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beckmannlab.bsky.social
Beckmann Lab
@beckmannlab.bsky.social
Frank Nijpels from VitriMatics paid us a visit today. Not only did he repair our broken VitroBot Mark IV and returned it in person, he also brought some extremely cool tools ❄️ for reliable cryo-EM grid freezing 🔬.
Check out the VitriClip and the SupraBlot at vitrimatics.com.
#cryoEM #cryoET
September 23, 2026 at 3:29 PM
Reposted by Beckmann Lab
🏅 Olivia Merkel erhält UNIPRENEURS Award 2026! Die LMU-Professorin forscht an neuartigen, nicht-viralen RNA-Transportsystemen im Nanomaßstab. Auf Basis dessen, gründete sie 2023 das Spin-off RNHale mit, welches inhalierbare RNA-Therapeutika zur ursächlichen Behandlung von Asthma & COP entwickelt.
Pharmazeutin Olivia Merkel mit UNIPRENEURS Award ausgezeichnet
Höchste deutsche Auszeichnung für akademisches Unternehmertum geht an die Expertin für RNA-Wirkstofftransport.
www.lmu.de
September 23, 2026 at 12:13 PM
Reposted by Beckmann Lab
PAPER ALERT!!!
For over 20 years, circular pre-rRNA intermediates were thought to be a specific and universal requirement for archaeal ribosome biogenesis.

doi.org/10.1261/rna....

#Archaea #Ribosome #RNAProcessing
#Archaeasky #RNAsky
September 15, 2026 at 9:34 AM
New preprint! 👀RNAse activity has to be tightly regulated.✂️🧬Here, we present the dynamic architecture of the conserved Rixosome complex – a major player in ribosome maturation and heterochromatin maintenance. Our results give insights into its mode of activation.👇

#cryoEM #Ribosome #RNA
September 14, 2026 at 3:57 PM
📰Happy to share our preprint.🥳Here we investigate🔬, the essential role of the conserved RNA helicase Drs1. We show that its engagement and activity license timely incorporation of 25S rRNA domain III into maturing nucleolar pre-60S subunits.👇
doi.org/10.64898/2026.09.05.749353
#cryoEM #ribosome #RNA
September 10, 2026 at 8:17 AM
Reposted by Beckmann Lab
🧬 New preprint: "Selection and surveillance of 5S ribosomal RNA genes in human populations."

