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Yep, you are right, Andrew

3 weeks ago 0 0 0 0
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Hot out of the press: Auxiliary subunits reshape structural asymmetry and functional plasticity in heterotetrameric GluA1/A2 AMPA receptor core! Structures of the most abundant AMPA receptor di-heteromer GluA1/A2 in the closed, open, and desensitized states! www.nature.com/articles/s41...

3 weeks ago 21 1 1 0
Figure 1. Cryo-EM of abundant protein complexes in native membranes.

Figure 1. Cryo-EM of abundant protein complexes in native membranes.

Figure 2. Cryo-EM of membrane proteins in vesicles.

Figure 2. Cryo-EM of membrane proteins in vesicles.

Figure 3. 3D reconstruction of V-ATPase in native synaptic vesicle membranes.

Figure 3. 3D reconstruction of V-ATPase in native synaptic vesicle membranes.

Figure 4. Generation of membrane vesicles for structure determination of proteins in their native lipid bilayer.

Figure 4. Generation of membrane vesicles for structure determination of proteins in their native lipid bilayer.

I've written a review on what I think is an extremely exciting direction in cryo-EM:

Cryo-EM of endogenous membrane proteins in their native lipid bilayer

Open access in Quarterly Reviews of Biophysics:
doi.org/10.1017/S003...

1 month ago 173 65 3 2
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Claudin 24—A novel enhancer of AMPA receptor fidelity The claudin subfamily family member Cldn24 is identified as an AMPAR auxiliary subunit.

Claudin 24—A novel enhancer of AMPA receptor fidelity | Science Advances www.science.org/doi/10.1126/...

1 month ago 6 3 1 0
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Happy to share new review of endothelium glutamate receptors in brain pathology.
www.frontiersin.org/journals/pha...

4 months ago 4 0 0 0

Thank you, Laetitia!

4 months ago 2 0 0 0
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Oligonucleotide (ON) RGLS4326 designed for treatment of ADPKD caused CNS-related toxicity due to competitive antagonism of AMPA receptors. Understanding this allowed making a new ON devoid of toxicity. Collaboration with Regulus/Novartis! @LauraYen42 @MariaKarela3 www.nature.com/articles/s41...

4 months ago 8 2 0 1
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Discovery of new AMPA receptor regulators – RNA molecules that act as competitive antagonists causing CNS-related toxicity when intended for treatment of autosomal dominant polycystic kidney disease (ADPKD). Collaboration with Regulus Therapeutic/Novartis! www.nature.com/articles/s41...

4 months ago 15 3 0 0
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Oligonucleotide (ON) RGLS4326 designed for treatment of ADPKD caused CNS-related toxicity due to competitive antagonism of AMPA receptors. Understanding this allowed making a new ON devoid of toxicity. Collaboration with Regulus/Novartis! @LauraYen42 @MariaKarela3 www.nature.com/articles/s41...

4 months ago 8 2 0 1

Thanks!

5 months ago 1 0 0 0
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Now in the journal issue! Structures of kainate receptor GluK2 in the closed apo state and open conducting state bound to agonist kainate and positive allosteric modulator BPAM. www.nature.com/articles/s41...

5 months ago 7 0 1 0
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Now in the journal issue! Molecular mechanism of activation of kainate receptor GluK2 in complex with auxiliary subunit Neto2.
www.nature.com/articles/s41...

5 months ago 9 1 0 0

Thank you!

5 months ago 0 0 0 0
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Magnesium site in human oncochannel TRPV6 is formed by two negatively charged residues that are close together in the closed state and separated in the open state. Mg2+ binding keeps these residues together and stabilizes the closed state. With Chubanov/Efremov labs! www.nature.com/articles/s41...

5 months ago 4 0 1 0
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Magnesium site in TRPV6 is formed by two negatively charged residues that are close together in the closed state and separated in the open. Magnesium binding keeps them together and stabilizes the closed state. Amazing collaboration with Chubanov and Efremov groups. www.nature.com/articles/s41...

