Sign in

Eddie Rashan

@edreesrashan.bsky.social
150 followers 157 following 40 posts

Biochemist. Postdoc in the Vander Heiden Lab at MIT | Shurl and Kay Curci Fellow of the LSRF | Twitter: x.com/EdreesRashan | ORCID: orcid.org/0000-0002-3882-6655

PostsRepliesMedia
Reposted by Eddie Rashan
Natalie Niemi @nieminm.bsky.social · 02/08/2026
New preprint from the lab, co-led by Youmian Yan and @lianjiejerrywei.bsky.social! 🧵 at some point in the near future, but until then, check out our work uncovering mechanisms allowing the dual targeting of mitochondrial proteins using our favorite, PPTC7, as a case study.
085
Eddie Rashan @edreesrashan.bsky.social · 02/08/2026
This project has drawn me out of my comfort zone as an biochemist into new areas of cancer biology and neuroscience, which has been so exciting. Thank you to my lab mates and colleagues at the Koch Institute, @mvhlab.bsky.social, my mentor Matt, and many others for their encouragement! (2/2)
020
Eddie Rashan @edreesrashan.bsky.social · 02/08/2026
I am very grateful to join this year's class of LSRF Postdoctoral Fellows lsrf.org/current-fell...! With generous financial support from the Shurl and Kay Curci Foundation, I will investigate how brain lipids regulate the progression and fitness of brain metastases. (1/2)
lsrf.org
Current Fellows - Life Sciences Research Foundation
120
Eddie Rashan @edreesrashan.bsky.social · 28/07/2026
Yay! It was a ton of fun to help out with this cool study led by @drjoshblack.bsky.social and @greenlab.bsky.social. We show that a Legionella pneumophila enzyme AMPylates 3-phosphoglycerate, sequestering it from glycolytic metabolism and disrupting host translation.
030
Reposted by Eddie Rashan
Green Lab JHMI @greenlab.bsky.social · 24/07/2026
Wait, what?! This isn’t about ribosomes? Check out our new work where we find that a #Legionella effector thought to target host translation instead targets metabolism by modifying a host glycolytic metabolite. Led by @drjoshblack.bsky.social www.cell.com/molecular-ce...
cell.com
The Legionella pneumophila effector SidL is an adenylyltransferase that modifies the glycolytic intermediate 3-phosphoglycerate
Black et al. identify the L. pneumophila effector SidL as an adenylyltransferase that targets host glycolysis. SidL covalently modifies the glycolytic intermediate 3-phosphoglycerate (3PG) with AMP, g...
02612
Reposted by Eddie Rashan
Joshua Black @drjoshblack.bsky.social · 28/07/2026
I'm excited to share my postdoc work where we characterized the #Legionella effector SidL, finding that it modifies a host #glycolysis metabolite to produce a novel molecule that is incompatible with host #metabolism and uncovers a new mode in which pathogens can manipulate their host environment.
142
Eddie Rashan @edreesrashan.bsky.social · 07/05/2026
It was a fun read! Look forward to seeing what mechanisms sense mitochondrial citrate and drive these phenotypes. 😊
010
Eddie Rashan @edreesrashan.bsky.social · 07/05/2026
Check out our Spotlight in Molecular Cell on @lydiafinley.bsky.social's lab recent work on Aconitase 2 and its protective role against impaired cell fitness and ISR activation due to mitochondrial citrate accumulation authors.elsevier.com/c/1n3Nn3vVUP...
authors.elsevier.com
Please wait whilst we redirect you
All content on this site: Copyright © 2026 Elsevier B.V., its licensors, and contributors. All rights are reserved, including those for text and data mining, AI training, and similar technologies. For all open access content, the relevant licensing terms apply.
041
Reposted by Eddie Rashan
Science Magazine @science.org · 25/04/2026
U.S. President Donald Trump has fired all 24 members of the National Science Board, the body that oversees the National Science Foundation. scim.ag/4cxQWhl
scim.ag
Trump fires NSF's oversight board
Dismissal of the National Science Board is widely seen as latest move to erase NSF’s independence
611000806
Reposted by Eddie Rashan
Aaron and the Hoskins Lab at UW Madison @uwmadisonrna.bsky.social · 08/03/2026
Awesome representation from @uwmadscience.bsky.social at the @asbmb.bsky.social #ASBMB2026 meeting in DC! #ScienceServesUsAll
1166
Eddie Rashan @edreesrashan.bsky.social · 12/11/2025
Molecular biology on Pluribus. Rate their cloning protocol.
