How timely - https://t.co/bZ6JE5FrXU: Ambros and Ruvkun discovered miRNAs by studying the developmental timing pathway on which this PhD project focuses - the video 👇shows the consequences of mutating the let-7 miRNA, https://t.co/Sg2nRoBTE3
Check out our latest preprint on how Hydra cells regenerate missing parts. You might need to update your textbook knowledge on regeneration… https://t.co/tB1vSlzGcM
@PetersLabFMI: Excited to share our latest preprint lead by Greg Fanourgakis (@Grigo_Fanou). Key findings are that DNA methylation modulates nucleosome retention in sperm and H3K4 methylation deposition in early mouse embryos. https://t.co/IZ0gRWUncv
Please RT: Our incoming group leader @DahmaneSelma is hiring a lab manager to support day-to-day lab operations and help implement new techniques and protocols to investigate inflammasome antiviral responses. Apply by February 18 at https://t.co/RikT6XFXbd
Very happy to become part of the @EMBO_YIP community. I am thankful to my team, funders (@snsf_ch), institute (@IZB_unibern , @unibern), mentors (@LabGrosshans, @UriAlonWeizmann, SusanGasser [on🟦 only]), and a bit of good fortune.
Please RT! We have two openings for #PhD students interested in Developmental #Systems#Biology using #Celegans, #microscopy, and computers. Building on our recent paper in @NatureComms (https://t.co/ijUqCwu7nq) to study Organ Growth Coordination. https://t.co/ZT5ePfAiBF
And now for something completely different: proteases. Departing from our usual focus on RNA and developmental timing, we have developed hiMAPS (highly parallel Mapping of Protease cleavage Sites) https://t.co/JyzLvD1vyv. 1/8
Excited to share our latest preprint. Lead by Mario (@marioiurlaro) and Francesca we deleted the main subcomplexes of the ISWI remodeler family. Key finding is that NURF (via BPTF) is required for creating open chromatin around CTCF sites.
https://t.co/yYejXgJVLh
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/1 Preprint alert! New work from our laboratory, in collaboration with @betowbin, @chromatinlab, @djost_physbiol and @GlauserLab. We discovered new structures at active enhancers in C. elegans!
I am very happy to share the first manuscript from my lab! We found that fasting induces a tissue-specific, reversible, large-scale 3D genome reorganization in #Celegans 👇
https://t.co/nGYFLqax5P
Please RT - Hoping to support a postdoc in an excellent environment @SAiGENCI, still a couple of days left to apply!!! https://t.co/ZNLDqIgiuP If chromatin and transcription factor biology are your passion, please join me in Adelaide Australia. We have cake!!!
In our new paper https://t.co/IMgZOX3WKY we unexpectedly find that dimerization domains of bHLH TFs interface with histones specifying E-box binding. A big shoutout to the collaborators! @partchlab @jsmenet@Beatfierz@johannes_zuber@SchubelerLab@RalphSGrand @PriyaCrosby
IRCM team Uncovers New Important Mechanisms Supporting Immunity
A breakthrough that could pave the way for better therapies for infectious diseases and lymphoma. Congrats! #DrivenByLife
https://t.co/Ot5Jw1q7yE
Happy to report that our work uncovering a role of GW182 proteins as silencing factors for multiple RNA pathways is now published in @MolecularCell. Thanks to everyone involved, esp. @LabGrosshans@FMIscience@NovartisScience.
Please RT: We are 🔥recruiting a post-doc 🔥to work on an exciting proof-of-concept project aiming at manipulating tumor cell trajectory by silencing microRNA modules. @IBDMmarseille https://t.co/scgblF4b1f
Hey Worm Twitter, are you curious about the nuclear envelope? Then check out this amazing #worm23 workshop! Featuring @PAskjaer @daph_cabi @liopintard @DanStarrUCDavis and audience-expert discussion. Thank you #worm23 organizers and @GeneticsGSA for your support!
*Pls Retweet*