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samlacey.bsky.social

@samlacey.bsky.social
244 followers 216 following 2 posts

Postdoc in Pigino lab at Human Technopole

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Wieczorek Lab @mike-wieczorek.bsky.social · 14/06/2026
New preprint! In collaboration with @xujwet.bsky.social, @pedrobeltrao.bsky.social, and Akhmanova and Beekman groups, we determined the structure of the transition zone microtubule doublet in mammalian motile cilia, providing potential insights into the regulation of IFT: tinyurl.com/fssnevuc
tinyurl.com
Structure of the mammalian ciliary transition zone microtubule doublet
The ciliary transition zone gates bidirectional protein trafficking to maintain the specialized ciliary proteome using microtubule doublets as a scaffold. While ciliary axonemal doublets are well-char...
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Helen Foster @helenfoster.bsky.social · 11/06/2026
There are lots of exciting opportunities to join the in situ structural biology community at Leeds this Autumn - 2 studentships in the Cheney PhD program (astbury.leeds.ac.uk/cheney-phd/) and I am recruiting a PhD student and research assistant. Please share and send any future tomographers our way!
astbury.leeds.ac.uk
Cheney Scholarship PhD Programme : The Astbury Centre for Structural Molecular Biology - "Understanding Life in Molecular Detail"
Applications are open for 2 PhD student places.  Closing date for applications is Thursday 26 June, 5pm. Interviews will be held on 9th July 2026. The Cheney Scholarship is a prestigious 4-year PhD pr...
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Helen Foster @helenfoster.bsky.social · 14/04/2026
I am delighted to be among this years winners awards from the Biochemical Society! The Early Career Award recognises the work I did during my PhD and postdoc, and hopefully signals a bright start for my new lab within the @astbury-bsl.bsky.social at the University of Leeds 💫
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Biochemical Society @biochemsoc.bsky.social · 14/04/2026
Utilising in situ structural biology to uncover fundamental mechanisms of cytoskeletal regulation, we're excited to present Helen Foster with an Early Career Research Award in 2027! Helen's research on immune cell cytoskeletal remodeling could open new frontiers in molecular immunology.
The Biochemical Society 2027 Early Career Research Award presented to Dr Helen Foster from University of Leeds, UK, with award logo and photo.
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(GIRISH)MALI LAB @dyneinassembly.bsky.social · 07/04/2026
Happy to share our latest work spearheaded by super talented PhD student Muyang Ren now out as a bioRxiv preprint. 'Motile ciliophagy promotes ciliary recycling under stress' www.biorxiv.org/content/10.6...
biorxiv.org
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Clinton Lau @ckylau.bsky.social · 30/03/2026
Check out our first lab preprint: A real team effort to understand the Plasmodium GAPM proteins, which form part of a essential bridge between the parasite's cytoskeleton and motility apparatus. Below is a sneak peek of some beautiful microscopy - light and electron! www.biorxiv.org/content/10.6...
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Elodie Carmen Leroy @ecleroy.bsky.social · 19/03/2026
🚨 Preprint alert! We solved the structure of human NSUN2 bound to Asp tRNA, revealing how it installs m⁵C and recognizes RNAs #CryoEM #RNABiology A collab between Casañal & Gullerova labs, with @miclass.bsky.social and me working side by side as co-first authors 🔗 doi.org/10.64898/202... (0/7🧵)
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Michelangelo Lassandro @miclass.bsky.social · 19/03/2026
📢 First preprint from the Casañal Lab! Excited to share our work on human NSUN2, done together with the brilliant @ecleroy.bsky.social. Using #CryoEM, we capture the dramatic structural rearrangement of tRNA as it flips a cytidine into the NSUN2 catalytic pocket for m⁵C modification. Take a look👇
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Gaia Pigino @gaiapigino.bsky.social · 09/02/2026
Proud and excited to share our work with the community! Helen @helenfoster.bsky.social Foster et al. study how #cilia axonemes are built. 👀 Don't miss the gorgeous and insightful movies by @margotriggi.bsky.social, they really show our discoveries in full action! www.biorxiv.org/content/10.6...
