Explore tweets tagged as #RBPMS2
Wu et al demonstrate that #RBPMS & #RBPMS2 work in concert to safeguard the splicing of genes essential for cardiac #contraction, highlighting the importance of #SF collaboration in maintaining cardiac splicing signature. Learn more at https://t.co/Txc0cj7D7X
@tongbinwu
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Just published in @CircRes ! We discovered that RBPMS and RBPMS2 collaborate to maintain cardiac splicing signature. To learn more: https://t.co/1e4K6BWtTd
@MasonicResearch @UCSDHealthSci
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Researchers at the Masonic Medical Research Institute have identified two proteins, RBPMS and RBPMS2, that work together to protect heart function by processing genetic information essential for normal heart development.
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A new groundbreaking study lead by @tongbinwu, found that two #proteins, RBPMS and RBPMS2, work together to protect the hearts ability to process #genetic information for normal heart function. These splicing factors could offer new therapeutic strategies. https://t.co/Vkw79ku7Mk
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@CircRes Dec 2nd Issue is Out! https://t.co/IiX6g6rOKd Cover: Immunofluorescence staining of the linear heart tube (green) of a zebrafish embryo for the RNA binding protein RBPMS2 (magenta).
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Akerberg & colleagues discovered that #RBPMS2 is a splicing factor that is essential for #cardiomyocyte #contractility. Learn more at https://t.co/9zKdTnaMam
@AlexAkerbergPhD @calum_og @ChrisNguyenPhD @BeerensManu
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This new study from a team at Nanjing Medical University suggests that RBPMS2 activates the BMP pathway, influencing the localization of E-cadherin, which is important for early mouse embryo development during blastocyst formation. https://t.co/qwqWn0ORto
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Congratulations, Tongbin and the team! This is a beautiful work demonstrating the cooperation of RBPMS and RBPMS2 in heart development.
Just published in @CircRes ! We discovered that RBPMS and RBPMS2 collaborate to maintain cardiac splicing signature. To learn more: https://t.co/1e4K6BWtTd
@MasonicResearch @UCSDHealthSci
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@CircRes @tongbinwu This research is a pivotal step towards understanding how splicing factors cooperate to maintain heart function. It raises intriguing questions: How might modulating #RBPMS and #RBPMS2 improve treatments for cardiac dysfunctions? What other genes are similarly safeguarded by such
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Please check out our latest preprint: RBPMS and RBPMS2 Cooperate to Safeguard Cardiac Splicing
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Rbpms2 promotes female fate upstream of the nutrient sensing Gator2 complex component, Mios https://t.co/LUnfkPGsPR
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Limitations of the study: (i) RBPMS has a paralog RBPMS2 which is also highly expressed in hESCs, which we have not characterized. We did not see the association of RBPMS2 with ribosomal complexes. However, we did see its interaction translation machinery up on RNA toxic stress.
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http://t.co/Zq6zN3V7
http://t.co/VO16gfm0 High expression of the RNA-Binding Protein RBPMS2 in gastrointestinal... http://t.co/nxE80RuL
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2/3 Alexander A. Akerberg et al from Boston Children’s Hospital published the study RBPMS2 Is a Myocardial-Enriched Splicing Regulator Required for Cardiac Function
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Homodimerization of RBPMS2 through a new RRM-interaction motif is necessary to control smooth muscle plasticity http://t.co/zijg9KCfUN
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Turns out that it's fine, in fact Rbpms2b is also called Rbpms2, and that's why I was mixed up.
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The amount of legwork I have to perform to learn that asz1 = gasz, or that rbpms2 = hermes is genuinely headache inducing.
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Florence Marlow shows that males can have big hearts, if they're rbpms2 mutants #sczi2017
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