Delighted to share that our latest cryo-EM work on ubiquinone-10 binding to mitochondrial respiratory complex I and conformational transitions accompanying Q-site occupancy is now out in @NatureComms!
@MRC_MBU@ArantesLab@HannahRBridges1 @BinerOlivier
https://t.co/GTLjwrK3ck
An exciting time in Solute Carrier research. Here are some of the areas where SLC structural biology is heading and where future opportunities for new discoveries and therapeutic interventions await. https://t.co/JHeCx7weEt https://t.co/UVm6apASDk @BiochemOxford@KavliOxford
Happy to see one of the last pieces of my PhD work published!
Very lucky to have awesome @TDendooven as a partner in crime
Also many thanks to @AlisterBurt, Dom, John, David and @RappsilberLab
This immungen elicited a high-quality growth inhibitory response. We also showed that a first dose of this highly focused immunogen, followed by subsequent doses of the broader immunogen, PfRH5, was most effective. Read all about it here:
https://t.co/342QdtiM1s
Happy to see our work on the structure of the outer kinetochore in print
https://t.co/VvKmx2snJy
Special thanks to David, Dom, @JYang188 and @ZhangZiguo
Glad to see the complementary study by @AndreaMusacchi1,@polley_dilse and @TobiasRaisch in the same issue! Congratulations 🎉
I'm delighted to share that the peer-reviewed version of our work investigating the molecular effects of NDUFS4 knockout on mitochondrial complex I is now published in The EMBO Journal @MRC_MBU https://t.co/xxgRPlHSDI
Structural basis of a regulatory switch in mammalian complex I
https://t.co/M9DwVdmxcd
A tour de force by Dan & John!👏🏼
Using coupled vesicles, they finally clarify the enigma surrounding the cryoEM open/closed & biochemical active/deactive states of complex I
#HirstLab@MRC_MBU
Awarded COSB best paper of 2022! This review explores mechanistic interpretations of closed/open states of mammalian complex I using cryoEM.
@injae_chung@MRC_MBU
https://t.co/fdzZdfISJI
Read our paper that is out in Cell Metabolism. We have profoundly depleted respirasomes in all tissues of the mouse. Surprisingly, bioenergetics and physiology is unaffected: https://t.co/pxViOAqBO6
A number of historical cryoem datasets of complex I for published structures from the Hirst lab have now been released on EMPIAR: EMPIAR-11648, EMPIAR-11653, EMPIAR-11654, EMPIAR-11655, EMPIAR-11656, EMPIAR-11657, EMPIAR-11672. Happy processing all!
Delighted to share my first first-author paper in @ScienceAdvances 🥳We determined the structure of H2O2-activated ATM bound to p53 peptide substrate and suggest a mechanism for ATM activation by oxidative stress.🧵(1/11)
https://t.co/5sxL7nP1O4
A new study published in @Cell_Metabolism by @mitopinionated at KI shows that supercomplexes have no major role in cellular energy production and that altered levels therefore are unlikely to affect physiology and disease. #mitochondria#metabolism
https://t.co/qjpPpbV7PU
Happy to share our work on the structure of the human outer kinetochore KMN network complex
Many thanks to David Barford, Dom Bellini, @JYang188 and @ZhangZiguo for working with me on this project.
https://t.co/BQuK5cmwKc
Very happy to share our most recent work in @ScienceAdvances where we analyse the networks of charged and polar residues and water molecules present in a 2.4-Å resolution structure of murine respiratory complex I to gain insights to candidate proton pathways and hydrated channels
Investigation of hydrated channels and proton pathways in a high-resolution cryo-EM structure of mammalian complex I | Science Advances https://t.co/Osh1OZdlpU @injae_chung@MRC_MBU
I'm very happy to be able to share our preprint on structurally characterising the effects of NDUFS4 knockout on mouse complex I https://t.co/v489dPpbJv
Our preprint show that knock-in mice with drastically reduced levels respirasomes have normal OXPHOS function and no obvious phenotypes! Very unexpected results indeed! Presented the story at EuroMit. Thanks all coauthors for a very nice collaboration!
https://t.co/xDlQrB0HVp
Happy to share our work on rotenone binding to respiratory complex I !
Rotenone is an archetypal natural product discovered centuries ago by the indigenous peoples of the Amazon, where it is still used today to aid in catching fish. (1/2)
https://t.co/cw6VmdPHD1
The antipsychotic medications aripiprazole, brexpiprazole and cariprazine are off-target respiratory chain complex I inhibitors https://t.co/ZBDNFdO5kz #bioRxiv