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@PoratShliomLab

@poratshliomlab.bsky.social
575 followers 767 following 194 posts

Cell Biologist and microscopist. My lab @NCIResearchCtr focuses on mitochondria, metabolism, and liver cancer. Views are my own #cellbiology #microscopy

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@PoratShliomLab @poratshliomlab.bsky.social · 01/05/2026
Thank you, @bpodaily.bsky.social, for highlighting our research at the Intramural Program of the National Cancer Institute! #NCI #NIH #LiverZonation #lipid #mitochondria
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Juan C. Landoni @jclandoni.bsky.social · 03/04/2026
Our paper is now out in Science! Super excited to share our discovery that #mitochondria #pearling is the elusive mechanism driving the regular distribution and inheritance of #mtDNA nucleoids 🧬 [1/6]
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Catalina Vasilescu, PhD @cvasilescu.bsky.social · 15/11/2024
#Therapies for #mitochondrial #disorders community. You are welcome to join by commenting below! go.bsky.app/BnMQq9C #therapy #mitochondria #mitochondrialdisease
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Catalina Vasilescu, PhD @cvasilescu.bsky.social · 29/03/2026
Latest published research on #Mitochondria in #Health and #Disease! 📚 #week13 biomed.news/bims-mitdis/... @biomednews.bsky.social @gavinmcstay.bsky.social @mitoscientist.bsky.social PLIN5 phosphorylation orchestrates mitochondria lipid-droplet coupling to control hepatic lipid flux and steatosis
https://www.nature.com/articles/s42255-026-01476-1
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Nature Metabolism @natmetabolism.nature.com · 30/03/2026
dlvr.it
The expanding role of mitochondria–lipid droplet contacts in liver and their disruption by MASLD
Nature Metabolism, Published online: 23 March 2026; doi:10.1038/s42255-026-01483-2By determining the organellar topology and proteome of fat-oxidizing and fat-synthesizing hepatocytes, Kang et al. show that perilipin 5-mediated mitochondria–lipid droplet contacts facilitate the expansion of lipid droplets in both populations and are impaired in early metabolic dysfunction-associated steatotic liver disease (MASLD).
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Nature Metabolism @natmetabolism.nature.com · 30/03/2026
dlvr.it
PLIN5 phosphorylation orchestrates mitochondria lipid-droplet coupling to control hepatic lipid flux and steatosis
Nature Metabolism, Published online: 23 March 2026; doi:10.1038/s42255-026-01476-1Using single-cell tissue imaging and spatial proteomics to study mitochondria–lipid droplet coupling in hepatocytes, PLIN5 phosphorylation is identified as a mediator of lipid flux and nutrient stress responses.
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Daniel Drucker @danieljdrucker.bsky.social · 25/03/2026
The primary cilium functions as a non-redundant signaling compartment essential for GLP-1R action in islet beta cells www.sciencedirect.com/science/arti...
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@PoratShliomLab @poratshliomlab.bsky.social · 24/03/2026
Huge thanks to @marcliesa.bsky.social and Jessica Segalés for covering our work in this insightful News & Views — we really appreciate the thoughtful perspective and context you brought to the study! www.nature.com/articles/s42...
nature.com
The expanding role of mitochondria–lipid droplet contacts in liver and their disruption by MASLD - Nature Metabolism
By determining the organellar topology and proteome of fat-oxidizing and fat-synthesizing hepatocytes, Kang et al. show that perilipin 5-mediated mitochondria–lipid droplet contacts facilitate the exp...
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@PoratShliomLab @poratshliomlab.bsky.social · 24/03/2026
1/9 🚨 New paper out in Nature Metabolism! Chapter 2 of our mitochondria zonation story (following our 2024 Nature Communications work). We asked how zonated liver mitochondria adapt when lipid flux surges. 🧵👇 www.nature.com/articles/s42...
nature.com
PLIN5 phosphorylation orchestrates mitochondria lipid-droplet coupling to control hepatic lipid flux and steatosis - Nature Metabolism
Using single-cell tissue imaging and spatial proteomics to study mitochondria–lipid droplet coupling in hepatocytes, PLIN5 phosphorylation is identified as a mediator of lipid flux and nutrient stress...
