
Martin Peter
@MartinPeter91
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PostDoc @CPaulino_ lab, alumni @gha14 lab. Fascinated protein scientist with interest in membrane transporters.
Groningen Netherlands
Joined May 2020
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:
It took some time, but Anna’s @amborowska beautiful work on the exchange mechanism of ASCT2 is now out. Together with twitterless Gabriella and @CPaulino @alisa_garaeva @rheinbergerj @CG_Martini
https://t.co/41ulyTYiBh
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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 👇🏼
It took some time, but Anna’s @amborowska beautiful work on the exchange mechanism of ASCT2 is now out. Together with twitterless Gabriella and @CPaulino @alisa_garaeva @rheinbergerj @CG_Martini
https://t.co/41ulyTYiBh
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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! 😊
New paper alert!✨ @VKalienkova and @CPaulino_ with collaborator @DandamudiMowgli from @Lynagh_Lab unveil the structure of an FMRFamide receptor in Malacoceros fuliginosus, shedding light on neural signaling in invertebrates 🧠👏 @NatureSMB @UiB
https://t.co/Zo9KXKQvnl
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More beautiful data from @MartinPeter91 & @gha14 using @UKubitscheck cool sm-TIRF setup to drill down on conformational changes in the TRAP transport cycle. @BiologyatYork @YBRI_UoY - inspired by @Chris_mulligan work on VcINDY :-) #sialicacid #TRAPtransporter
🚨 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
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🚨 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
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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
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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
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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
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Membrantransporter sorgen für Mobilität von Spermienzellen: Neu entdeckter Mechanismus trägt zum besseren Verständnis molekularer Grundlagen der Fortpflanzungsfähigkeit bei https://t.co/Qs6OKEBqxM
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Structures of a sperm-specific solute carrier gated by voltage and cAMP | Nature https://t.co/cOHYXOBzk7
#CryoEM #transporter #MembraneProteins
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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
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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
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RoseTTAFold updated to be All-Atom... biological assemblies containing proteins, nucleic acids, small molecules, metals, and covalent modifications ... and diffusion🤯 https://t.co/36EtN0IzoL
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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
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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
nature.com
Nature Communications - The final step in an ECF transporters transport cycle involves the expulsion of the membrane embedded substrate binding protein (the S-component) from the motor (the ECF...
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2/2 Fantastic team work with my former @gha14 lab @IsbBonn/@UniBonn, especially @Yeojin5279Jini. And great collaboration again with Jan Ruland from @UKubitscheck lab and @GavinHThomas! Thanks to everyone!
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1/2 🚨Excited to share our latest preprint on TRAP-transporters! We used disulfide cross-linking & single-molecule TIRF microscopy to show how secondary elevators interact with binding proteins! What a nice conformational coupling! #glycotime
https://t.co/f7BuxVlq2J
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Yesterday was already my last day @univgroningen and @MembraneEnzymo1. What a wonderful year - met a lot of very nice people and fantastic scientists. And also had some time to enjoy the beautiful city of Groningen. Thanks to all who have been part of it!
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