020
Eddie Rashan @edreesrashan.bsky.social · 02/11/2025
Happy to have contributed to this awesome finding! @slaterc.bsky.social and @thegarrettlab.bsky.social identify a mechanism by which acetoacetate drives anti-tumor immunity in the gut.
030
Reposted by Eddie Rashan
The Garrett Lab @thegarrettlab.bsky.social · 02/11/2025
Check out the latest pre-print from the lab! Led by our brilliant postdoc @slaterc.bsky.social Thanks to all co-authors and collaborators. @jentekle.bsky.social @edreesrashan.bsky.social @mvhlab.bsky.social
051
Reposted by Eddie Rashan
James Olzmann @olzmannlab.bsky.social · 29/10/2025
Excited to share our study out in @natcellbio.nature.com! Led by @mikelangelipid.bsky.social, we identify the first #LipidDroplet lipid quality control pathway: LD-localized FSP1 protects stored lipids from oxidative damage and prevents LD-initiated #ferroptosis. www.nature.com/articles/s41...
nature.com
FSP1-mediated lipid droplet quality control prevents neutral lipid peroxidation and ferroptosis - Nature Cell Biology
Lange et al. identify a lipid droplet quality control pathway in which FSP1 safeguards stored neutral lipids from lipid peroxidation, thereby preventing the induction of ferroptosis.
612338
Eddie Rashan @edreesrashan.bsky.social · 30/10/2025
Awesome work!! Congratulations!
010
Reposted by Eddie Rashan
Mike Lange @mikelangelipid.bsky.social · 29/10/2025
Excited to share my postdoc work @olzmannlab.bsky.social! We found lipid droplets, the cell’s lipid storage depots, are subject to oxidative damage and are protected by FSP1. Loss of FSP1 triggers droplet peroxidation and cell death, revealing a new layer of lipid quality control! shorturl.at/B5XYD
nature.com
FSP1-mediated lipid droplet quality control prevents neutral lipid peroxidation and ferroptosis - Nature Cell Biology
Lange et al. identify a lipid droplet quality control pathway in which FSP1 safeguards stored neutral lipids from lipid peroxidation, thereby preventing the induction of ferroptosis.
57321
Reposted by Eddie Rashan
Lucas Sullivan @lucasbsullivan.bsky.social · 13/10/2025
Our work detailing the metabolic roles of serum for cancer cell proliferation is now out at JBC, @asbmbjournals.bsky.social! Congrats to Oliver and Eric and many thanks to the editor and reviewers for a thoughtful and efficient review process. See here: www.sciencedirect.com/science/arti...
sciencedirect.com
Defined media reveal the essential role of lipid scavenging in supporting cancer cell proliferation
Fetal bovine serum (FBS) is an undefined additive that is ubiquitous to mammalian cell culture media and whose functional contributions to promoting c…
13618
Reposted by Eddie Rashan
André Nadler @nadlerlab.bsky.social · 09/10/2025
Lipid imaging on the cover of @nature.com! Great times for lipid cell biology indeed. And a fantastic recognition of all the hard work by the team, especially Juan M. Iglesias-Artola and Kristin Böhlig (who made the cover). Link to article: www.nature.com/articles/s41...
916840
Reposted by Eddie Rashan
Chrystal Starbird @drstarbird.bsky.social · 26/09/2025
I received this award as a second year student, and it was transformative and a big part of the reason I persisted. They are making things harder just for no reason. I remember the days when we recognized that STEM fields were a worthy national investment 🤦🏾‍♀️
0238
Reposted by Eddie Rashan
Baker Lab UNC @bakerlabms.bsky.social · 12/09/2025
If you’re looking for some exciting reading to take into the weekend with you, please check out Haley’s first, 1st-author paper published in Science of the Total Environment this week! You won’t want to miss these wildfire smoke induced lipid changes!🔥💨 www.sciencedirect.com/science/arti...
sciencedirect.com
Wildfire smoke induces GM3 ganglioside lipid accumulation and transcriptomic shifts in mouse lung tissue: A smoke signal story
Wildfire smoke is a growing concern due to continually rising exposures and links to numerous adverse health effects. Lipids are essential regulators …
1145
Reposted by Eddie Rashan
Henne lab @hennelab.bsky.social · 11/09/2025
A pleasure to write this short review on lipid droplets for @jcb.org together with Will Prinz and amazing artist Emma Reynolds! We discuss 5 pervasive questions surrounding these remarkable little lipid organelles. doi.org/10.1083/jcb....
doi.org
Lipid droplets: Open questions and conceptual advances around a unique organelle | Journal of Cell Biology | Rockefeller University Press
Henne and Prinz discuss the lipid droplet field and pervasive questions surrounding droplets and their roles in physiology and disease.
