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Yingke Liang

@zestytoast.bsky.social
127 followers 446 following 0 posts

CryoEM, metabolism, and mycobacteria. PhD at the University of Toronto in the Rubinstein lab at SickKids.

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Reposted by Yingke Liang
John Rubinstein @johnrubinstein.bsky.social · 04/07/2026
New preprint! Karin Schumacher's postdoc Nadja used our SidK approach to purify Arabidopsis V-ATPase & Mariia Khamina determined its structure. The structure shows unique plant V-ATPase features and that TLDc proteins (here OXR5) bind V-ATPase in all eukaryotes. 🌱 tinyurl.com/mw9xaszk
Overall structure of Arabidopsis V-ATPase. (A) SDS-PAGE of purified V-ATPase. (B) Composite map of Arabidopsis V-ATPase in rotational state 1. (C) Atomic model of Arabidopsis V-ATPase in rotational state 1. (D) Cross sections of the V1 and VO regions in three rotational states. (E) Conformations of subunit H in V-ATPase structures of Arabidopsis V-ATPase (top) and the citrus fruit (bottom) V-ATPase.V-ATPase from the TGN/EE interacts with the TLDc protein OXR5. (A) Composite map of Arabidopsis V-ATPase in rotational state 1 bound to OXR5 (green density). (B) AlphaFold3 model (left) and domain organisation (right) of OXR5. (C) VHA-a1-mNG is localized at the TGN/EE. OXR5-PmScarlet-I shows partial overlap with VHA-a1-mNG at the TGN/EE. Scale bar, 20 µm. Root tip elongation zone of 5-day-old Arabidopsis seedlings were analyzed by confocal laser scanning microscopy. (D-H) Atomic model of Arabidopsis V-ATPase interactions with OXR5.
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Reposted by Yingke Liang
John Rubinstein @johnrubinstein.bsky.social · 28/03/2026
Congratulations on a great PhD defense @ianyyen.bsky.social! I've enjoyed discussing the finer points of cryo-EM with Ian, being on his advisory committee, and having him as an "honorary group member" these past 6 years.
A group photo of Ian with some of his friends from the 20th Floor Molecular Medicine. Everyone but Ian is wearing a tee shirts with a picture of Ian on it.
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John Rubinstein @johnrubinstein.bsky.social · 17/03/2026
Out now in EMBO J ahead of World #TB day! Our friends at the TB Drug Accelerator identified EtfD as a high-priority target for fast acting treatments so @courbongautier.bsky.social jumped into action. Our EtfD assay & struct are already being used to help find new therapeutics tinyurl.com/3cb2j5k9
On the left a light blue density map shows the structure of EtfD in a model membrane in orange. On the right, a schematic shows the path of electrons from beta-oxidation going ETF (the electron transfer flavoprotein) through four iron-sulfur clusters and a heme to reduce menaquinone in the EtfD structure.
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John Rubinstein @johnrubinstein.bsky.social · 06/03/2026
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...
Figure 1. Cryo-EM of abundant protein complexes in native membranes.Figure 2. Cryo-EM of membrane proteins in vesicles.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.
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Justin Di Trani @justinditrani.bsky.social · 28/02/2026
In the first preprint from the lab, @sandaru-ileperuma.bsky.social demonstrates that the P. aeruginosa NQR complex supports virulence factors and identifies inhibitors of this complex. He also uncovered some interesting NQR dynamics controlled at the substrate binding site. tinyurl.com/yush599n
tinyurl.com
Discovery of inhibitors of the Pseudomonas aeruginosa NADH:ubiquinone oxidoreductase (NQR) that hinder virulence factors
The growing threat of antimicrobial resistance has created an urgent need to identify novel therapeutic targets in bacteria. The NADH:ubiquinone oxidoreductase (NQR) is a potential target in a number of bacteria that transfers electrons from NADH to ubiquinone while pumping ions from the cytoplasm to the periplasm. In most species, this complex pumps sodium ions, whereas in Pseudomonas aeruginosa it pumps protons, thereby functioning as a member of the electron transport chain. Using a strain of PAO1 with the NQR knocked out, we demonstrate that the NQR complex plays a crucial role in the motility and biofilm development virulence factors in P. aeruginosa. We develop and execute a high-throughput inhibitor screen to identify and confirm compounds that inhibit NADH oxidation by this complex. Using single-particle cryogenic electron microscopy (cryoEM), we determine high-resolution structures of the NQR complex, both inhibitor-free and bound to one of the confirmed hits from our screen, demonstrating that it binds to the ubiquinone binding site. These structures provide insight into conformational dynamics controlled by binding at the ubiquinone site, with potential implications for the coupling between electron transfer and proton pumping in this complex. Biofilm development and motility assays with selected compounds from the screen show that they affect these virulence factors similarly to the NQR knockout. ### Competing Interest Statement The authors have declared no competing interest. Cystic Fibrosis Canada, https://ror.org/05b6dcx13 LKSIoV and University of Alberta Faculty of Medicine and Dentistry Startup funding Striving for Pandemic Preparedness – The Alberta Research Consortium Canada Research Chairs Canadian Institutes of Health Research, https://ror.org/01gavpb45 LKSIoV Research Support and Innovation Grant
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John Rubinstein @johnrubinstein.bsky.social · 30/01/2026
@structurabio.bsky.social and @sickkidsto.bsky.social CryoSPARC workshop in Toronto! April 30/May 1st 2026. Part of the Canadian Cryo-EM Nexus. Please register here: sickkids.cventevents.com/event/a0aebb...
Dear Colleagues,