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Maria Bohnert Lab @bohnertlab.bsky.social · 07/11/2025
Proud to share our study on #LipidDroplet #Motility #Mitochondria #MembraneContactSite now in Cell Reports @cp-cellreports.bsky.social! Big thanks to @rwedlichsoldner.bsky.social, @flofroehlich.bsky.social, @ruferbus.bsky.social, Daniel Kümmel lab, Thomas Becker lab! www.cell.com/cell-reports...
cell.com
The Myo2 adaptor Ldm1 and its receptor Ldo16 mediate actin-dependent lipid droplet motility
Zhao et al. identify the molecular machinery for lipid droplet motility, consisting of the type V myosin Myo2, the Myo2 adaptor protein Ldm1, and its surface receptor Ldo16. They uncover a molecular l...
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@PoratShliomLab @poratshliomlab.bsky.social · 19/11/2025
The LIVER is a work of ART 😍
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@PoratShliomLab @poratshliomlab.bsky.social · 09/05/2025
Milestones is an annual publication covering the exciting research performed at the National Cancer Institute, NIH. This year, my group is honored to be included!
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FocalPlane @focalplane.bsky.social · 14/04/2025
We also host a microscopy database on FocalPlane, which you can use for searching for collaborators, reviewers and speakers. We'd like to invite all members of the community to join and use the Network. focalplane.biologists.com/network/
focalplane.biologists.com
FocalPlane Network - FocalPlane
FocalPlane Network
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bioRxivpreprint @biorxivpreprint.bsky.social · 14/04/2025
Single cell spatial proteomics maps human liver zonation patterns and their vulnerability to fibrosis www.biorxiv.org/content/10.1101/202…
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Caroline Weiss @carolineweiss.bsky.social · 14/04/2025
Preprint alert ‼️ Excited to share our work investigating liver zonation in human health and disease with our advanced single-cell Deep Visual Peoteomics framework!
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@PoratShliomLab @poratshliomlab.bsky.social · 14/04/2025
Is liver zonation conserved from mice to humans? And how does fibrosis affect zonation in patients? Now, these questions are answered using scDVP. Some collaborations are meant to be! @carolineweiss.bsky.social@frosenberger.bsky.social @mannlab.bsky.social@mlsb-borgwardt.bsky.social
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Sarah Cohen @cohenlaboratory.bsky.social · 21/12/2024
Check out this preprint from collaborator Lance Johnson @johnsonlab.bsky.social and team characterizing the APOE3 vs E4 #LipidDroplet -ome! Some interesting Easter eggs in there 🐇🥚😉
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Jonny Nixon-Abell @abelljonny.bsky.social · 13/12/2024
Very cool!
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André Nadler @nadlerlab.bsky.social · 13/12/2024
Beautiful work - I love the analysis of organelle rearrangement in response to changes in lipid flux.
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Sarah Cohen @cohenlaboratory.bsky.social · 12/12/2024
Wow!! Amazing preprint from the Porat-Shliom lab showing how organelle signatures vary across space and diet in the liver. This paper has it all: gorgeous microscopy, lipid droplets, mitochondria, and one of my favorite proteins, PLIN5 🤩
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bioRxiv Cell Biology @biorxiv-cellbio.bsky.social · 12/12/2024
Spatially resolved rewiring of mitochondria-lipid droplet interactions in hepatic lipid homeostasis. www.biorxiv.org/content/10.1101/202…
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@PoratShliomLab @poratshliomlab.bsky.social · 12/12/2024
Preprint alert!! How zonated hepatocytes adapt to changes in lipid influx due to fasting or a Western diet (WD). We developed a microscopy-based phenotyping method called single-cell phenomics (scPhenomics) to measure the features of mitochondria and lipid droplets (LDs).
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Bianca Schrul @biancaschrul.bsky.social · 11/12/2024
Dear #LipidDroplet friends, we just launched the website for the next #EMBOLipidDroplets Workshop in September 2025, again at beautiful Costa Brava. Check out the amazing lineup of speakers. Abstract submission deadline is 10 June 2025. Hope to see many of you there! #organelles #LipidMetabolism
meetings.embo.org
Lipid Droplets: Cell-Biological Control of Metabolism
Lipid droplets are master regulators of nutrient and energy homeostasis, but their functions go far beyond these classical roles: They are important in cellular differentiation and various stress res…
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@PoratShliomLab @poratshliomlab.bsky.social · 11/12/2024
Our annual lab-giving celebration! I am grateful to have such an energetic and positive team! Happy holiday season from the Porat-Shliom lab🎄🕎 @kbarrows.bsky.social @ivyxiong.bsky.social
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Sarah Cohen @cohenlaboratory.bsky.social · 11/12/2024
Super happy to have Cohen Lab PhD student Ian Windham's paper about #APOE trafficking to #LipidDroplets featured in this exciting collection!!