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(GIRISH)MALI LAB @dyneinassembly.bsky.social · 07/02/2026
Incredible new work on ciliary axoneme assembly spearheaded by @helenfoster.bsky.social (#NewPI) from the @gaiapigino.bsky.social. Like all good science, answers many questions & opens up many new ones! Kudos to the entire team for this important advance in cilia biology. Lovely animation!
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Helen Foster @helenfoster.bsky.social · 06/02/2026
There was so much to unpack with this data, we teamed up with the marvellous @margotriggi.bsky.social to help explain what we think is going on. (Please also check out our model of central apparatus assembly here: www.biorxiv.org/content/10.6...)
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Helen Foster @helenfoster.bsky.social · 06/02/2026
Very happy to say that our work on how axonemes are generated is now available on bioRxiv: www.biorxiv.org/content/10.6... - if you’ve ever wondered how the incredibly beautiful, complex structures within motile #cilia are constructed then this is for you!
biorxiv.org
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Scott Coyle @cellraiser.bsky.social · 18/11/2025
How do cells adapt morphology to function? In a 🔥 preprint by @zjmaggiexu.bsky.social , with @dudinlab.bsky.social and @amyweeks.bsky.social , we identify a self-organizing single-cell morphology circuit that optimizes the feeding trap structure of the suctorian P. collini. 🧵 tinyurl.com/4k8nv926
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(GIRISH)MALI LAB @dyneinassembly.bsky.social · 29/09/2025
Happy to share the inaugural paper from the lab. We describe a molecular mechanism for the activation of outer dynein arm motors that power the vital motion of cilia. Open access link below: www.nature.com/articles/s41... Here's a cool animated summary
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Caitie McCafferty @computingcaitie.bsky.social · 23/09/2025
I am excited to share our new preprint on the CAGE complex, a mysterious hollow protein complex that I first saw years ago while surveying Tetrahymena ciliary lysate www.biorxiv.org/content/10.1... #cilia #protistsonsky 🧬🧪
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Sven Lange @sven-m-lange.bsky.social · 20/08/2025
Excited to see this work published online at @cp-cell.bsky.social today! www.cell.com/cell/fulltex...
cell.com
A conserved mechanism for the retrieval of polyubiquitinated proteins from cilia
CFAP36, a conserved cilia-specific ubiquitin reader, partners with the ARL3 GTPase to enable the selective and directional retrieval of polyubiquitinated proteins from cilia, a process essential for m...
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Kat Toropova @kattoropova.bsky.social · 29/07/2025
Thrilled to see our study on how kinesin-2 motors are switched on and off published in @natsmb.nature.com ⚛️ ➡️ www.nature.com/articles/s41... Congrats to all authors from me and Anthony 🎉 @dunnschool.bsky.social Check out this animation made by talented PhD student @matthew-batisio.bsky.social 😆
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Alessandro Vannini @alessandrovannini.bsky.social · 03/07/2025
Condensin II activation by M18BP1: Molecular Cell www.cell.com/molecular-ce...
cell.com
Condensin II activation by M18BP1
Borsellini, Conti, Cutts, Harris, et al. identify an interaction between M18BP1 and condensin II that is essential for condensin II activity and chromatin localization. MCPH1 keeps the interphase geno...
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Paolo Swuec @pscryoem.bsky.social · 12/06/2025
🚨 We're Hiring! We're looking for a passionate and skilled EM Specialist to join our team! 📅 Application Deadline: July 9th, 2025 🔗 Learn more and apply here: careers.humantechnopole.it/o/electron-m...
