Cryo-EM/ET of anaerobic CO₂ fixation
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Link: www.biorxiv.org/content/10.1...
Link: www.biorxiv.org/content/10.1...
We present guidelines, limitations & future perspectives for processing amyloids in cryoSPARC @structurabio.bsky.social.
Great collaboration of the Kelly Lab and @landerlab.bsky.social #cryoEM #amyloid www.biorxiv.org/content/10.1...
We present guidelines, limitations & future perspectives for processing amyloids in cryoSPARC @structurabio.bsky.social.
Great collaboration of the Kelly Lab and @landerlab.bsky.social #cryoEM #amyloid www.biorxiv.org/content/10.1...
#TeamTomo #PlantScience 🧪 🧶🧬 🌾
elifesciences.org/articles/105...
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#TeamTomo #PlantScience 🧪 🧶🧬 🌾
elifesciences.org/articles/105...
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We describe how to image membrane proteins in mid-sized vesicles using cryo-electron tomography
zenodo.org/records/1717...
We describe how to image membrane proteins in mid-sized vesicles using cryo-electron tomography
zenodo.org/records/1717...
We found that by using ab initio reconstruction at very high res, in very small steps, we could crack some small structures that had eluded us - e.g. 39kDa iPKAc (EMPIAR-10252), below.
Read on for details... 1/x
Congrats Hannah Ochner and authors on this important paper! Strong collaboration with @kiranrpatil.bsky.social
www.biorxiv.org/cgi/content/...
@mrclmb.bsky.social @wellcometrust.bsky.social
Congrats Hannah Ochner and authors on this important paper! Strong collaboration with @kiranrpatil.bsky.social
www.biorxiv.org/cgi/content/...
@mrclmb.bsky.social @wellcometrust.bsky.social
It grows as tangled filaments, divides unevenly, reshapes its own membranes… and even builds grappling hooks.
Meet Litorilinea aerophila — and here’s why it blew our minds.
It grows as tangled filaments, divides unevenly, reshapes its own membranes… and even builds grappling hooks.
Meet Litorilinea aerophila — and here’s why it blew our minds.
Using #cryoET, #AlphaFold & proteomics, we uncover the native organization of plant intercellular nanopores.
🔗 doi.org/10.1101/2025...
🧪🧵1/n
#teamtomo #PlantScience #Physcomitrium #Arabidopsis #cryoEM
Using #cryoET, #AlphaFold & proteomics, we uncover the native organization of plant intercellular nanopores.
🔗 doi.org/10.1101/2025...
🧪🧵1/n
#teamtomo #PlantScience #Physcomitrium #Arabidopsis #cryoEM
well done @glynnca.bsky.social & @michaelgrange.bsky.social & fabulous co-authors 👏🏼
#teamtomo #cryoET
well done @glynnca.bsky.social & @michaelgrange.bsky.social & fabulous co-authors 👏🏼
#teamtomo #cryoET
www.sciencedirect.com/science/arti...
www.sciencedirect.com/science/arti...
the human gap junction at 14 Å resolution using cryo-ET.
The structure provides a blueprint for investigating how connexin
regulation shapes intercellular communication in health and disease.
the human gap junction at 14 Å resolution using cryo-ET.
The structure provides a blueprint for investigating how connexin
regulation shapes intercellular communication in health and disease.
In our new preprint, we used structural and genetic approaches to better understand how MmpS5L5 effluxes bedaquiline and how future resistance may evolve. 🧵🔽
#TBsky #MicroSky #TB
www.nature.com/articles/s41...
www.nature.com/articles/s41...
Thanks to @glynnca.bsky.social, @michaelgrange.bsky.social and the rest of the fabulous co-authors for all your contributions.
Excited to see where in tissue structural cell biology goes next 👀!
#liftlaughlove #teamtomo #whopper
Through the dedication of @glynnca.bsky.social and @cryingem.bsky.social we report a thorough method to image molecular organisation within hippocampus tissue.
Structural biology in tissue is well and truly here!
@rosfrankinst.bsky.social
Thanks to @glynnca.bsky.social, @michaelgrange.bsky.social and the rest of the fabulous co-authors for all your contributions.
Excited to see where in tissue structural cell biology goes next 👀!
#liftlaughlove #teamtomo #whopper
Through the dedication of @glynnca.bsky.social and @cryingem.bsky.social we report a thorough method to image molecular organisation within hippocampus tissue.
Structural biology in tissue is well and truly here!
@rosfrankinst.bsky.social
Through the dedication of @glynnca.bsky.social and @cryingem.bsky.social we report a thorough method to image molecular organisation within hippocampus tissue.
Structural biology in tissue is well and truly here!
@rosfrankinst.bsky.social
www.biorxiv.org/content/10.1101/2025.06.02.657420v1
www.biorxiv.org/content/10.1101/2025.06.02.657420v1
Taking two half maps as input, LcoScale-2.0 produces feature-enhanced maps along with a robust confidence score that guides objective map interpretation.
cryotud.github.io/locscale/
Taking two half maps as input, LcoScale-2.0 produces feature-enhanced maps along with a robust confidence score that guides objective map interpretation.
cryotud.github.io/locscale/