0417
Reposted by Eddie Rashan
Itay Budin @ibudin.bsky.social · 15/08/2025
The 4 chemically targeted Laurdan derivatives (for mitochondria, ER, lyso/endosomes, and the Golgi) that we published last year are now available (at a pretty reasonable price) from Avanti Polar Lipids (cat #880194, 880197, 880193, 880196). These have been very popular! pubs.acs.org/doi/full/10....
pubs.acs.org
Organelle-Targeted Laurdans Measure Heterogeneity in Subcellular Membranes and Their Responses to Saturated Lipid Stress
Organelles feature characteristic lipid compositions that lead to differences in membrane properties. In cells, membrane ordering and fluidity are commonly measured using the solvatochromic dye Laurdan, whose fluorescence is sensitive to lipid packing. As a general lipophilic dye, Laurdan stains all hydrophobic environments in cells; therefore, it is challenging to characterize membrane properties in specific organelles or assess their responses to pharmacological treatments in intact cells. Here, we describe the synthesis and application of Laurdan-derived probes that read out the membrane packing of individual cellular organelles. The set of organelle-targeted Laurdans (OTL) localizes to the ER, mitochondria, lysosomes, and Golgi compartments with high specificity while retaining the spectral resolution needed to detect biological changes in membrane ordering. We show that ratiometric imaging with OTLs can resolve membrane heterogeneity within organelles as well as changes in lipid packing resulting from inhibition of trafficking or bioenergetic processes. We apply these probes to characterize organelle-specific responses to saturated lipid stress. While the ER and lysosomal membrane fluidity is sensitive to exogenous saturated fatty acids, that of mitochondrial membranes is protected. We then use differences in ER membrane fluidity to sort populations of cells based on their fatty acid diet, highlighting the ability of organelle-localized solvatochromic probes to distinguish between cells based on their metabolic state. These results expand the repertoire of targeted membrane probes and demonstrate their application in interrogating lipid dysregulation.
14915
Reposted by Eddie Rashan
Jeremy Baskin @jeremybaskin.bsky.social · 20/08/2025
Quite a week for #lipidtime: phenomenal study using bifunctional lipid probes to quantify intracellular lipid transport from @nadlerlab.bsky.social and colleagues is now out @nature.com! www.nature.com/articles/s41...
nature.com
Quantitative imaging of lipid transport in mammalian cells - Nature
Directional, non-vesicular lipid transport is responsible for fast, species-selective lipid sorting into organelle membranes.
15618
Reposted by Eddie Rashan
Ewan Birney @ewanbirney.bsky.social · 21/08/2025
Grrrr. We don't call protein phosphorylation or acteylation epiproteomics. So let's not call RNA modification epitranscriptomics. In fact, realisitically, epigenetics has so many definitions, some of them non-overlapping, that this whole epi-XXXX (genetics/genomics whatever) is just not helping us.
1212027
Reposted by Eddie Rashan
Lydia Lynch @lydialynch.bsky.social · 28/07/2025
This was a labor of love requiring lots of teamwork over years, repeating in 3 locations! Thanks to all the lab over the years, giving their time generously to this team project, & our wonderful collaborators. The source of fat matters for anti-tumor immunity 🐄🐖🧈🌴🫒🥥 www.nature.com/articles/s42...
nature.com
The source of dietary fat influences anti-tumour immunity in obese mice - Nature Metabolism
This study shows that animal-based high-fat diets accelerate tumour growth and impair anti-tumour response to melanoma in obese mice, whereas plant-based high-fat diets do not.
78328
Reposted by Eddie Rashan
DeBerardinis Lab at UT Southwestern Medical Center @rjdlab.bsky.social · 29/07/2025
1/Patient-derived xenografts (PDXs) are used in preclinical testing of cancer therapies, including metabolic therapies. We determined which metabolic properties are retained, and which are lost, when melanomas from patients are implanted and passaged as PDXs in mice. www.nature.com/articles/s42...
nature.com
Conservation and divergence of metabolic phenotypes between patient tumours and matched xenografts - Nature Metabolism
Rao and Cai et al. perform a detailed metabolic comparison between primary tumours from patients and their matching xenografts, which identify conserved as well as divergent metabolic patterns.