5 months ago 7 0 0 0
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Magnesium site in TRPV6 is formed by two negatively charged residues that are close together in the closed state and separated in the open. Magnesium binding keeps them together and stabilizes the closed state. Amazing collaboration with Chubanov and Efremov groups.
www.nature.com/articles/s41...

5 months ago 2 0 0 0
Magnesium site is formed by two negatively charged residues that are close together in the closed state and separated in the open state. Magnesium binding keeps these residues together and stabilizes the closed state.

Magnesium site is formed by two negatively charged residues that are close together in the closed state and separated in the open state. Magnesium binding keeps these residues together and stabilizes the closed state.

Happy to share the locking mechanism of human oncochannel TRPV6 inhibition by intracellular magnesium. Amazing collaboration with Chubanov and Efremov groups. www.nature.com/articles/s41...

5 months ago 1 0 0 0
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Structural basis for agonist and heat activation of nociceptor TRPM3 - Nature Structural & Molecular Biology TRPM3 is an ion channel that helps the body sense heat and contributes to pain. The authors show that both heat and small chemical molecules switch it on through similar changes inside the protein.

www.nature.com/articles/s41...

5 months ago 9 2 0 0
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Asymmetric gating of a homopentameric ion channel GLIC revealed by cryo-EM | PNAS Pentameric ligand-gated ion channels (pLGICs) are vital neurotransmitter receptors that are key therapeutic targets for neurological disorders. Alt...

Pleasure to be part of this work www.pnas.org/doi/10.1073/... with Sandip Basak at NTU where we show asymmetric gating in GLIC!

5 months ago 11 3 0 0
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Happy to share our new review of kainate receptor structure and gating. www.frontiersin.org/journals/pha...

6 months ago 12 2 1 2
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Congratulations, Yifan, for the Anatrace Award! Yifan’s work on the TRPV1 structure with David Julius helped launch the Resolution Revolution in cryo-EM. Not just in membrane proteins—hardly any area of biophysics today has remained untouched by the techniques Yifan pioneered.

6 months ago 15 6 0 0

Congrats, Gabriela!

6 months ago 1 0 0 0
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Cryo-EM snapshots of NMDA receptor activation illuminate sequential rearrangements Opening of the NMDA receptor involves bending of the helices lining the ion channel gate.

Cryo-EM snapshots of NMDA receptor activation illuminate sequential rearrangements | Science Advances www.science.org/doi/10.1126/...

6 months ago 17 7 5 1
https://www.biorxiv.org/content/10.1101/2025.09.16.676506v1

How the twin-arginine translocase (Tat) system manages to transport folded proteins across membranes without any leaks? To answer this fundamental question we solved the first structure of TatB3C3 complex with bound cargo. Please check out new preprint!
t.co/962Kj9pt6F

7 months ago 54 18 2 1

Congrats, Ed!

7 months ago 1 0 1 0
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🚨🧠🔬 A major breakthrough in molecular neuroscience:

I am excited to share a new story from our lab, published in accelerated format today by @nature.com:

"Delta-type glutamate receptors are ligand-gated ion channels"

Read more here (free article link): rdcu.be/eGIKz

7 months ago 96 34 10 2
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GluA4 AMPA receptor gating mechanisms and modulation by auxiliary proteins - Nature Structural & Molecular Biology Vega-Gutiérrez et al. present cryo-electron microscopy structures of GluA4-containing AMPA receptors, which are key for brain signaling. They show GluA4-specific conformations and explain how subunit ...

www.nature.com/articles/s41...

7 months ago 2 0 0 1
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Happy to share the molecular mechanism of activation of kainate-subtype ionotropic glutamate receptor GluK2 in complex with auxiliary subunits Neto2. In both closed/apo and open states, ligand-binding domain (LBD) layer has 2-fold rotational symmetry!
www.nature.com/articles/s41...

7 months ago 20 4 0 0
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Happy to share our new review on the structural pharmacology of TRP channels!
Check out the supplementary table, which includes a list of all ligands, corresponding PDBs of complexes with TRP channels, and reported affinity values.

www.sciencedirect.com/science/arti... #ionchannel #TRPchannel (1/5)

1 year ago 28 7 1 1