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Sarah Cohen @cohenlaboratory.bsky.social · 11/12/2024
Cohen lab will be well represented at #CellBio2024! If you love #Organelles, #MembraneContactSites, and/or #Neurons and #Astrocytes, please come say hello!
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Jan Broder Engler @jbengler.de · 10/12/2024
Stunning free #science vector art for your next poster, paper or talk 🤩 The #NIH has compiled over 2,000 illustrations including swatches and pattern brushes bioart.niaid.nih.gov #rstats #dataviz #phd #illustration
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Sarah Cohen @cohenlaboratory.bsky.social · 11/11/2024
Ok, I made a starter pack for membrane trafficking and organelles (broadly defined). Feel free to self-nominate! go.bsky.app/RbtJjt7
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Rita Strack @ritastrack.bsky.social · 06/12/2024
I could not be more thrilled to announce the Nature Methods @naturemethods.bsky.social Method of the Year is Spatial Proteomics! Please see our editorial as a roadmap to the fantastic content in this special issue! www.nature.com/articles/s41...
nature.com
Method of the Year 2024: spatial proteomics - Nature Methods
Approaches for profiling the spatial proteome in tissues are the basis of atlas-scale projects that are delivering on their promise for understanding biological complexity in health and disease.
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Amy Engevik @amyengevik.bsky.social · 09/12/2024
Another #MicroscopyMonday for the books. This one has an intestinal organoid Andy Warhol style.
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Tom Longden @talongden.bsky.social · 04/12/2024
I am delighted to share the work of my amazing student Dominic Isaacs! Out today in PNAS (www.pnas.org/doi/10.1073/...), Dom beautifully used optogenetics to show that thin-strand pericytes in the brain can send long-range electrical signals to control arteriole diameter and brain blood flow.
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Prasanna Satpute-Krishnan @pskcellbio.bsky.social · 05/12/2024
I’m so excited to organize the #Lysosomes Subgroup at @ASCBiology 2024 meeting on Sunday, Dec. 15 at 3:15pm, Room 33B. Lysosomes naturally lend themselves to puns. So…Don’t be 𝒃𝒂𝒔𝒊𝒄. Join us for fresh, 𝒄𝒖𝒕𝒕𝒊𝒏𝒈-edge talks and puntastic times. It will 𝒆𝒂𝒕 𝒂𝒕 𝒚𝒐𝒖 if you miss it.
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@PoratShliomLab @poratshliomlab.bsky.social · 07/12/2024
I am catching up ;- bsky.app/profile/porats…
bsky.app
@PoratShliomLab (@poratshliomlab.bsky.social)
Cell Biologist and microscopist. My lab @NCIResearchCtr focuses on mitochondria, metabolism, and liver cancer. Views are my own #cellbiology #microscopy
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@PoratShliomLab @poratshliomlab.bsky.social · 04/11/2024
Single cell proteomics is a powerful tool! x.com/labs_mann/stat…
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@PoratShliomLab @poratshliomlab.bsky.social · 18/10/2024
Cells within organs are exposed to nutrient gradients, resulting in functional zonation. Beautiful work x.com/BernaSozen_/st…
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@PoratShliomLab @poratshliomlab.bsky.social · 27/09/2024
I was pleased to present our work @umncbs, and interact with exceptional graduate students and faculty. Thank you @dgmashek, for the invitation
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@PoratShliomLab @poratshliomlab.bsky.social · 02/09/2024
Beautiful study describing a new cellular organelle accompanied with gorgeous imaging 😍 x.com/sehamebrahim/s…
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@PoratShliomLab @poratshliomlab.bsky.social · 26/08/2024
This summer, traveling to Israel was far from trivial. I’m grateful for being able to reconnect with family and friends, celebrate my bday and recharge. In the pic, hopeful sunset captured in Tel Aviv.