45619
Reposted by Eddie Rashan
Muir Lab @muirlab.bsky.social · 19/07/2025
Super excited to share new review on metabolic stress and adaptations in pancreatic cancer to these stresses from @cssheehan.bsky.social jci.org/articles/vie... 1/6
jci.org
JCI - What’s on the menu?: metabolic constraints in the pancreatic tumor microenvironment
12612
Reposted by Eddie Rashan
Natalie Niemi @nieminm.bsky.social · 16/07/2025
Super excited for Niemi lab grad student Hannah Pletcher, who placed second in the recent "What's Your Story" Sci-comm writing contest put on by The Scientist! Read more about the contest, as well as Hannah's winning entry, here: www.the-scientist.com/what-s-your-... #ProudPI
the-scientist.com
What’s Your Story? 2025 Contest Winners
The Scientist is excited to announce the winners of our 2025 science writing contest!
0203
Reposted by Eddie Rashan
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
AND IT'S DONE! A 🧵 on our recent article now out in @natsmb.nature.com! Co-led with @abbybartlett.bsky.social, Pagliarini Lab, @judisimcox.bsky.social, we find ACAD10/11 are NOT like other acyl-CoA dehydrogenases and instead catabolize atypical lipids called 4-hydroxy acids 🤯 doi.org/10.1038/s415...
doi.org
ACAD10 and ACAD11 enable mammalian 4-hydroxy acid lipid catabolism - Nature Structural & Molecular Biology
Rashan, Bartlett and colleagues show that mammalian 4-hydroxy fatty acids are primarily catabolized by ACAD10 and ACAD11 (atypical mitochondrial and peroxisomal acyl-CoA dehydrogenases, respectively) ...
23619
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
Thank you, CJ! Hope you and your lab are well.
110
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
Yes!! WOOHOO!
010
Reposted by Eddie Rashan
Abby Bartlett @abbybartlett.bsky.social · 19/06/2025
Very excited to see this work with @edreesrashan.bsky.social published in @natsmb.nature.com ! #metabolism #AmazingACADs 🤩
142
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
It was a privilege to work on a project that allow us to span multiple disciplines and reveal new fundamental biology. Thank you to our funding support, incl. from the NIH, @hhmi.org , and institutional support @washumedicine.bsky.social @uwbiochem.bsky.social @morgridgeinstitute.bsky.social
030
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
We hope our findings will spur future studies to clarify how these enzymes and the regulation of 4-HAs underlie human health and disease. There is much to learn about how 4-HAs contribute to whole body metabolic flexibility and their tissue- and organelle-specific functions!
110
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
Lastly, we wanted to determine how dysfunctional 4-HA catabolism affects physiology and generated ACAD11 KO mice. Disruption of ACAD11 in vivo leads to accumulation in plasma 4-HAs, higher susceptibility to diet-induced fat gain, and dysfunctional adipogenesis. 🧐
120
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
If they have similar activities, are ACAD10/11 redundant in cells? Our metabolomics results suggest they are not! ACAD10 is in mitochondrial and ACAD11 is peroxisomal, and we propose that their differential localization enables cells to catabolize a wider range of 4-hydroxy acids.
120
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
Second, 4-phosphoacyl-CoA serves as a substrate for the ACAD domains, which convert it into 2-enoyl-CoA using a “redox-neutral” FAD-dependent mechanism. ACAD10/11 are unable to oxidize saturated acyl-CoAs and use a specialized motif to recognize 4-phosphoacyl-CoA.🤯🤯
110
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
How do they pull off the job? First, they use N-terminal kinase domains that specifically recognize and phosphorylate 4-hydroxyacyl-CoA. This phosphorylation is crucial for priming the elimination of the “FAO-incompatible” 4-hydroxyl group.
120
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
Using rigorous biochemistry/cryo-EM, we demonstrate that ACAD10/11 convert 4-hydroxyacyl-CoAs into 2-enoyl-CoA intermediates that can enter the FAO pathway. They both conduct a multi-step reaction that centers around a key (and 🧊very cool🧊) PHOSPHORYLATED acyl-CoA intermediate.