careers.humantechnopole.it
Human Technopole - Electron Microscopy (EM) Specialist
APPLICATION CLOSING DATE: July 9th 2025About the InstituteHuman Technopole (HT) is an interdisciplinary life science research institute, created and supported by the Italian government, with the aim o
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Sven Lange @sven-m-lange.bsky.social · 29/04/2025
How do cells keep their cilia “clean” and functional? Our new study uncovers a conserved mechanism for retrieving polyubiquitinated proteins from #cilia – a process essential for cellular signaling and health. #cellbiology #ciliopathy #ubiquitin #IFT 🧵👇 1/n
biorxiv.org
A conserved mechanism for the retrieval of polyubiquitinated proteins from cilia
The temporospatial distribution of proteins within cilia is regulated by intraflagellar transport (IFT), wherein molecular trains shuttle between the cell body and cilium. Defects in this process impair various signal-transduction pathways and cause ciliopathies. Although K63-linked ubiquitination appears to trigger protein export from cilia, the mechanisms coupling polyubiquitinated proteins to IFT remain unclear. Using a multidisciplinary approach, we demonstrate that a complex of CFAP36, a conserved ciliary protein of previously unknown function, and ARL3, a GTPase involved in ciliary import, binds polyubiquitinated proteins and links them to retrograde IFT trains. CFAP36 uses a coincidence detection mechanism to simultaneously bind two IFT subunits accessible only in retrograde trains. Depleting CFAP36 accumulates K63-linked ubiquitin in cilia and disrupts Hedgehog signaling, a pathway reliant on the retrieval of ubiquitinated receptors. These findings advance our understanding of ubiquitin-mediated protein transport and ciliary homeostasis, and demonstrate how structural changes in IFT trains achieve cargo selectivity. ### Competing Interest Statement The authors have declared no competing interest. Sara Elizabeth O'Brien Trust Postdoctoral Fellowship awarded through the Charles A. King Trust Postdoctoral Research Fellowship Program, , 8460873-01 Richard and Susan Smith Family Foundation, https://ror.org/05j95n956, National Institute of General Medical Sciences (NIGMS), , R01GM141109, R01GM143183
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Ferdos Abid Ali @abidalilab.bsky.social · 24/04/2025
Great to see our story on dynein & kinesin co-dependence published www.nature.com/articles/s41..., and absolutely chuffed that it's made the front cover (thanks NSMB!). A brilliant News & Views too by Steven Markus www.nature.com/articles/s41.... Collab between @carter-lab.bsky.social & Straube lab🔬
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Sergio Cruz-León @sergiocruzleon.bsky.social · 11/04/2025
Excited to share our preprint on the molecular architecture of heterochromatin in human cells 🧬🔬w/ @jpkreysing.bsky.social, @johannesbetz.bsky.social, @marinalusic.bsky.social, Turoňová lab, @hummerlab.bsky.social @becklab.bsky.social @mpibp.bsky.social 🔗 Preprint here tinyurl.com/3a74uanv
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Pilhofer Lab 🦠❄️🔬 @pilhoferlab.bsky.social · 21/03/2025
Asgard archaea have actin - but what about microtubules? Where do they come from? 🧐 Our new paper www.cell.com/cell/fulltex... by @xujwet.bsky.social & @florianwollweber.bsky.social, in collaboration with the Schleper & Wieczorek labs, describes tiny Asgard microtubules! #TeamTomo #ArchaeaSky 1/6
Credit: Margot Riggi (@margotriggi.bsky.social), Max-Planck Institute of Biochemistry (@mpibiochem.bsky.social)
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Nature Reviews Molecular Cell Biology @natrevmcb.nature.com · 25/02/2025
Our MARCH Issue is now live! 🥳 Find the link to the full issue here: 🔗 go.nature.com/41gd09d The cover is inspired by this great article on intraflagellar transport by @gaiapigino.bsky.social and @samlacey.bsky.social 👉 go.nature.com/41fEig5 #CellBio #cilia
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Gaia Pigino @gaiapigino.bsky.social · 19/02/2025
“Join the Pigino Lab! We’re hiring a PhD student to explore primary cilia biology using advanced imaging, spatial ‘omics, and AI. Apply now at www.cilia-ai.eu and be part of the Cilia-AI Doctoral Network!”
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Yoshi Ichikawa @ichikawa-lab.bsky.social · 28/01/2025
We have posted our new #preprint regarding the track recognition mechanism of dynein-2 that works in #cilia on bioRxiv @biorxivpreprint.bsky.social!! www.biorxiv.org/content/10.1... 1/8 🧵
biorxiv.org
Dynein-2 is tuned for the A-tubule of the ciliary doublet through tubulin tyrosination
Eukaryotic cilia and flagella are thin structures present on the surface of cells, playing vital roles in signaling and cellular motion. Cilia structures rely on intraflagellar transport (IFT), which ...
