Accornero Lab
@AccorneroLab
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The Accornero Lab at @brownuniversity studies RNA biology of cardiac and skeletal muscles 🫀💪🧬🔬. Account managed by lab members
Providence, RI
Joined May 2023
We're hiring! We are excited to officially announce our recent move to @BrownUniversity in Providence, Rhode Island, USA and are actively recruiting at all levels! If you're interested in basic or translational RNA Biology in cardiac ❤️ or skeletal muscle 💪, contact us!
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That's it for the week at Keystone #KSCardioEpi24. A week of science and fun @PorrelloER @AccorneroLab . Heading back to work @NUSMedicine
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Leaving #KSCardioEpi24 in Hannover with great impressions and new 💡&collaborations🙌Thanks to the organizers @rsyf2 @PorrelloER @AccorneroLab for an inspiring meeting!🧬🫀
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Beautifully said from our @AccorneroLab MD/PhD alumna @olgagolubeva65! Great job, Olga!
🌟 Meet @olgagolubeva65, a third-year medical student at #OSUCOM. Drawn to patient-oriented curriculum, scholarships provide her with financial stability & motivation. Her gratitude to donors is palpable as she hopes to pay it forward one day. #DayOfGiving
https://t.co/OaBcDdjwlz
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See below for our latest work in @CircAHA! Great job, Charles, and thanks to our wonderful collaborators across the 🌎 for their help getting this story published! @CatMak23 #m6A #METTL3
Happy to share our work published in @CircAHA ! Very grateful to our co-authors, reviewers, editors, and @CircAHA for publishing our study. Read below for a short tweetorial about #m6A #Nanopore #METTL3 and #cardiomyocytes. (1/6) https://t.co/7umW2zyOym
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Our study links post-transcriptional and post-translational events in muscle regulation. Great work Chris and thank you to all our collaborators! @CRabolli @olgagolubeva65 @DaveArnoldLab
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But how does the YTHDF2-ASB2 axis regulate muscle size? We found upregulation of anti-hypertrophic #SMAD3 and transcription of its targets. (8/10)
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We saw enhanced #protein decay in knockout muscles and detected a strong induction of #ubiquitin ligase #ASB2 in knockout muscles via LC-MS/MS. (6/10)
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Knockout muscles also fail to respond to surgically induced hypertrophic overload, suggesting that #YTHDF2 promotes muscle growth. (5/10)
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Our latest manuscript "YTHDF2 governs muscle size through a targeted modulation of proteostasis” is out in @NatureComms ! Congratulations Chris and co-authors! Read below to see the highlights of our work (1/10) #m6A #YTHDF2 #SkeletalMuscle @BrownMolBio
https://t.co/LhuyEVv1ZB
nature.com
Nature Communications - This study highlights the role of YTHDF2, a protein that recognizes m6A-modified RNA, in determining muscle size. The authors show a post-transcriptional mechanism...
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#EMBOCardiobiology @EMBO @EMBLEvents @McKinseyLab @JD98119 @CatMak23 Federica Accornero. Nice (jetlag) talks and more to come! #fibroblasts #epigenetics #cardioimmunology
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What a pleasure to have a #Cardiopulse article from the @AccorneroLab, a leading team investigating cardiovascular #epitranscriptomics. This piece will educate cardiologists on emerging mechanisms underpinning gene expression changes in complex disease phenotypes🔥#CardioTwitter
‼️new paper out today in Cardiopulse of the European Heart Journal. Always great working with @ESC_Journals @FrancescoPaneni
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‼️new paper out today in Cardiopulse of the European Heart Journal. Always great working with @ESC_Journals @FrancescoPaneni
Out today in Cardiopulse of the European Heart Journal @ESC_Journals! Check out our new paper discussing #RNA modifications, the #Epitranscriptome and #m6A in the🫀 @AccorneroLab
@escardio Cardiac cryptographers: cracking the code of the epitranscriptome
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Great opportunity!!!
We're hiring! We are excited to officially announce our recent move to @BrownUniversity in Providence, Rhode Island, USA and are actively recruiting at all levels! If you're interested in basic or translational RNA Biology in cardiac ❤️ or skeletal muscle 💪, contact us!
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Also check out some of our recent works:
pubmed.ncbi.nlm.nih.gov
federica accornero - Search Results - PubMed
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