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Rob Parton

@robparton.bsky.social
1.1K followers 653 following 22 posts

Molecular cell biology, electron microscopy. Endocytosis, caveolae, lipid droplets, nanoparticles. Cultured cells, zebrafish, tardigrades.

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Reposted by Rob Parton
Jez Carlton @jezcarlton.bsky.social · 28/09/2026
Hey! Submit your papers, and spread the word, this will be great! Thanks for inviting us @jcellsci.bsky.social and great to work with @pihanson.bsky.social on this issue!
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William Brett @w-noah-brett.bsky.social · 17/09/2026
www.nikonsmallworld.com/galleries/20... Am I the only one who thinks this is AI?
nikonsmallworld.com
Abnormal beating of airway cilia from a child with Primary Ciliary Dyskinesia (PCD) | 2026 Small World in Motion Competition
Ning Xu - Abnormal beating of airway cilia from a child with Primary Ciliary Dyskinesia (PCD), a genetic disorder affecting respiratory function.
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A/Prof Sam Stehbens PhD (She/Her) @samstehbens.bsky.social · 21/09/2026
Save the date!!! The Hunter meeting @huntermeetingoz.bsky.social is returning! June 7-10 2027. #LockItInEddie (you’ll have to come to Australia so we can share the wisdom of our Aussieisims like that). #cellbiology #devBio #conference
static.klipy.com
Raygunn's Epic Breakdance at Paris 2024
ALT: Raygunn's Epic Breakdance at Paris 2024
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Journal of Cell Science @jcellsci.bsky.social · 17/09/2026
We're now accepting submissions for our next special issue, which will focus on 'Proteostasis' and will be coordinated by two of our Academic Editors, Pedro Carvalho and Tamotsu Yoshimori. Submission deadline: 2 November Find out more: journals.biologists.com/jcs/pages/pr... #proteostasis
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Aleksandra Filipovska @filipovskalab.bsky.social · 08/09/2026
We’re hiring! 🧬 Exciting opportunities in mitochondrial genome engineering and therapies for mitochondrial disease with @FilipovskaLab in sunny Western Australia ☀️ and at our new biotech CodeBreakers Apply: au.seek.com/job/94426759 #Mitochondria #GenomeEngineering #Postdoc #Biotech
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Marc Cooper @ortgard.com · 07/09/2026
@philipcball.bsky.social Hi Philip, Would you consider reposting this, please? bsky.app/profile/astr...
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Guillaume Thibault @gthibault.bsky.social · 31/08/2026
We didn't just trust these antibodies. We validated them, and too many still failed. Scientists lost time and money because of this. Every scientist working with antibodies should be outraged. Who is organizing a class action?
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Mark Peifer (He, him) @peiferlabunc.bsky.social · 26/08/2026
Pro tip: Most of these @dshb-antibodies.bsky.social Abs are documented in dozens of publications and are also substantially cheaper.
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Liz Miller @lizmillercu.bsky.social · 31/07/2026
Job alert! I'm recruiting a new post-doc to work on mechanisms of co-translational quality control in the ER. Looking for expertise in ribosome biology and yeast genetics/cell biology. Please reach out to me with any questions. www.dundee.ac.uk/work-for-us/...
dundee.ac.uk
Postdoctoral Research Assistant - UOD2336
Closing date: Thursday 27 August 2026, 23:59
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Journal of Cell Science @jcellsci.bsky.social · 20/07/2026
Issue 13 is complete Explore our Toc: journals.biologists.com/jcs/issue/13... On the cover: images of a C. elegans tail showing the localisation of AGEF-1 (gold, cyan & orange puncta) & RAB-35 (blue, green & yellow). See article from Bonacossa-Pereira et al. journals.biologists.com/jcs/article/...
JCS cover: Deconvolved confocal images showing a lateral view of the tail of the nematode Caenorhabditis elegans, highlighting the localisation of epidermal AGEF-1 (an orthologue of BIG2; gold, cyan and orange puncta in the top, middle and bottom images, respectively) and RAB-35 (cyan, green and yellow blobs and striated patterns in the top, middle and bottom images, respectively). AGEF-1 interacts with RAB-35 in the nematode epidermis to modulate the integrity of touch-sensing nerves embedded within the skin. See article by I. Bonacossa-Pereira et al. (jcs264565).