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Pengxin Chai @pengxinchai.bsky.social · 21/01/2025
Excited to share our work on bioRxiv before my thesis defense! Together with my undergraduate mentee Diego, postdocs Wan and Jun, and my advisor Kai, we identified a novel dynein heavy chain subfamily, DNAHX, from sea urchin sperm axoneme. Check out the details here: www.biorxiv.org/content/10.1...
biorxiv.org
DNAHX: a novel, non-motile dynein heavy chain subfamily, identified by cryo-EM endogenously
Ciliogenesis and cilia motility rely on the coordinated actions of diverse dyneins, yet the complexity of these motor proteins in cilia has posed challenges for understanding their specific roles. Tra...
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Florian Jug @florianjug.bsky.social · 14/01/2025
👀 Looking for a PhD position but you are torn between cilia biology and computational AI research? 😜 The Cilia-AI Doctoral Network has you covered! Lots of fantastic projects throughout Europe, also @humantechnopole.bsky.social with us or @gaiapigino.bsky.social - apply now! ‼️ www.cilia-ai.eu
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Caitie McCafferty @computingcaitie.bsky.social · 16/12/2024
I am excited to share some of my PhD work on the motile cilia interactome revealed by XL/MS with @jbwallingford.bsky.social @edwardmarcotte.bsky.social Ophelia Papoulas, Chanjae Lee, David Taylor, and @builab.bsky.social www.cell.com/developmenta...
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chrisvanhoorn.bsky.social @chrisvanhoorn.bsky.social · 08/12/2024
Our #CryoET paper on ciliary rootlet ultrastructure from mouse retina is now out in @elife.bsky.social! Have a peek with this video or dive deeper at bit.ly/3ZJzhgc. Big thanks to @carter-lab.bsky.social and #teamtomo. #CryoET #CryoEM #Cilia #Rootlet #Centriole #Research #Science
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Ferdos Abid Ali @abidalilab.bsky.social · 27/11/2024
If you’re interested in how molecular motors coordinate to power intracellular trafficking events (e.g. endocytosis), I’ve got a PhD position available to study this at vibrant Bristol uni. In this project, we will capture highly dynamic events by #cryoEM, single molecule imaging & cell biology. 🔬❄️🧪
This scheme shows the cargo adaptor FHF in the middle with arrows pointing to distinct microtubule and actin-based motors (dynein-dynactin, KIFC1, KIF1C and myosins V, IX and X as well as Tropomyosin 1). It also shows a link to Rab5 marked early endosomes. The hypothesis is that FHF coordinates multi motor binding at the early stages of endocytosis. The PhD project would address the hierarchy of motor binding and how these motors coordinate to allow the newly formed vesicle to transition from the actin to MT cytoskeletal network.
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samlacey.bsky.social @samlacey.bsky.social · 18/11/2024
Our review of Intraflagellar transport is out now! We cover lots of the recent advances in our understanding of IFT, and where we think there are still some gaps. www.nature.com/articles/s41...
nature.com
The intraflagellar transport cycle - Nature Reviews Molecular Cell Biology
Intraflagellar transport (IFT) ensures delivery of selected proteins into cilia. The IFT protein complexes IFT-A and IFT-B polymerize at the base of the cilium to form an anterograde train that facili...
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Lisa Heinke @lisaheinke.bsky.social · 14/11/2024
✨New online ✨ The intraflagellar transport cycle - written by Samuel Lacey & Gaia Pigino. The article beautifully summarises recent insights on transport trains - don’t miss the gorgeous structural detail! www.nature.com/articles/s41...
nature.com
The intraflagellar transport cycle - Nature Reviews Molecular Cell Biology
Intraflagellar transport (IFT) ensures delivery of selected proteins into cilia. The IFT protein complexes IFT-A and IFT-B polymerize at the base of the cilium to form an anterograde train that facili...
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