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@PoratShliomLab @poratshliomlab.bsky.social · 26/08/2024
Creativity is more important than knowledge... x.com/ItaiYanai/stat…
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@PoratShliomLab @poratshliomlab.bsky.social · 25/07/2024
Stimulating discussions, wonderful speakers and a friendly environment. Thank you to the organizers @OlzmannLab @HenneLab and this amazing community! x.com/cohenlaborator…
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@PoratShliomLab @poratshliomlab.bsky.social · 08/07/2024
Saying goodbye is never easy, this time, it is especially hard. After 5 wonderful years, @SunWooSophieKa1 is heading back to Australia. Grateful for the opportunity to work with you. We will miss you!!
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@PoratShliomLab @poratshliomlab.bsky.social · 03/07/2024
Check out the exciting program. I am looking forward to having some #lipidtime with #mitochondria, of course 😉 x.com/cohenlaborator…
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@PoratShliomLab @poratshliomlab.bsky.social · 26/06/2024
Looking forward to presenting our work!! Check out the amazing program, it’s not too late to register!! x.com/OlzmannLab/sta…
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@PoratShliomLab @poratshliomlab.bsky.social · 02/06/2024
Loss of the lysosomal protein CLN3 modifies the lipid content of the nuclear envelope leading to DNA damage and activation of YAP1 pro-apoptotic signaling biorxiv.org/content/10.110…
biorxiv.org
Loss of the lysosomal protein CLN3 modifies the lipid content of the nuclear envelope leading to DNA damage and activation of YAP1 pro-apoptotic signaling
Batten disease is characterized by early-onset blindness, juvenile dementia and death during the second decade of life. The most common genetic causes are mutations in the CLN3 gene encoding a lysosomal protein. There are currently no therapies targeting the progression of the disease, mostly due to the lack of knowledge about the disease mechanisms. To gain insight into the impact of CLN3 loss on cellular signaling and organelle function, we generated CLN3 knock-out cells in a human cell line (CLN3-KO), and performed RNA sequencing to obtain the cellular transcriptome. Following a multi-dimensional transcriptome analysis, we identified the transcriptional regulator YAP1 as a major driver of the transcriptional changes observed in CLN3-KO cells. We further observed that YAP1 pro-apoptotic signaling is hyperactive as a consequence of CLN3 functional loss in retinal pigment epithelia cells, and in the hippocampus and thalamus of CLN3exΔ7/8 mice, an established model of Batten disease. Loss of CLN3 activates YAP1 by a cascade of events that starts with the inability of releasing glycerophosphodiesthers from CLN3-KO lysosomes, which leads to perturbations in the lipid content of the nuclear envelope and nuclear dysmorphism. This results in increased number of DNA lesions, activating the kinase c-Abl, which phosphorylates YAP1, stimulating its pro-apoptotic signaling. Altogether, our results highlight a novel organelle crosstalk paradigm in which lysosomal metabolites regulate nuclear envelope content, nuclear shape and DNA homeostasis. This novel molecular mechanism underlying the loss of CLN3 in mammalian cells and tissues may open new c-Abl-centric therapeutic strategies to target Batten disease. ### Competing Interest Statement The authors have declared no competing interest.
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@PoratShliomLab @poratshliomlab.bsky.social · 31/05/2024
Saying good bye to Colin Miller who is heading to medical school. It was wonderful working together and we are all very excited for you!
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@PoratShliomLab @poratshliomlab.bsky.social · 24/05/2024
Another gem from the Mann lab!! x.com/labs_mann/stat…
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@PoratShliomLab @poratshliomlab.bsky.social · 17/05/2024
Location matters in the #liver #Mitochondrial physiology is shaped by nutrient gradients. @BPoD_s thank you for highlighting our study! x.com/BPoD_s/status/…
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@PoratShliomLab @poratshliomlab.bsky.social · 12/05/2024
Beautiful work! Organelle zonation in the liver ❤️ x.com/apsarruda/stat…
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@PoratShliomLab @poratshliomlab.bsky.social · 08/04/2024
I’m not the only one, staring at the sun 😊
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@PoratShliomLab @poratshliomlab.bsky.social · 08/04/2024
Another important study from @goldstein_lab dissecting transcriptional cascades in fasting. x.com/goldstein_lab/…
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