we study the physical aging of biochemically active condensates formed by an engineered Tau protein into disease-linked amyloid fibrils — and investigate whether small molecules can counteract this transition. @BanerjeeLab_UB
https://t.co/7z2JI83D4l
🧵1/3
Excited to share our work out in @CurrentBiology ! We find that SKAP's binding to microtubules *reduces* friction at the kinetochore-microtubule interface and increases attachment stability under force. Congrats to postdoc Miquel @RosasSalvans and all authors! With @Caleb_J_Rux and Moumita Das.
https://t.co/PAm2jdBd4Y
We are thrilled to share this work linking specific human brain cell types to psychiatric and neurological disorders, out now in @NatureNeuro https://t.co/mKe356T3cB See below for an overview and thanks to the amazing Tayden Li, @willgiardino, @deissero, and so many others!
Beyond excited to share my big @StJude news! We’re going to build an amazing hub for imaging technology development and deployment - driven by St Jude’s mission to transform the way the world understands and treats pediatric catastrophic diseases. Imaging innovators come join us!
Excited to share our new preprint! Exceptional work by postdoc @MikeLange identifies the first #LipidDroplet lipid quality control pathway! Droplet-localized FSP1 safeguards stored neutral lipids, blocking their peroxidation & #ferroptosis induction.🤩https://t.co/x6OEzcSafI
Just posted the most biologically important photopharmacology story we've had in the last few years.
Ditched the photoswitch design principles we used for the last 10 years, & started all over again.
And now it will work in vivo.
https://t.co/JTyPfgg3kn
🧵1/n🧵
Today in @ScienceMagazine we report how lipids specialize for life under the crushing pressures of the deep sea and what this means more broadly for the composition of cell membranes (1/n) https://t.co/AwHsqs6TkZ
Meet MagLOV: an engineered protein that responds STRONGLY to magnetic fields.
This is a fluorescence timelapse of MagLOV in E. coli. We're waving a (small) magnet under the plate.
Can you tell where the magnet is?
Want some? It's on Addgene now! https://t.co/eWs0aAIT1A
We used light to herd cell growth with @toettch lab! Optogenetics is pretty cool. Super fun collab. and exquisite data from @KevinSuhhh* and @RichardHT_*. Video: blue light pattern--> sheet of living tissue rearranges into creepy eye. See @toettch for🧵. https://t.co/wHP5WsBSZK