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Congrats (again) to Julia and Abby for their collaborative effort asking when and why cells use the TCA cycle. TLDR; it's not just about ATP or making nutrients-- the TCA cycle is also important to remove nutrients!
HUGE congratulations to our very own Julia Brunner for her paper describing cell-state dependent engagement of the malate-aspartate shuttle, out today!! Many thanks to all lab members, funders, and colleagues who supported the work, and stay tuned for more from Julia very soon!
Now online! Citrate clearance is a major function of aconitase 2 in the canonical TCA cycle
3mo
3mo
3mo
#NatMetabPicks | In @cp-cell.bsky.social led by @lydiafinley.bsky.social ( @mskcancercenter.bsky.social ) 🧪 Citrate clearance is an essential function of the TCA cycle via the activity of aconitase 2. www.cell.com/cell/fulltex...
📣 First preprint from the TeSlaa lab 📣 We investigated how methyl-rich nutrient, choline, is used in the body and how systemic one-carbon metabolism responds to dietary methyl-donor deficiency. www.biorxiv.org/content/10.6...
3mo
1st McKinley Lab grad student’s 1st preprint! @claireang.bsky.social studied how the uterus safely excises massive amounts of tissue during menstruation and pregnancy. Come for her GORGEOUS images, stay for her incredible discoveries. www.biorxiv.org/content/10.6... w/ @akelleher1017.bsky.social
Citrate clearance is a major function of aconitase 2 in the canonical TCA cycle
Beyond its traditional role in supporting bioenergetic and biosynthetic demands, the canonical TCA cycle is also essential for nutrient clearance. When pyruvate oxidation and citrate production increase, aconitase 2 becomes essential to prevent mitochondrial citrate accumulation, which can trigger the integrated stress response and impair cell fitness.
dlvr.it
4mo
Lydia Finley
Lydia Finley
Cell - a Cell Press journal
3mo
Beyond its traditional role in supporting bioenergetic and biosynthetic demands, the canonical TCA cycle is also essential for nutrient clearance. When pyruvate oxidation and citrate production increa...
www.cell.com
Citrate clearance is a major function of aconitase 2 in the canonical TCA cycle
We are hiring a postdoc! The group has a funded opening to join our amazing team on the NCI's Frederick, MD campus. This is an opportunity to train in cutting-edge chemical & RNA biology methods with a supportive, tight-knit group. Link to posting below. Please share! jobrxiv.org/job/national...
Nature Metabolism
4mo
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...
🍰Read also the Research Briefing here: 👉https://rdcu.be/e3tiZ bit.ly/404rclA
☕Yashinskie, Zhu et al show that #p53 activation triggers increased synthesis and accumulation of phospholipids, with enhanced activation of #autophagy and lysosomal catabolism programmes and increased reliance on lipid headgroup recycling. @lydiafinley.bsky.social bit.ly/4asbwO3
www.biorxiv.org
Tara TeSlaa
Kara McKinley
1mo
4mo
4mo
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.
authors.elsevier.com
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Jordan Meier
A big chunk of my postdoctoral work on cell-state dependent metabolism is now out at @cp-molcell.bsky.social: www.cell.com/molecular-ce... 1/
Nature Cell Biology
Nature Cell Biology
3mo
Eddie Rashan
Brunner et al. report that malate-aspartate shuttle engagement is cell-state dependent and can be modulated by the availability of the amino acid aspartate. In differentiated cells, malate-aspartate s...
www.cell.com
Aspartate availability drives differential engagement of the malate-aspartate shuttle
Yashinskie, Zhu and colleagues show that p53 activation triggers increased synthesis and accumulation of phospholipids, with enhanced activation of autophagy and lysosomal catabolism programmes and in...
bit.ly
p53 increases phospholipid headgroup scavenging in senescence - Nature Cell Biology
Excited to share my new preprint from the McKinley lab, where we explored regenerative mechanisms across menstruation and pregnancy! We thought specialized glands would regenerate everything. We were wrong. But the real mechanism turned out to be way cooler :) 🧪🧵 www.biorxiv.org/content/10.6...
3mo
One more thing- here, together with amazing human being, friend & stellar physician scientist Abby Xie, we identify a new function of the TCA cycle, which is citrate clearance, now online at @cellpress.bsky.social: www.cell.com/cell/fulltex...
www.biorxiv.org
Julia S. Brunner
3mo
Beyond its traditional role in supporting bioenergetic and biosynthetic demands, the canonical TCA cycle is also essential for nutrient clearance. When pyruvate oxidation and citrate production increa...
www.cell.com
Citrate clearance is a major function of aconitase 2 in the canonical TCA cycle
Julia S. Brunner
The transcription factor p53 enables phosphoethanolamine scavenging to support increased membrane phospholipid synthesis during senescence. Perturbing lipid synthesis or recycling compromises the fitn...
A p53-controlled lysosomal recycling circuit fuels phospholipid synthesis - Nature Cell Biology
bit.ly
Claire Ang