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Irina Talyzina

@irinatalyzina

PhD student studying TRP channels by cryo-EM at Sobolevsky lab @sobolevsky.bsky.social

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15.11.2024
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Latest posts by Irina Talyzina @irinatalyzina

CryoWriter: A Robotic Solution for Improved Cryo-EM Grid Preparation https://www.biorxiv.org/content/10.1101/2025.11.01.686008v1

03.11.2025 01:47 πŸ‘ 6 πŸ” 3 πŸ’¬ 0 πŸ“Œ 2
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Happy to share our new review of kainate receptor structure and gating. www.frontiersin.org/journals/pha...

20.10.2025 19:14 πŸ‘ 12 πŸ” 2 πŸ’¬ 1 πŸ“Œ 2
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πŸš¨πŸ§ πŸ”¬ 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

16.09.2025 16:47 πŸ‘ 97 πŸ” 34 πŸ’¬ 10 πŸ“Œ 2
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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...

11.09.2025 13:17 πŸ‘ 20 πŸ” 4 πŸ’¬ 0 πŸ“Œ 0
Upper - cryo-EM reconstruction of stomatin AQP1 complex. Lower - reconstruction of stomatin-UT-B complex.

Upper - cryo-EM reconstruction of stomatin AQP1 complex. Lower - reconstruction of stomatin-UT-B complex.

Happy to share a new preprint from the Clarke & Vallese (@fravallese.bsky.social) labs reporting #cryoem structures of two RBC stomatin complexes – with AQP1 & UT-B - continuing the SPFH theme from our recent vault preprint! This was a fun one and has been cooking for a while - read on for more! ⬇️

30.08.2025 14:10 πŸ‘ 119 πŸ” 30 πŸ’¬ 8 πŸ“Œ 7
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CryoDRGN-AI: a deep learning-based ab initio reconstruction method for dynamic biomolecular complexes from cryo-ET and cryo-EM data.

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

26.06.2025 18:53 πŸ‘ 12 πŸ” 4 πŸ’¬ 0 πŸ“Œ 0
At left, a reconstruction of the vault cap with C39 symmetry imposed; at right, the reconstruction after identifying the correct symmetry, with the three non-equivalent protomers highlighted.

At left, a reconstruction of the vault cap with C39 symmetry imposed; at right, the reconstruction after identifying the correct symmetry, with the three non-equivalent protomers highlighted.

1/x New story - the structure of the Vault cap, at 2.3Γ…! Matching a beautiful preprint from @sjorsscheres.bsky.social, we show that the cap of the vault particle has C13 symmetry, in contrast to the 39-fold symmetry of the body. Study lead by talented postdoc @huanli00.bsky.social from my group! ⬇️

12.06.2025 13:44 πŸ‘ 112 πŸ” 27 πŸ’¬ 2 πŸ“Œ 5
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The ABC transporter MsbA in a dozen environments Hoffmann and Baier etΒ al. systematically examined the conformational spectrum of the ABC transporter MsbA in 12 different membrane mimics using cryo-EM. Their results highlight environment-dependent b...

Don't say you know your transporter unless you've seen it in a dozen environments!πŸ§ͺ😍

Beautiful & important paper by @leahoffmann.bsky.social @anikabaier.bsky.social @dmitryshvarev.bsky.social @jhschaef.bsky.social @djanuliene.bsky.social @arnemoeller.bsky.social πŸ₯³

www.cell.com/structure/fu...

08.03.2025 09:20 πŸ‘ 26 πŸ” 5 πŸ’¬ 0 πŸ“Œ 1

MISO: Microfluidic protein isolation enables single particle cryo-EM structure determination from a single cell colony https://www.biorxiv.org/content/10.1101/2025.01.10.632437v1

14.01.2025 21:49 πŸ‘ 15 πŸ” 5 πŸ’¬ 0 πŸ“Œ 1
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Thermo‐TRP #ionchannels regulation by endogenous factors and its physiological function at core body temperature - Kashio - 2025 - Physiological Reports - Wiley Online Library https://buff.ly/3PumuZh

12.01.2025 18:28 πŸ‘ 5 πŸ” 1 πŸ’¬ 0 πŸ“Œ 0

Calmodulin binding is required for calcium mediated TRPA1 desensitization https://www.biorxiv.org/content/10.1101/2024.12.11.627969v1

13.12.2024 02:46 πŸ‘ 1 πŸ” 1 πŸ’¬ 0 πŸ“Œ 0
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Postdoctoral Position in Structural Neuroscience and Immunology at CSHL Post a job in 3min, or find thousands of job offers like this one at jobRxiv!

jobrxiv.org/job/cold-spr.... The HF_Lab has a postdoc position to study the structural and functional aspects of signaling complexes involved in neuroplasticity, cancer immunology, and autoimmunity. Candidates with experience in cryo-EM and/or electrophysiology are highly encouraged to apply.

14.11.2024 21:19 πŸ‘ 3 πŸ” 5 πŸ’¬ 1 πŸ“Œ 0
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Interestingly, the vanilloid, melatonin, and mucolipin subfamilies of TRP channels follow a similar pattern of conformational changes upon opening, but inactivation occurs differently across subfamilies. (5/5)

01.12.2024 03:00 πŸ‘ 3 πŸ” 0 πŸ’¬ 0 πŸ“Œ 0
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To date, several structures of TRP channels in complexes with interacting proteins were published: TRPV5/6 and TRPC4 with calmodulin, TRPV4 with RhoA, TRPM3 with GΞ²Ξ³, and TRPC5 with GΞ±i3. (4/5)

01.12.2024 03:00 πŸ‘ 3 πŸ” 0 πŸ’¬ 1 πŸ“Œ 0
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In the apo state, in high-resolution structures, many of these ligand-binding sites are occupied by annular lipids. However, not all lipid sites were reported to be occupied by ligands, so these new sites might be interesting to explore pharmacologically. (3/5)

01.12.2024 03:00 πŸ‘ 2 πŸ” 0 πŸ’¬ 1 πŸ“Œ 0

We compared all structures of TRP channels released on the RCSB by 2024-08-14 and identified 40 distinct ligand-binding sites. (2/5)

01.12.2024 03:00 πŸ‘ 2 πŸ” 0 πŸ’¬ 1 πŸ“Œ 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)

01.12.2024 03:00 πŸ‘ 28 πŸ” 7 πŸ’¬ 1 πŸ“Œ 1
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A fun journey of full-length EGFR with Dan Leahy and
@edwardmarcotte.bsky.social at UT Austin @utaustin.bsky.social. See below:
Structure and organization of full-length Epidermal Growth Factor Receptor in extracellular vesicles by cryo-electron tomography www.biorxiv.org/content/10.1...

29.11.2024 06:14 πŸ‘ 93 πŸ” 24 πŸ’¬ 6 πŸ“Œ 7