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Journal of Cell Science @jcellsci.bsky.social · 08/06/2026
Our Academic Editor Subhojit Roy (@roylab-ucsd.bsky.social) is attending the Cell Biology of the Neuron GRC, which takes place this week. Please reach out to him if you'd like to discuss a submission, or visit: journals.biologists.com/jcs/pages/re... #forscientistsbyscientists #notforprofit
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Journal of Cell Science @jcellsci.bsky.social · 05/06/2026
It won’t take you years to publish your work in JCS: most articles go from submission to acceptance in under 5 months. We also show a strong commitment at first decision, with over 95% of revisions being accepted. Find out more: journals.biologists.com/jcs/pages/re... #forscientistsbyscientists
An image showing three recent covers from Journal of Cell Science
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Ben Hogan @benjhogan.bsky.social · 02/06/2026
Final version of our paper on zebrafish pericytes and BBB function is now out in Elife! Congrats to Oz the first author and all contributors. elifesciences.org/articles/104...
elifesciences.org
Mural cells protect the adult brain from hemorrhage but do not control the blood–brain barrier in developing zebrafish
Pericytes regulate cerebrovascular development, while vascular smooth muscle cells prevent hemorrhage and blood–brain barrier breakdown at vascular hotspots in juvenile and adult zebrafish.
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Fran Bottanelli @franbottanelli.bsky.social · 01/04/2026
Get in touch if you need more info or have questions!
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ARC Tracker @arc-tracker.bsky.social · 17/03/2026
The Government released the final report of the Strategic Examination of R&D yesterday. It's called "Ambitious Australia"🙃 Haven't read much, yet, but it says we should fund the ARC more. Like every single previous review. Can we got on with it & do that, now? www.industry.gov.au/publications...
Front cover of the Strategic Examination of Research & Development review report. Purple background with pink title text "Ambitious Australia". The graphics below the text are some curvy, bubble-like shapes with what seems to be a sunset viewed through some drops of liquid. That is, a distorted view of the horizon … a metaphor?
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Journal of Cell Science @jcellsci.bsky.social · 09/03/2026
Issue 4 is complete Explore our Toc: journals.biologists.com/jcs/issue/13... Our cover image shows the apical supracellular actin network in squamous epidermoid cells. Actin filaments are colour-coded according to z-position. See article by Marpeaux et al. journals.biologists.com/jcs/article/...
JCS cover: Actin forms a supracellular network at the apical side of squamous epidermoid cells. Actin filaments are colour-coded according to their position along the z-axis, revealing the three-dimensional organization and continuity of the apical actin cortex across neighbouring cells. See article by L. Marpeaux et al. (jcs264424).
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Michael Way @drmichaelway.bsky.social · 05/02/2026
Two postdoc positions in way lab go live tomorrow......please pass the message along.......more details to follow.
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Ben Weger @benweger.bsky.social · 05/02/2026
Our study is out today 🎉 in @natmetabolism.nature.com. The liver doesn’t secrete proteins nonstop; it follows a daily rhythm. Meal timing controls liver protein release via glycogen metabolism, and disrupted eating blunts these rhythms. A 🧵 ...
rebrand.ly
Feeding-regulated glycogen metabolism drives rhythmic liver protein secretion - Nature Metabolism
Hepatic glycogenolysis is essential for protein glycosylation and rhythmic secretion by the liver. Disruptions to hepatic glycogenolysis, caused by congenital diseases or physiological factors such as...
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Journal of Cell Science @jcellsci.bsky.social · 03/02/2026
After 15 years as Editor-in-chief (EiC), Michael Way @drmichaelway.bsky.social will be stepping down at the end of 2026 & we are seeking feedback from the cell biology community as part of the consultation process for appointing a new EiC. We'd love to hear from you: www.surveymonkey.com/r/GZCC9F9
Fill out our community survey to help shape the future of JCS

Journal of Cell Science logo

Line drawing of a group of people with speech bubbles above their heads
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Ebony Monson @ebony-monson.bsky.social · 01/02/2026
First day back at work for 2026, and excited to share that @gurgaganveer's first paper from his PhD has been published in @acsnano! If you are interested in the biology of endosomal escape & strategies for enhanced delivery of therapeutics, check it out: bit.ly/4roRcnp
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Brett Collins @brettcollins.bsky.social · 28/01/2026
Do you want to know more about how Retromer regulates Rab7 activity in yeast? Of course you do. Check out the new collaboration with Andreas Mayer with work led by Catarina Alves and Kevin Chen.
