Lauren Albrecht
@albrechtlab.bsky.social
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📥 169
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Asst Prof UC Irvine
pinned post!
Dream come true to be featured on the cover!
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10 months ago
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pharmsci.uci.edu/2025/06/05/a...
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Albrecht Lab Hosted Lab Visit for Children with Cystinosis as Part of Cystinosis Research Foundation’s Day of Hope Family Conference – UCI School of Pharmacy & Pharmaceutical Sciences
https://pharmsci.uci.edu/2025/06/05/albrecht-lab-hosted-lab-visit-for-children-with-cystinosis-as-part-of-cystinosis-research-foundations-day-of-hope-family-conference/
4 months ago
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reposted by
Lauren Albrecht
Stylianos Lefkopoulos (he/him)
6 months ago
🥂Congratulations to Petropoulos & co for their new Open Access study in our journal (
@naturecellbiology.bsky.social
): single-cell
#transcriptomics
, spatial, functional and comparative analyses show that the guinea pig presents high similarity with early human
#embryogenesis
.
bit.ly/3RaRwWY
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The guinea pig serves as an alternative model to study human preimplantation development - Nature Cell Biology
Petropoulos and colleagues perform single-cell transcriptomics, spatial, functional and comparative analyses, and show that the guinea pig presents high similarity with early human embryogenesis.
https://bit.ly/3RaRwWY
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reposted by
Lauren Albrecht
Aakriti Jain
6 months ago
SO excited to share that a major part of the postdoctoral work in
@robzonculab.bsky.social
lab is now published: “Leucine aminopeptidase LyLAP enables lysosomal degradation of membrane proteins”
www.science.org/doi/10.1126/...
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Leucine aminopeptidase LyLAP enables lysosomal degradation of membrane proteins
Breakdown of every transmembrane protein trafficked to lysosomes requires proteolysis of their hydrophobic helical transmembrane domains. Combining lysosomal proteomics with functional genomic dataset...
https://www.science.org/doi/10.1126/science.adq8331
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Lauren Albrecht
Harvard Med Cell Biology
8 months ago
New work from Coon Lab (Wisconsin),
@harperlabhms.bsky.social
& Gygi Lab
@harvardcellbio.bsky.social
reports global proteomics/lipidomics of > 2 dozen Lysosomal Storage Disease mutant cells & reveals iron defects associated with mitochondrial defects in NPC2 mutants
www.science.org/doi/10.1126/...
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Global cellular proteo-lipidomic profiling of diverse lysosomal storage disease mutants using nMOST
A nanoflow multiomic workflow reveals how lysosomal dysfunction disrupts autophagy and mitochondrial homeostasis in LSD mutants.
https://www.science.org/doi/10.1126/sciadv.adu5787
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Lipidome, proteome, LSD. What’s not to love??
add a skeleton here at some point
7 months ago
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reposted by
Lauren Albrecht
Rajat Singh Lab
9 months ago
Thank you Drs. Dan Klionsky and Dimitra Dialynaki for your commentary on our work:
www.tandfonline.com/doi/epdf/10....
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Identification of the mammalian VPS4A as a selective lipophagy receptor
https://www.tandfonline.com/doi/epdf/10.1080/15548627.2024.2441535?needAccess=true
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So much fun sharing MrTAC with Keystone and seeing old friends and making new ones
@fleurmferguson.bsky.social
@stevenbanik.bsky.social
@dannomura.bsky.social
@danetteldaniels.bsky.social
#lysosome
#tpd
7 months ago
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Thank you Brian !!
add a skeleton here at some point
7 months ago
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Honored to be a 2025 Sloan Research Fellow!
#sloanfellow
add a skeleton here at some point
7 months ago
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reposted by
Lauren Albrecht
Brian Paegel
8 months ago
Pondering a purge of pesky pathological proteins?
add a skeleton here at some point
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reposted by
Lauren Albrecht
Carolyn Bertozzi
8 months ago
Oh no, they said “bias” in the title: AI-mediated desk rejection at NSF
www.nature.com/articles/s41...
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The role of ionic blockades in controlling the efficiency of energy recovery in forward bias bipolar membranes - Nature Energy
Bipolar membranes are increasingly being applied in a variety of electrochemical devices, yet understanding of how they operate in complex electrolyte environments is still limited. Here the authors o...
https://www.nature.com/articles/s41560-023-01404-7
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Honored to be giving a talk at Dana-Farber’s TPD seminar this Thursday 2/6 at 9am PST.
dfci.zoom.us/webinar/regist…
Come check out MrTAC đź’Š
@danafarber.bsky.soci
al
8 months ago
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reposted by
Lauren Albrecht
Brian Kleiboeker
9 months ago
CRISPR screening in epithelial cells suggests that peroxisome-derived ether lipids alter cellular viability in response to lipotoxic stress. Fas-associated factor family member 2 (FAF2) appears to be a key regulator of this process. This is an interesting preprint!
www.biorxiv.org/content/bior...