As part of the Canadian Cryo-EM Nexus, The Hospital for Sick Children (SickKids) and Structura Biotechnology are hosting a two-day CryoSPARC workshop at SickKids in Toronto on April 30 and May 1, 2026. Led by experts from Structura, this workshop offers a unique opportunity for participants with prior CryoSPARC experience to deepen their skills and become a key resource for cryo-EM image analysis within their institutions. 

Applicants should have hands-on experience with CryoSPARC, demonstrated by having processed at least two datasets, and must be committed to sharing their expertise with colleagues upon returning to their home institution.

There is no charge for participating in the workshop, which is sponsored by SickKids and Structura. Attendees will need to bring their own laptop computer and arrange for travel, accommodation, and meals. Given the limited capacity (15 students), we kindly request that interested individuals ensure that they can cover these costs before registering. 

Please register before February 20, 2026 using the following link:

https://sickkids.cventevents.com/event/a0aebb07-66e6-4cbe-b471-8009fe0c227c/summary?i=97c975e9-4bac-42b9-a1b2-95974110db9e&tm=DXVv8zGvH5uA7nqj8lEF4iifi-ukLal5QBBjdXWGD2E&locale=en-US

We look forward to welcoming you to this workshop.

Sincerely,
Samir Benlekbir and John Rubinstein (SickKids) & CryoSPARC Team (Structura)
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John Rubinstein @johnrubinstein.bsky.social · 09/01/2026
Congratulations to the new Doctor of Philosophy @courbongautier.bsky.social on a spectacular PhD defense following a groundbreaking PhD! Thanks to external examiner Damian Ekiert from JHU and the rest of the examining committee. Next stop, Oxford University for a postdoctoral fellowship. 🇫🇷🇨🇦🇬🇧
Gautier Courbon stands at a podium presenting the acknowledgements slide from his PhD defense talk.Post exam reception for Gautier from members of the lab.
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John Rubinstein @johnrubinstein.bsky.social · 30/10/2025
New lab preprint! @zestytoast.bsky.social tagged a scarce mycobacterial protein in M. smegmatis with TwinStep but got… something? @kjamali.bsky.social's ModelAngelo built models & @martinsteinegger.bsky.social's FoldSeek IDed them as the biotin-containing MCC & LCC complexes 🧵 tinyurl.com/ukny4ptz
Cryo-EM maps and atomic models of the biotin-containing 3-methylcrotonyl-CoA carboxylase (MCC) complex and long-chain acyl-CoA carboxylase (LCC) complex
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John Rubinstein @johnrubinstein.bsky.social · 16/05/2025
EtfD links beta oxidation to OxPhos in mycobacteria - recent work suggests that targeting EtfD could shorten #tubeculosis treatment. But how does EtfD work? And how can you assay its activity? In his final PhD manuscript @courbongautier.bsky.social provides answers! www.biorxiv.org/content/10.1...
A) Diagram showing how EtfD transfers electrons from beta oxidation to the menaquinol pool in the membrane, linking beta oxidation to oxidative phosphorylation in mycobacteria.
B) A growth curve showing the Mycobacterium smegmatis lacking EtfD can grow when glucose is provided as the carbon source, but has a slight growth delay. Complementing the ∆etfD strain with M. tuberculosis on a plasmid rescues the defect.
C) A growth curve showing that ∆etfD M. smegmatis cannot grow on medium where the fatty acid oleic acid is the only carbon source. A plasmid with with M. tuberculosis EtfD rescues the defect.