biorxiv.org
The GTPase activating protein Gyp6 binds Retromer and inactivates Rab7/Ypt7 to coordinate the formation of endosomal carriers
The Retromer coat is conserved in all eukaryotes and is crucial for the correct intracellular sorting of many transmembrane receptors and lysosomal hydrolases. Retromer is an effector of the late endosomal small GTPase RAB7 and is also implicated in its inactivation required for proper endosomal maturation. Here, we explore the role of controlled GTP hydrolysis by the RAB7 ortholog Ypt7 in the formation of Retromer-coated membrane carriers in yeast. Proximity labelling and genetic ablation identify the GTPase Activating Protein (GAP) Gyp6 as a critical regulator of Ypt7 activity in the context or Retromer. Structural studies show that Retromer recruits Gyp6 through its Vps29 subunit, which recognises a specific PL motif and a secondary binding site in the C-terminal domain of Gyp6. This interaction does not occur with other yeast GAPs. Ablation of the Gyp6-Retromer interface or the catalytic activity of Gyp6 leads to the accumulation of tubular structures on endo-lysosomal compartments and to increased association of Ypt7 with Retromer and its cargo Vps10. These results support a model in which Gyp6 controls the switch from Ypt7-dependent Retromer coat assembly and cargo collection to the departure of the carrier through membrane fission and uncoating. ### Competing Interest Statement The authors have declared no competing interest. National Health and Medical Research Council, https://ror.org/011kf5r70, APP2016410 Swiss National Science Foundation, https://ror.org/00yjd3n13, 31003A_179306, 310030_204713, 10.006.083
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Reposted by Rob Parton
Ben Hogan @benjhogan.bsky.social · 28/01/2026
Our preprint on mural cells and the zebrafish blood brain barrier is now revised with new data and analysis www.biorxiv.org/content/10.1...
biorxiv.org
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Dr Monique Ryan @mon4kooyong.bsky.social · 23/01/2026
Right now, the Government is starving medical research of full funding, even as it claims that science and research are national priorities. If our leaders truly value science as much as they say, then they must back their words with action—and fund it properly. Join the campaign!
moniqueryan.com.au
Medical Research Matters
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Rob Parton @robparton.bsky.social · 22/01/2026
9. Altogether, we show that trans-endothelial transport of PEG-based nanoparticles is size-dependent, dictating intracellular or intercellular routes, and further constrained by vesicle size limits and the level of activity of distinct intracellular pathways.
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Rob Parton @robparton.bsky.social · 22/01/2026
8. Cavin1 paralog is widely expressed across the zebrafish vasculature up to 15 dpf. Examination on Cavin1 double KOs show that caveolae do not mediate PEG-based NP transvascular transport in the zebrafish, and caveola loss similarly does not alter NP biodistribution in mice.
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Rob Parton @robparton.bsky.social · 22/01/2026
7. As the PEG-based micelles increased in size to 109 nm, low basal macropinocytosis becomes the dominant trans-endothelial transport pathway, with minimal dynamin-dependent contribution, likely due to vesicle size constraints.
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Rob Parton @robparton.bsky.social · 22/01/2026
6. We then examined the trans-endothelial transport pathways of 32 to 81 nm PEG-based micelles. These NPs extravasate via dynamin-dependent pathways, with some contribution from the macropinocytic pathway.
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Rob Parton @robparton.bsky.social · 22/01/2026
5. Having mapped these physiological pathways, we injected zebrafish embryos and juveniles with PEG-based NPs. Small (3-7 nm) PEG-based hyperbranched polymers (HBPs) rapidly extravasate via paracellular routes as determined by cAMP treatment, with minimal intracellular contributions.
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Rob Parton @robparton.bsky.social · 22/01/2026
4. Next, we identified steady-state extravasation pathways by priming vessels with inhibitors and using a Cavin1 KO. Fluid-phase solutes cross the embryonic endothelium via paracellular routes (≤15 nm), dynamin-dependent mechanisms, and low basal macropinocytosis, with minimal caveola contribution.