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https://www.biorxiv.org/content/biorxiv/early/2024/12/17/2024.12.12.628015.full.pdf
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reposted by
Lauren Albrecht
Cell Biology J-Club
8 months ago
Protein Kinase C positively regulates peroxisome biogenesis by promoting peroxisome-endoplasmic reticulum interaction
www.biorxiv.org/content/10.1...
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Protein Kinase C positively regulates peroxisome biogenesis by promoting peroxisome-endoplasmic reticulum interaction
Peroxisomes carry out a diverse set of metabolic functions, including oxidation of very long-chained fatty acids, degradation of D-amino acids and hydrogen peroxide, and bile acid production. Many of ...
https://www.biorxiv.org/content/10.1101/2025.01.21.634043v1
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reposted by
Lauren Albrecht
Guillaume Méric
almost 2 years ago
"An early-life microbiota metabolite [peroxisome proliferator-activated receptor Îł, or PPAR-Îł] protects against obesity by regulating intestinal lipid metabolism [in mice]"
www.sciencedirect.com/science/arti...
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Lauren Albrecht
Nature Chemical Biology
9 months ago
... And if you want to know more, here's the featured Article: Methylarginine targeting chimeras for lysosomal degradation of intracellular proteins ($)
doi.org/10.1038/s415...
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Methylarginine targeting chimeras for lysosomal degradation of intracellular proteins - Nature Chemical Biology
Development of a targeted protein degradation platform, methylarginine targeting chimera (MrTAC), enables arginine methylation-driven degradation of intracellular proteins in lysosomes.
https://doi.org/10.1038/s41589-024-01741-y
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reposted by
Lauren Albrecht
Nature Chemical Biology
9 months ago
Our December issue has been out for a new weeks but it has quite a striking confocal microscopy image on the cover.
www.nature.com/nchembio/vol...
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reposted by
Lauren Albrecht
Thomas Arnesen
10 months ago
Methylarginine targeting chimeras for lysosomal degradation of intracellular proteins. The MrTAC chimera recruits PRMT1 to a target protein for induced degradation in lysosomes.
@albrechtlab.bsky.social
@natureportfolio.bsky.social
www.nature.com/articles/s41...
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reposted by
Lauren Albrecht
Craig M. Crews
12 months ago
www.nature.com/articles/d41...
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PROTAC protein degraders to drug the undruggable enter phase 3 trials
Pharmaceutical companies are investing in therapies that target proteins for degradation, with trials ongoing for cancer, autoimmune diseases and neurological disorders.
https://www.nature.com/articles/d41591-024-00072-8
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Loving
#CellBio2024
and excited to present in micro session MONDAY 10:30 AM 28C microsession
#MrTAC
#lysosome
#degrader
#TPD
#methylation
9 months ago
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Excited to attend ASCB
#CellBio2024
! The Albrecht lab will present on lysosomes, quality control, lipid / carbohydrate metabolism, and MrTAC TPD targeted degrader. Please check out our lab's talks and posters:
10 months ago
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reposted by
Lauren Albrecht
Science Magazine
10 months ago
A new
#ScienceAdvances
study demonstrates a vaccine for cancer immunotherapy that would speed up the efficiency of messenger RNA translation in cytoplasm—and effectively inhibited tumor growth.
scim.ag/49qY0sY
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mRNA compartmentalization via multimodule DNA nanostructure assembly augments the immunogenicity and efficacy of cancer mRNA vaccine
Intracellular DNA assembly for mRNA vaccine compartmentalization facilitates antigen expression and enhances adjuvant efficacy.
https://scim.ag/49qY0sY
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Dream come true to be featured on the cover!
add a skeleton here at some point
10 months ago
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Thank you
@haoyin.bsky.social
!!
add a skeleton here at some point
10 months ago
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reposted by
Lauren Albrecht
Lorena Benedetti
10 months ago
Kicking off here with some old but gold movies showing ER-lysosome interactions triggered by blue-light excitation of the light-sensitive protein eMags. A shining example of how light can control cellular dynamics! 💡🧫✨
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