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Carolin Klose

@carolinklose.bsky.social
135 followers 191 following 23 posts

PhD student at TUM& MPIB with Matthias Feige and Brenda Schulman Proteostasis and membrane protein enthusiast Boehringer Ingelheim Fonds PhD fellow

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Reposted by Carolin Klose
Silvia Ramundo @sramundo.bsky.social · 24/06/2026
1/7 New preprint: we found that Chlamydomonas carries a giant and unexpectedly elaborate chloroplast RNA polymerase with 12 previously unknown subunits, overturning the idea that the complexity of this organellar enzyme emerged during plant terrestrialization! www.biorxiv.org/content/10.6...
biorxiv.org
The structure of a 2-MDa chloroplast RNA polymerase reveals unexpected evolutionary complexity
Transcription in chloroplasts depends on the Plastid-Encoded RNA polymerase (PEP), a bacterial-derived enzyme whose catalytic core remains encoded by the highly reduced genome inherited from the cyano...
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Reposted by Carolin Klose
Silvia Ramundo @sramundo.bsky.social · 12/06/2026
Do you enjoy the thrill of discovery? Does this photo give you good vibes? Then you might be the right person to join our lab! Current projects range from chloroplast transcription to thylakoid membrane remodeling & we would be happy to welcome bright and motivated people at all career stages!
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Reposted by Carolin Klose
Juan C. Landoni @jclandoni.bsky.social · 21/04/2026
The Landoni Lab opens this summer at UNIL! @fbm-unil.bsky.social 🔬 Quantitative #imaging + systems biology to decipher how #metabolic architecture & #mtDNA dynamically shape tissue development, #aging and #mitodisease. Beyond excited to fire up the lasers, open positions soon! 🧪 #mitochondria #newPI
Landoni lab & UNIL logos, featuring fluorescent images of mitochondria and nematodes
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Reposted by Carolin Klose
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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Reposted by Carolin Klose
Jakob Farnung @jakobfarnung.bsky.social · 18/03/2026
The E3 ubiquitin ligase mechanism specifying target-directed microRNA degradation (TDMD) is now published! 🎉🍾 We, @bartellab.bsky.social and Schulman lab, describe how 2-RNA factors control protein degradation by recruiting an E3 ligase. @mpibiochem.bsky.social www.nature.com/articles/s41...
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Reposted by Carolin Klose
Max Planck Institute of Biochemistry @mpibiochem.bsky.social · 28/01/2026
Formation & function of #MembranelessOrganelles! #CryoET structures of #proteasome storage granules inside cells! Read our paper @cp-cell.bsky.social! ❕Publication: doi.org/10.1016/j.ce... ❕Press Release: www.biochem.mpg.de/en/pressroom @uoftmedicine.bsky.social @erc.europa.eu #UPSmeetMet
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Reposted by Carolin Klose
Tino Pleiner @pleinerlab.bsky.social · 16/01/2026
We made nanobodies that make your heart🫀 stop 🛑beating. Keep reading to learn how this taught us about how large membrane proteins like ion channels are folded and assembled in human cells. Beyond excited to share my lab's first preprint: Please 🔄 bit.ly/49A0PtD
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Reposted by Carolin Klose
Alina Thielen @alinathielen.bsky.social · 13/01/2026
New year, new preprint! 🎊 We are excited to share our recent work on #E3 ligase regulation in #metabolism! www.biorxiv.org/content/10.6... #ubiquitin #targetedproteindegradation #chemicalbiology 1/6
biorxiv.org
A CK2-FBXW11 kinase-E3 ubiquitin ligase cascade is a metabolic sensor regulating Tryptophan 2,3-dioxygenase stability
Small molecules toggling the ubiquitin-proteasome system (UPS) are powerful regulators of protein degradation. Yet, mechanistic knowledge of how endogenous ligands gate UPS decisions remains rudimentary. Here, we define control of UPS access to Tryptophan-2,3-dioxygenase (TDO2), which converts the essential amino acid tryptophan (Trp) to N-formylkynurenine. When Trp concentrations are limiting, TDO2 is degraded to avert tryptophanemia. Using CRISPRi screening and biochemistry, we identify a CK2-FBXW11 kinase-E3 ligase cascade that generates and recognizes tandem TDO2 phosphodegrons when not protected by Trp. Trp binding to an exosite safeguards TDO2 from phosphorylation-dependent ubiquitylation. Effects of Trp analogs on CK2-FBXW11-dependent ubiquitylation indicated that the indole, amino, and carboxylate groups are necessary for substrate shielding. Cryo-EM reveals how these moieties order a region proximal to the phosphodegrons; without Trp, this segment is flexible, enabling phosphorylation-coupled ubiquitylation. Overall, our data uncovered an endogenous small molecule allosterically stabilizing its own metabolizing enzyme through protection from a phosphorylation-ubiquitylation cascade. ### Competing Interest Statement B.A.S. is a member of the scientific advisory boards of Proxygen and Lyterian. The other authors declare no competing interests. Max Planck Society, https://ror.org/01hhn8329 European Union, ERC AdvG, UPSmeetMet, 101098161 to BAS Boehringer Ingelheim Fonds, https://ror.org/00dkye506
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Reposted by Carolin Klose
Jakob Farnung @jakobfarnung.bsky.social · 06/01/2026
When RNA Degradation 🤝 meets 🤝 Protein Degradation! tinyurl.com/E3TDMD In a collaboration of @bartellab.bsky.social and Schulman lab, we show that, in target-directed microRNA degradation (TDMD), 2-RNA-factors recruit an E3 ligase and induce the degradation of not only a protein but also RNA (1/5).
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Carolin Klose @carolinklose.bsky.social · 11/08/2025
Super excited to share our new #preprint on #BioRxiv ✨ We reveal the structural basis of a partnership between the ER membrane complex (EMC) and the P5A-ATPase Spf1 — an insertase–dislocase duo that coordinates membrane protein biogenesis and quality control. www.biorxiv.org/content/10.1...
biorxiv.org
Structural basis of an EMC:Spf1 insertase-dislocase complex in the eukaryotic endoplasmic reticulum
Most eukaryotic membrane proteins are inserted into the membrane at the endoplasmic reticulum (ER). This essential but error-prone process relies on molecular quality control machineries to prevent mi...
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Carolin Klose @carolinklose.bsky.social · 05/08/2025
Excited to share our latest study in @natcomms.nature.com , where we characterize the chaperone function of the ER membrane protein complex (EMC)—supporting membrane protein biogenesis beyond insertion! 1/9 www.nature.com/articles/s41...
nature.com
The EMC acts as a chaperone for membrane proteins - Nature Communications
Membrane proteins are essential for any cell but difficult to fold. Here, the authors show that the EMC acts as a chaperone for membrane proteins. They dissect client recognition and provide a molecul...
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