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Rob Parton @robparton.bsky.social · 22/01/2026
3. We discovered that trans-endothelial transport involves dynamic intracellular vesicles within intersegmental vessels (ISVs). These endocytic vesicles localize to venous ISVs and appear influenced by arterial-venous mechanical diffs, which we probed by modulating shear stress with epinephrine.
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Rob Parton @robparton.bsky.social · 22/01/2026
2. Co-injecting 2000 kDa dextran with NPs allowed us to 1. control injection variability, 2. flag embryos with abnormal leakage, 3. parse vascular vs EVS regions and 4. provide a normalization reference for unbiased quantitation. As a proof of concept, we quantified 40 kDa dextran extravasation.
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Rob Parton @robparton.bsky.social · 22/01/2026
1. First, we set up a standardized protocol to assess trans-endothelial transport. We looked at NP signal changes in the blood vessels and extravascular space (EVS) and thought that co-injecting a tracer would be an ideal control. We surveyed dextran tracers across a range of sizes.
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Rob Parton @robparton.bsky.social · 22/01/2026
How do nanoparticles traverse the endothelial barrier in a living organism? We explored this fundamental question using the zebrafish and PEG-based nanoparticles (NPs) in our latest article: (pubs.acs.org/doi/10.1021/...).
pubs.acs.org
Trans-Endothelial Trafficking in Zebrafish: Nanobio Interactions of Polyethylene Glycol-Based Nanoparticles in Live Vasculature
Trans-endothelial transport of nanoparticles remains poorly characterized in live organisms. The zebrafish is a well-established model for direct in vivo imaging; however, standardized controls have n...
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Rob Parton @robparton.bsky.social · 22/01/2026
4. The high specificity of caveospheres in delivering highly toxic molecules to tumor cells in mice highlights the potential for utilizing caveospheres in chemotherapeutic targeting of cancer cells as well as in imaging and diagnosis.
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Rob Parton @robparton.bsky.social · 22/01/2026
3. The caveospheres can be further engineered to mimic virus particles, with the spike protein of SARS-Cov-2 used to target a human bronchial epithelial cell line.
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Rob Parton @robparton.bsky.social · 22/01/2026
2. The Z-domain displayed on the surface of caveospheres provides a specific antibody-binding site, allowing modular labelling and targeting to defined cell types, including hard-to-transfect T cells.
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Rob Parton @robparton.bsky.social · 22/01/2026
1. Caveospheres can incorporate genetically-encoded cargo proteins without protein purification or can be loaded with RNA, DNA, proteins, drugs.
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Rob Parton @robparton.bsky.social · 22/01/2026
Excited to share our work engineering caveolin-derived nanoparticles “caveospheres”. We show their use for targeted transfection in cultured cells and effective targeted delivery and tumor killing in vivo. pubs.acs.org/doi/full/10....
pubs.acs.org
A Modular Encapsulation System for Precision Delivery of Proteins, Nucleic Acids, and Small Molecules
Targeted nanoparticles have the potential to revolutionize therapeutics for medical applications. Here, we demonstrate the utility of a flexible precision nanovesicle delivery system for functional de...
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Current Biology @currentbiology.bsky.social · 19/01/2026
Latest issue of Cowrent Biology is up! www.cell.com/current-biol...
cell.com
Current issue: Current Biology
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epithelial mechanics fan club @epimechfc.bsky.social · 25/12/2025
James, J., Winn, L. B., Mottram-Epson, P., & Köster, D. (2025). Paths to stability–actin regulation of adherens junction mechanics. Journal of Cell Science, #EpitheilalMechanicsReview doi.org/10.1242/jcs....
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Michael Way @drmichaelway.bsky.social · 22/12/2025
What's it like being Editor-in-chief of @jcellsci.bsky.social? doi.org/10.1242/jcs....
doi.org
At the helm of JCS – Editors-in-Chief past, present… and future
The Editor-in-Chief (EIC) of Journal of Cell Science plays a key role in defining the overall vision of the journal, helping to decide on journal strategy, policy and priorities, and overseeing all co...
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Journal of Cell Science @jcellsci.bsky.social · 22/12/2025
In their Editorial, Claire Moulton, Amelia Glazier and Katie Ward look back on an extraordinary year, as @biologists.bsky.social celebrated their 100-year anniversary. journals.biologists.com/jcs/article/...