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John Rubinstein @johnrubinstein.bsky.social · 21/03/2025
Now published J. Med. Chem! @zestytoast.bsky.social's structure of type II NADH dehydrogenase from mycobacteria. A promising drug target for TB & other mycobacterial infections, Yingke demonstrates how an inhibitor can block transfer of electrons from NADH to the ETC. pubs.acs.org/doi/full/10....
pubs.acs.org
Structure of Mycobacterial NDH-2 Bound to a 2-Mercapto-Quinazolinone Inhibitor
Mycobacterial type II NADH dehydrogenase (NDH-2) is a promising drug target because of its central role in energy metabolism in Mycobacterium tuberculosis and other pathogens, and because it lacks a k...
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John Rubinstein @johnrubinstein.bsky.social · 03/12/2024
Most protein complexes are born only once. V-ATPase assembles over and over as part of its regulatory mechanism, enabled by RAVE (regulator of ATPase of vacuoles and endosomes) @hanlinw222.bsky.social's 1st struct of RAVE bound to a partial V1 complex now out in PNAS. www.pnas.org/doi/10.1073/...
Cryo-EM map and atomic model of the RAVE complex (regulator of ATPases of endosomes and vacuoles) bound to a partial V1-ATPase complexAtomic model showing that the RAVE complex binds to a region of the V1 complex subunit A not found in the homologous ATP synthase subunit beta.
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Madhu Pai, MD, PhD @madhupai.bsky.social · 06/03/2025
With his new book 'Everything Is Tuberculosis,' author @johngreensbluesky.bsky.social is breathing new life into tuberculosis advocacy www.forbes.com/sites/madhuk...
forbes.com
John Green Tackles An Injustice Called Tuberculosis
With his new book 'Everything Is Tuberculosis,' celebrity author John Green is breathing new life into tuberculosis advocacy
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John Rubinstein @johnrubinstein.bsky.social · 19/02/2025
In @justinditrani.bsky.social final postdoc paper (with contributions from many others) we show that forming/purifying vesicles (here from M. smegmatis) allows structure det'n of *endogenous* membrane proteins in their *native lipid bilayer* 🧵 on methods & TB biology... www.pnas.org/doi/full/10....
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Harmit Singh Malik @harmitmalik.bsky.social · 23/02/2025
I think people both within science and outside science don’t fully appreciate the miracle that were the Covid-19 vaccines. How much courage it took to get the sequence out, how much work had already gone into figuring out the best viral antigen and how best to present it. 1/
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John Rubinstein @johnrubinstein.bsky.social · 26/01/2025
Mycobacterium leprae (leprosy) is alive and well as a neglected disease. M. leprae lacks Cyt. bd, which should make it vulnerable to Cyt. bcc-aa3 inhibitors like Telacebec (Q203; currently in Phase 2 for TB, despite an obvious liability). Also lacks Complex I, making NDH-2 inhibitors interesting.
Schematic depiction of the mycobacterial oxidative phosphorylation system, including the electron transport chain (Complex I,NDH-2, two succinate dehydrogenases, the CIII2CIV2 respiratory supercomplex Cyt. bcc-aa3, and Cyt. bd) and the ATP synthase.
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John Rubinstein @johnrubinstein.bsky.social · 09/01/2025
