Could not be more proud to share my first PhD paper with you! Find out what makes an amino acid transporter ASCT2 function as an exchanger: https://t.co/gjPNlsi0S7
Check out our newest work on ASCT2. From the long lasting collaboration with my dear colleague Dirk Slotboom @MembraneEnzymo1 with the fantastic @amborowska leading the work in collaboration with the Marrink lab @CG_Martini 1/2 👇🏼
The last bit of my work in @CPaulino_ lab finally out in @NatureSMB 🥳 Really cool collaboration with @Lynagh_Lab and then PhD student Mowgli Dandamudi, which worked out a lot better than I could have hoped in the months I had left in the lab! 😊
🚨 Our next TRAP transporter story from @gha14 lab is published: We used cysteine-cross linking to trap conformational states and analysed domain interactions with sm-TIRF microscopy. Again, very nice collaboration with @UKubitscheck
and @GavinHThomas !
https://t.co/8CK9qQh8e4
Interested in stories about structure, mechanism, and ligand modulation of #receptors, #ionchannels and #transporters? Join us at the 2024 #Ligand Recognition and Molecular Gating GRS in Ventura, CA🇺🇸
Apply before Dec 17 for the talk and spread the word! https://t.co/RX7mnOKvgm
The fun part of having a new protein structure: Making #SciArt a #b3d! Check out our newest @Nature paper from the @CPaulino_ lab about a sperm-specific, voltage-gated transporter!
And thanks to @bradyajohnston for #MolecularNodes!
https://t.co/4yzR2ufC2f
1/10 With great pride I present our newest #CryoEM work pub. in @Nature. The 1st reported secondary-active transporter directly activated by membrane voltage. Full credit to the amazing @VKalienkova, @MartinPeter91 & @rheinbergerj 🧵👇🏽 for more info https://t.co/3kejSRGg6S
My first paper with @CPaulino_ lab just published in @Nature 🤯: Cryo-EM structures of the sperm-specific SLC9C1, a unique hyperpolarisation-activated transporter! Excellent work by first author @VKalienkova - glad to be part of this team!
https://t.co/4yzR2ufC2f
#CryoEM#b3d
Membrantransporter sorgen für Mobilität von Spermienzellen: Neu entdeckter Mechanismus trägt zum besseren Verständnis molekularer Grundlagen der Fortpflanzungsfähigkeit bei https://t.co/Qs6OKEBqxM
I was often asked what I was working on in @CPaulino_ group. Well, here it is! 🥁🥳 What a fascinating combination of ion channel and secondary active transporter domains in one protein! Great teamwork with @MartinPeter91@rheinbergerj
https://t.co/zsEpMrUMEj
RoseTTAFold updated to be All-Atom... biological assemblies containing proteins, nucleic acids, small molecules, metals, and covalent modifications ... and diffusion🤯https://t.co/36EtN0IzoL
Excited to share our work on how ECF #transporters use ATP binding to charge a molecular spring and tune the #membrane shape to expel membrane-embedded substrate-binding proteins from the docking site into the membrane. #cryoEM#Biochemistry#MDsimulation https://t.co/ZYz12Rz6Bh
We have been a bit quiet lately, doubting if Twitter is still a good platform for science, but this one we really wanted to share. @chancie_t and the rest of the team show how ECF #transporters shed off a subunit by #cryoEM, @CPaulino_
https://t.co/ffKaPmPJ2e