The winning microscopy images from the Node–FocalPlane image competition, held at the Biologists @ 100 conference in March 2025. Left, ‘Cell-estial bloom’, the first-place winner, from Özge Özgüç, showing a live human induced pluripotent stem cell (hiPSC) colony labelled for lamin B, marking the nuclear lamina. Centre, ‘Dancing actinotroch’, the second-place image, from Allan Carrillo-Baltodano, showing an actinotroch larva of a phoronid worm, stained for actin (phalloidin, yellow) and acetylated tubulin (magenta). Right, ‘Who's active?’, the third-place image, from Julia Peloggia de Castro, depicting a lateral view of a zebrafish embryo at 9 h post fertilisation. MitoTracker was used to stain active mitochondria (magenta to yellow intensity scale), and an EGFP transgenic tag marks cell membranes (cyan).
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The Company of Biologists @biologists.bsky.social · 07/12/2025
Attending #CellBio2025? Have questions about publishing with Journal of Cell Science? Meet the @jcellsci.bsky.social Editors on Monday 8 December, 14:00 -16:00 pm at booth 1232.
Meet the JCS editors - Michael Way, Seema Grewal and Amelia Glazier
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The Company of Biologists @biologists.bsky.social · 09/10/2025
Registration is now open to attend Journal of Cell Science's meeting on Imaging Cell Dynamics, organised by Francesca Bottanelli, Guillaume Jacquemet, Michael Way and Giulia Zanetti. Find out more: biologists.com/meetings/jcs... #JCSimaging #Microscopy #Microscope #Imaging #Cells #CellScience
Imaging Cell Dynamics
11-14 May 2026
Montanyà Hotel, Catalonia, Spain
Register now - early-bird deadline: 16 January 2026
Journal of Cell Science Meeting
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Liz Miller @lizmillercu.bsky.social · 15/10/2025
Attention membrane traffickers! I'm recruiting a post-doc to my lab in Dundee. We're dissecting the functions of intrinsically disordered domains of COPII coat proteins. We think they control timing of coat assembly and morphology of carriers. www.dundee.ac.uk/work-for-us/...
dundee.ac.uk
Postdoctoral Research Assistant - MCDB - UOD2016
Closing date: Thursday 6 November 2025, 23:59
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Brett Collins @brettcollins.bsky.social · 02/09/2025
The Institute for Molecular Bioscience is seeking an exceptional academic leader to be the new Director of the Centre for Chemistry and Drug Discovery and lead our centre consisting of 10 group leaders, 40 staff and approximately 50 HDR students. Come and join us in sunny Brisbane!
uq.wd3.myworkdayjobs.com
Director, Centre for Chemistry and Drug Discovery
Institute for Molecular Bioscience Join a university ranked in the world’s top 50 Australia’s #1 research institute Based at St Lucia Campus About UQ What started as Queensland's first university in 1...
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Jamie Riches @chickenrampant.bsky.social · 01/09/2025
Global Bioimaging are running a survey on Authorship and Acknowledgements for imaging core facility staff. If you work in a core, please take five minutes to fill out the survey and help us understand the good, the bad and the ugly around this topic. Thanks! Link: forms.gle/cKh6m4SskzZm...
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Margot Finn @eicathomefinn.bsky.social · 26/08/2025
'The study...found that the main driver of increased red tape was university efficiency reforms. It threw doubt on the idea that increasing automation results in real efficiency, and suggested that Australian universities...had recently shifted towards stronger central executive management.' 1/2
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Erik A. Rodriguez @erin-rod.bsky.social · 22/08/2025
Today, I would like to honor the memory of Roger Y. Tsien, who died on August 24, 2016. His legacy lives with all who use his technologies, including calcium sensors, fluorescent proteins, the acetoxymethyl (AM) ester, & many more! #FluorescenceFriday www.nature.com/articles/nme...
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Ian Henderson @hendersonlab.bsky.social · 19/08/2025
Dear Bluesky, some good news to brighten your day! We are recruiting for the Director of the Centre for Population and Disease Genomics!! I would be grateful if you could share across your networks! uq.wd3.myworkdayjobs.com/uqcareers/jo...
uq.wd3.myworkdayjobs.com
Director, Centre for Population and Disease Genomics
Centre for Population & Disease Genomics - Institute for Molecular Bioscience Join a university ranked in the world’s top 50 Full-time, fixed-term position for up to 5 years at Academic Level E Ba...
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