New preprint! @zestytoast.bsky.social provides the missing puzzle piece for a structural model of the mycobacterial OxPhos: NDH-2 We show the enzyme forms a dimer resembling eukaryotic, not prokaryotic, NDH-2s, and explain the SAR of a promising class of inhibitors. www.biorxiv.org/content/10.1...
Overall structure of mycobacterial NDH-2 (class II NADH dehydrogenase) dimer.
NDH-2 is the primary entry point for electrons into the mycobacterial electron transport chain.
Electrons are transferred from NADH to menaquinone via an FAD cofactor.Comparison of dimers formed by NDH-2 from M. smegmatis, C. thermarum, S. aureus, S. cerevisiae, and P. falciparum.
The M. smegmatis dimer looks much more like the eukaryotic dimers (S. cerevisiae and P. falciparum) than the prokaryotic dimers (C. thermarum and S. aureus).Structures for quinolinyl pyrimidine Compounds 13A and 13C, which do not appear to inhibit NDH-2 specifically as shown by enzyme assays, and 2-mercapto-quinazolinone Compound 1, which appears to inhibit NDH-2 specifically.Structure of mycobacterial NDH-2 bound to 2-mercapto-quinazolinone [(2-mercapto-quinazolinone N-cyclohexyl-2-[(4-oxo-1H-quinazolin-2-yl)sulfanyl]acetamide], explaining the protein-inhibitor interaction.
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Madhu Pai, MD, PhD @madhupai.bsky.social · 04/12/2024
www.science.org/doi/10.1126/...
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Alexandre Gouzy @alexandregouzy.bsky.social · 03/12/2024
Happy to share my first ever (co)last author paper 🥳 reporting on how Mtb adapts its carbon diet under acid stress. A big thank you to my partners in crime @saehrt.bsky.social and @healycl.bsky.social without who this would not have been possible 😘 journals.asm.org/doi/10.1128/...
journals.asm.org
An exacerbated phosphate starvation response triggers Mycobacterium tuberculosis glycerol utilization at acidic pH | mBio
Despite the availability of antibiotic treatment, M. tuberculosis (Mtb), the causative agent of tuberculosis (TB), remains a major infectious disease killer worldwide. A better understanding of the en...
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Basil Greber @bjgreber.bsky.social · 14/03/2024
Our paper on high-resolution #cryoEM of the human CDK-activating kinase for structure-based drug design has been published in Nature Communications! We determined more than a dozen 2 Å structures of the ligand-bound complex to investigate the mechanism of inhibitor selectivity.
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John Rubinstein @johnrubinstein.bsky.social · 02/04/2024
Years after the idea and preliminary experiments, Claire Coupland's amazing structure of the endogenous vacuolar- or vesicular-ATPase in its NATIVE vesicle is now in bioRxiv "High resolution cryo-EM of V-ATPase in native synaptic vesicles" www.biorxiv.org/content/10.1...
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John Rubinstein @johnrubinstein.bsky.social · 16/11/2024
Now out in Nature Comms! Sarah Bickers (Kanelis lab and Rubinstein lab) determines the structure of the *dimeric* form of the ABC protein Ycf1p. www.nature.com/articles/s41...
nature.com
Structure of a dimeric full-length ABC transporter - Nature Communications
Authors present the structure of Ycf1p, a homolog of multidrug resistance protein 1 (MRP1). The monomeric and dimeric Ycf1p species are differentially phosphorylated and possess different ATPase activ...
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