The 5S rRNA genes sit in a ~80-copy array on chromosome 1, one of the least-explored parts of the genome. We traced its variation from DNA to ribosome. 1/4🧵
August 31, 2026 at 5:55 PM
Reposted by Beckmann Lab
🧵 We’re excited to share our new bioRxiv preprint on how INO80 reads promoter-proximal DNA sequence features to position +1 nucleosomes 🧬
Amazing work by Mariia, Annika, and others! 🤩
🔗 www.biorxiv.org/content/10.6...
#ChromatinBiology #StructuralBiology #Nucleosome #INO80
September 2, 2026 at 5:44 AM
Preprint alert: a helicase watching the ribosomal A-site 👀🧬 Our cryo-EM structure reveals how yeast Dhx29 senses mRNA hairpins forming in the A-site and positions its helicase at the mRNA entry channel to resolve them during translation elongation: doi.org/10.64898/202...
#cryoEM #ribosome #RNA
September 1, 2026 at 2:31 PM
Reposted by Beckmann Lab
📣Publication alert: Julian Stingele and his team show that the chemotherapeutic drug azacitidine damages RNA and reveal a possible approach to improve therapies🤩👏
www.sciencedirect.com/science/arti...
@jstingele.bsky.social @lmu.de @shubozhao.bsky.social
RNF25 confers mRNA damage tolerance by curbing activation of the integrated stress response
Excessive RNA damage activates cellular stress responses, triggering cell death. However, pathways that negatively regulate RNA damage responses are l…
www.sciencedirect.com
March 24, 2026 at 9:26 AM
Proud to share our latest preprint! 🥳
Using a multidisciplinary approach, we uncover a dual function of the snR37 H/ACA snoRNP - combining pseudouridylation with ribosome chaperone activity within a single RNP.🔬🧬
Challenging the traditional view of snoRNP function. 👇
#cryoEM #ribosome #RNA #snoRNA
www.biorxiv.org
March 22, 2026 at 1:25 PM
Reposted by Beckmann Lab
This is how co-translational N-terminal myristoylation occurs on the ribosome. NMT1 acts together with NAC, but after the release of MetAP. Cryo-EM study by Timo Denk et al. @beckmannlab.bsky.social @giglionelab.bsky.social www.nature.com/articles/s41...
January 26, 2026 at 11:00 AM
How are histones acetylated as they emerge from the ribosome? We show that NAA40 cooperates with the NAC complex to enable co-translational acetylation of H2A/H4, revealing NAC as a coordinator of nascent protein modification. Read more about our collaboration with @kirmizislab.bsky.social #cryoEM
NAA40 and NAC cooperate in co-translational histone acetylation in humans
Nature Communications - N-terminal histone acetylation by human NAA40 alters epigenetic signaling and affects gene regulation. Here, the authors combine biochemistry and cryo-EM to unravel the...
rdcu.be
March 16, 2026 at 8:42 PM
How does the kinase ZAK sense ribosome collisions? Find out in our latest collaboration with the @greenlab.bsky.social @doubleshuang.bsky.social @Vienna Huso: 1/4
rdcu.be/eRmJl
#ribosome #cryoEM #LMU #JHMI
November 23, 2025 at 3:47 PM
🎉Thrilled to share that our lab has been awarded an ERC Synergy Grant @erc.europa.eu! Excited for amazing collaborations with the Pertschy (Uni Graz), Henras (CBI Toulouse), and Woodson (Johns Hopkins) labs.
#ERCSyG #GeneCenter #LMU #UniGraz #CNRS #JohnsHopkins
November 7, 2025 at 1:50 PM
We are excited to share our collab with @kedrov-lab.bsky.social! Using Cryo-EM❄️ on an amazing sample, we found that YidC is recruited to the back of SecYEG during late-stage substrate insertion —supporting that the "back-of-Sec" route observed in eukaryotes also exists in bacteria 🦠. Check it out👇👇👇
Very special feelings to announce this one... A project that started like 10 years ago is reaching the finish line, ready to shine. In a dream-team with @beckmannlab.bsky.social we solved the long-chased structure of the active membrane protein insertase SecYEG-YidC
www.biorxiv.org/content/10.1...
Substrate-induced assembly and functional mechanism of the bacterial membrane protein insertase SecYEG-YidC
The universally conserved Sec translocon and the YidC/Oxa1-type insertases mediate biogenesis of alpha-helical membrane proteins, but the molecular basis of their cooperation has remained disputed over decades. A recent discovery of a multi-subunit insertase in eukaryotes has raised the question about the architecture of the putative bacterial ortholog SecYEG-YidC and its functional mechanism. Here, we combine cryogenic electron microscopy with cell-free protein synthesis in nanodiscs to visualize biogenesis of the polytopic membrane protein NuoK, the subunit K of NADH-quinone oxidoreductase, that requires both SecYEG and YidC for insertion. We demonstrate that YidC is recruited to the back of the translocon at the late stage of the substrate insertion, in resemblance to the eukaryotic system, and in vivo experiments indicate that the complex assembly is vital for the cells. The nascent chain does not utilize the lateral gate of SecYEG, but enters the lipid membrane at the SecYE-YidC interface, with YidC being the primary insertase. SecYEG-YidC complex promotes folding of the nascent helices at the interface prior their insertion, so the examined cellular pathway follows the fundamental thermodynamic principles of membrane protein folding. Our data provide the first detailed insight on the elusive insertase machinery in the physiologically relevant environment, highlight the importance of the nascent chain for its assembly, and prove the evolutionary conservation of the gate-independent insertion route. ### Competing Interest Statement The authors have declared no competing interest. Deutsche Forschungsgemeinschaft, https://ror.org/018mejw64, Ke1879/3, 267205415 (CRC 1208) European Research Council, https://ror.org/0472cxd90, CRYOTRANSLATION
www.biorxiv.org
May 28, 2025 at 8:22 AM
Reposted by Beckmann Lab
Very special feelings to announce this one... A project that started like 10 years ago is reaching the finish line, ready to shine. In a dream-team with @beckmannlab.bsky.social we solved the long-chased structure of the active membrane protein insertase SecYEG-YidC
www.biorxiv.org/content/10.1...
Substrate-induced assembly and functional mechanism of the bacterial membrane protein insertase SecYEG-YidC
The universally conserved Sec translocon and the YidC/Oxa1-type insertases mediate biogenesis of alpha-helical membrane proteins, but the molecular basis of their cooperation has remained disputed over decades. A recent discovery of a multi-subunit insertase in eukaryotes has raised the question about the architecture of the putative bacterial ortholog SecYEG-YidC and its functional mechanism. Here, we combine cryogenic electron microscopy with cell-free protein synthesis in nanodiscs to visualize biogenesis of the polytopic membrane protein NuoK, the subunit K of NADH-quinone oxidoreductase, that requires both SecYEG and YidC for insertion. We demonstrate that YidC is recruited to the back of the translocon at the late stage of the substrate insertion, in resemblance to the eukaryotic system, and in vivo experiments indicate that the complex assembly is vital for the cells. The nascent chain does not utilize the lateral gate of SecYEG, but enters the lipid membrane at the SecYE-YidC interface, with YidC being the primary insertase. SecYEG-YidC complex promotes folding of the nascent helices at the interface prior their insertion, so the examined cellular pathway follows the fundamental thermodynamic principles of membrane protein folding. Our data provide the first detailed insight on the elusive insertase machinery in the physiologically relevant environment, highlight the importance of the nascent chain for its assembly, and prove the evolutionary conservation of the gate-independent insertion route. ### Competing Interest Statement The authors have declared no competing interest. Deutsche Forschungsgemeinschaft, https://ror.org/018mejw64, Ke1879/3, 267205415 (CRC 1208) European Research Council, https://ror.org/0472cxd90, CRYOTRANSLATION
www.biorxiv.org
May 27, 2025 at 9:21 AM
We are happy to share that our snR30 story is finally out in @natureportfolio.nature.com 🥳 We report the first structure of a H/ACA snoRNP acting in ribosome synthesis thereby providing a detailed structural and biochemical view of the snR30 snoRNP guiding local 18S rRNA subdomain folding. 👇👇👇
May 26, 2025 at 9:29 AM
Reposted by Beckmann Lab
How does an unusual heptameric AAA-ATPase translocate fully-folded Rieske protein across the inner mitochondrial membrane?
Cryo-EM & functional data by Roland Beckmann and coworkers show how Bcs1 alternates between different states during its translocation activity.
www.embopress.org/doi/full/10....
May 23, 2025 at 11:23 AM