121
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
Motivated to understand the biology of 4-hydroxy acids (4-HAs) in mammals, we sought to discover and study the enzymes responsible for their metabolism. It was a 3AM bacterial homology analysis that led us to think of ACAD10 and ACAD11 as likely candidates for this pathway (see Figure 1)
120
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
Fatty acid B-oxidation (FAO) is the primary pathway by which fatty acids are catabolized. However, some fatty acids are modified and need to be fixed to become “FAO-compatible”. One such class is 4-hydroxy acids, which are present in diet and living systems including humans.
120
Eddie Rashan @edreesrashan.bsky.social · 23/06/2025
AND IT'S DONE! A 🧵 on our recent article now out in @natsmb.nature.com! Co-led with @abbybartlett.bsky.social, Pagliarini Lab, @judisimcox.bsky.social, we find ACAD10/11 are NOT like other acyl-CoA dehydrogenases and instead catabolize atypical lipids called 4-hydroxy acids 🤯 doi.org/10.1038/s415...
doi.org
ACAD10 and ACAD11 enable mammalian 4-hydroxy acid lipid catabolism - Nature Structural & Molecular Biology
Rashan, Bartlett and colleagues show that mammalian 4-hydroxy fatty acids are primarily catabolized by ACAD10 and ACAD11 (atypical mitochondrial and peroxisomal acyl-CoA dehydrogenases, respectively) ...
23619
Reposted by Eddie Rashan
Henne lab @hennelab.bsky.social · 05/05/2025
Proud present our latest work led by Blessy Paul, now in Developmental Cell @cellpress.bsky.social. Here, we characterize an ER-localized antioxidant enzyme in humans and Drosophila that acts as a lipid quality control factor to suppress ER lipid oxidation. www.cell.com/developmenta...
cell.com
Paraoxonase-like APMAP maintains endoplasmic-reticulum-associated lipid and lipoprotein homeostasis
Here, Paul et al. show that APMAP is an ER-localized paraoxonase-like enzyme that suppresses lipid oxidation and redox stress at the ER network. APMAP loss leads to ER stress, redox disruption, phosph...
03710
Reposted by Eddie Rashan
Stirling Churchman @stirlingchurchman.bsky.social · 21/04/2025
My father-in-law, Jack Strominger, and I wrote a letter to the @wsj.com editor about the current threats to science due to Trump's funding freeze. Please repost! www.wsj.com/opinion/scie...
wsj.com
Opinion | Science Suffers With Trump’s Funding Freeze
America’s scientific enterprise demands reliable stewardship, not destabilizing political intervention.
3177139
Reposted by Eddie Rashan
Jeremy Berg @jeremymberg.bsky.social · 22/04/2025
ATTENTION I am hearing from several sources that "NIH" sent out termination notices for most or all "diversity" awards yesterday to coincide with the new Notice. If you were affected by this and are willing to share, please DM me or reach me on Signal (jeremymberg.78) 1/2
media.tenor.com
a person is holding a red object in their hand .
ALT: a person is holding a red object in their hand .
412099
Reposted by Eddie Rashan
Natalie Niemi @nieminm.bsky.social · 14/04/2025
Niemi lab and @washubbsb.bsky.social graduate student Youmian Yan gave a fantastic presentation on her work at the @asbmb.bsky.social meeting in Chicago! #ProudPI (photo credit to @kerikozul.bsky.social)
02612
Reposted by Eddie Rashan
Eddie Rashan @edreesrashan.bsky.social · 12/04/2025
I'm excited to present my work on the deorphanization of atypical lipid catabolic enzymes at #ASBMB25 on Monday April 14th. Please come to W179 to hear my flash-talk at 9:30AM and hang out with me at poster #350! #lipidtime
0196
Reposted by Eddie Rashan
Vander Heiden Lab at MIT @mvhlab.bsky.social · 13/04/2025
If you're at #ASBMB25, head over to Eddie's poster to hear about his cool work on lipid catabolic enzymes!
082
Reposted by Eddie Rashan
Tigist Tamir @phosphotig.bsky.social · 12/04/2025
At #ASBMB25 trying to soak in the science! Excited for @berlowlab.bsky.social's presentation. See y'all around 😃
192
Eddie Rashan @edreesrashan.bsky.social · 12/04/2025
I'm excited to present my work on the deorphanization of atypical lipid catabolic enzymes at #ASBMB25 on Monday April 14th. Please come to W179 to hear my flash-talk at 9:30AM and hang out with me at poster #350! #lipidtime
0196