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WredenbergLab

@WredenbergLab

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Mitochondrial research at the Division for Molecular Metabolism, Karolinska Institute @wredenberglab.bsky.social

Stockholm, Sweden
Joined August 2020
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@WredenbergLab
WredenbergLab
5 months
Our study on how mitochondrial methylation shapes gene expression is now out. Using long-read RNAseq and cryo-EM, we uncover two methylation-dependent checkpoints in ribosome biogenesis. Read all about it at:
@WredenbergLab
WredenbergLab
1 year
Our study on methylation during mitochondrial gene expression is now online. Great effort by @ruth_icg, Vivek Singh, @A_Amunts, and @MolMet_KI. https://t.co/JWQpbvLDX4
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@PaulinaWanrooij
Paulina Wanrooij
5 months
Our newest paper on mitochondrial Topoisomerase 1 shows that Top1mt has only weak endoribonuclease activity and it therefore does not often generate deletions at incorporated ribonucleotides. This helps explain why ribonucleotides are tolerated in mtDNA. https://t.co/7y4I61KuSN
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academic.oup.com
Abstract. The incorporation of ribonucleotides (rNMPs) into the nuclear genome leads to severe genomic instability, including strand breaks and short 2–5 b
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@WredenbergLab
WredenbergLab
8 months
Interested in mitochondrial biology? We are looking for an enthusiastic PostDoctoral fellow and PhD student to join our group in Stockholm. @mitojobs @MolMet_KI For the PhD position:  https://t.co/9ZsHC4RbqJ For the PostDoc position:  https://t.co/MOBdoUy10K
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ki.varbi.com
Do you want to contribute to improving human health? Research at the Division of Molecular Metabolism aims to understand the regulation of mitochondrial function and the role of mitochondrial dysfunct
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@Hansong_Ma
Hansong Ma
9 months
Check out our recent paper showing how maternal inheritance of mtDNA is guaranteed in D. melanogaster.
@embojournal
The EMBO Journal
9 months
Hansong Ma and coworkers identify POLDIP2 as a novel mitochondrial exonuclease interacting with CLPX protease and promoting elimination of paternal mtDNA during Drosophila spermatogenesis https://t.co/WbxQOJTQVm
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@Pagliarini_Lab
Pagliarini Lab
10 months
I'm excited to share our latest work linking TAG mobilization to mitochondrial stress recovery. A monumental effort by @Zak_Bakes (on the faculty job market soon!). Great collaboration with the @Coon_Labs and others. https://t.co/4gnU2DgaG4 #mitochondria #HHMINews
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@hauke_hillen
Hauke Hillen
10 months
The peer-reviewed version of our paper on human tRNA 3' processing is now published in @NatureSMB. Many thanks to the reviewers for their constructive comments! https://t.co/CckIvTOOxX See also the very nice related work by @BMartinHallberg @no1gv:
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embopress.org
imageimageThe human mitochondrial RNase Z complex is essential for the production of mitochondrial tRNAs. This study reveals its complete structural framework, detailing its role in tRNA maturation...
@hauke_hillen
Hauke Hillen
2 years
Happy to share a new preprint, in which we describe the mechanism of human tRNA 3' processing. We show why the RNase Z ELAC2 acts as a monomer in the nucleus, but forms a multi-subunit complex in mitochondria. Plase see 🧵 by @BhattaArjun2p for details! https://t.co/cY5Dj66wkw
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@FilipovskaLab
Aleksandra Filipovska
11 months
New structural and functional analyses show that FASTKD4 supports non-canonical RNA processing and MT-ND3 mRNA stability. Thanks to all authors for their contributions and the reviewers for their kind advice! https://t.co/0eH1tbkKDA #RNA #mitochondria #mtDNA
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@WredenbergLab
WredenbergLab
11 months
We performed a genetic screen in fruit flies and identified several pathways that can rescue a lethal phenotype of mtDNA mutator flies. Looking forward to testing this in a higher species.
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@WredenbergLab
WredenbergLab
11 months
We argued that since the accumulation of mtDNA mutations is progressive, there must be cellular mechanisms that affect their pathogenicity.
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@WredenbergLab
WredenbergLab
11 months
We are excited to share our latest work on mechanisms that protect from mitochondrial dysfunction. Thank you to all collaborators and the 4th anonymous reviewer for supporting us. @labs_mann @NatureComms @metaboflo https://t.co/xLNyW00oil
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nature.com
Nature Communications - Finding ways to compensate for mitochondrial dysfunction is essential. Here, the authors performed a genome-wide genetic screen to identify genes that mitigate the larvae...
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@WredenbergLab
WredenbergLab
1 year
Using nanopore RNAseq and cryoEM on SAMC KO MEFs and skel muscle we show that SAM is crucial for mt-rRNA processing and mitoribosome assembly. #mitochondria.
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@TheKailaLab
VilleKaila
1 year
Extremely proud to share our integrative work on how 'Dissected antiporter modules establish the minimal proton-conducting elements in Complex I' – now out in Nature Comms! Many thanks to @KAWstiftelsen & @Vetenskapsradetfor funding. https://t.co/Vek2ZIlUoq
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@RubalDiana
Diana Rubalcava
1 year
🚨Mitochondrial research out🚨 Our latest work on the synergy between LRPPRC and SLIRP for maintaining mtDNA gene expression in vivo is now published! 🧬 Free-access link to the article:
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academic.oup.com
Abstract. In mammals, the leucine-rich pentatricopeptide repeat protein (LRPPRC) and the stem-loop interacting RNA-binding protein (SLIRP) form a complex i
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@WredenbergLab
WredenbergLab
1 year
Happy to share our latest manuscript on using quantitative proteomics to diagnose patients with mitochondrial disease. Great collaboration with @taylorlabncl and @lukas_k https://t.co/Vak11bWg0F
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@RobertaFilogra2
Roberta Filograna
1 year
We are excited to share our lab's first preprint, highlighting the role of the CHCHD2-CHCHD10 complex in preserving tissue homeostasis. A huge thank you to all our collaborators! https://t.co/21K1yuwd5H
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biorxiv.org
The highly conserved CHCHD2 and CHCHD10 are small mitochondrial proteins residing in the intermembrane space. Recently, mutations in the CHCHD2 and CHCHD10 genes have been linked to severe disorders,...
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