Isaac Fianu (@isaac_fianu) 's Twitter Profile
Isaac Fianu

@isaac_fianu

Assistant Professor of Biochemistry @Caltech, #gene regulation #StructuralBiology #Integrator complex

ID: 397262641

linkhttps://cce.caltech.edu/people/isaac-fianu calendar_today24-10-2011 13:13:41

88 Tweet

1,1K Followers

366 Following

Xin Gu (@xingu0317) 's Twitter Profile Photo

Over the moon about my postdoc work ⁦Science Magazine⁩ ! Ever wonder about how mammalian cells selectively degrade unwanted nuclear proteins without involving ubiquitination? Check out our paper on a non-canonical protein degradation mechanism! science.org/doi/10.1126/sc…

Marieke Oudelaar (@mariekeoudelaar) 's Twitter Profile Photo

We have open European Research Council (ERC)-funded post-doc positions to study #3Dgenome organization and #generegulation. We are looking for talented and motivated candidates, but prior experience in the field is not required. Please RT! mpinat.mpg.de/4627722/Aussch…

Patrick Cramer (@mpgpresident) 's Twitter Profile Photo

CDK7 kinase activity promotes Pol II promoter escape by facilitating initiation factor release. Congratulations⁩ ⁦@taras_velychko⁩ et al. ⁦Michael Lidschreiber⁩! cell.com/molecular-cell…

Patrick Cramer (@mpgpresident) 's Twitter Profile Photo

Deadly kiss of polymerases: How Influenza polymerase cleaves capped nascent RNA from host Pol II to start its own transcription. Preprint from Alexander Rotsch et al. with Steven Cusack‘s lab EMBL Grenoble. biorxiv.org/content/10.110…

Deadly kiss of polymerases: How Influenza polymerase cleaves capped nascent RNA from host Pol II to start its own transcription. Preprint from Alexander Rotsch et al. with Steven Cusack‘s lab <a href="/EMBLGrenoble/">EMBL Grenoble</a>.
biorxiv.org/content/10.110…
Marieke Oudelaar (@mariekeoudelaar) 's Twitter Profile Photo

📣Preprint alert! We have studied the formation of pair-wise and multi-way enhancer-promoter interactions in the #3Dgenome in a lymphoid-to-myeloid transdifferentiation system and learned interesting new things about their function in #GeneRegulation. 1/10 biorxiv.org/content/10.110…

James Walshe (@scijameswalshe) 's Twitter Profile Photo

Preprint Alert! Check out our take on the molecular basis for co-transcriptional H3K36me3 deposition by SETD2. biorxiv.org/content/10.110…

Tino Pleiner (@pleinerlab) 's Twitter Profile Photo

Happy holidays from the Tino Pleiner. Feeling so lucky to get work with this incredible team StanfordMCP Come join us as a postdoc to work with #membrane proteins and rewire cellular processes with #nanobodies. Apply here: bit.ly/_Postdocs ... please share 🔃

Happy holidays from the <a href="/pleinerlab/">Tino Pleiner</a>. Feeling so lucky to get work with this incredible team <a href="/Stanford_MCP/">StanfordMCP</a> Come join us as a postdoc to work with #membrane proteins and rewire cellular processes with #nanobodies. Apply here: bit.ly/_Postdocs ... please share 🔃
Hanjin Liu (@liu_hanjin) 's Twitter Profile Photo

Hey ChimeraX users! ChimeraX-CliX now supports color preview, quick menubar/toolbar search, and many other powerful features to support you. If you are interested in, please download the latest version -> cxtoolshed.rbvi.ucsf.edu/apps/chimeraxc…

Mitch Guttman (@mitchguttman) 's Twitter Profile Photo

Many proteins bind RNA, yet we still don’t know what RNAs most bind because methods map one RBP at a time. In Cell, with the Jovanovic lab, we describe SPIDR – a method for mapping the RNA binding sites of dozens of RBPs in a single experiment. sciencedirect.com/science/articl…

Many proteins bind RNA, yet we still don’t know what RNAs most bind because methods map one RBP at a time. In <a href="/CellCellPress/">Cell</a>, with the Jovanovic lab, we describe SPIDR – a method for mapping the RNA binding sites of dozens of RBPs in a single experiment. sciencedirect.com/science/articl…
Isaac Fianu (@isaac_fianu) 's Twitter Profile Photo

It was a pleasure to present CSHL Meetings Mechanisms of Eukaryotic Transcription conference. Watch my summary of how gene expression can be stopped using the link below. Thanks to the audiovisual team at Cold Spring Harbor Laboratory for recording. lnkd.in/e5zxs24M

It was a pleasure to present <a href="/cshlmeetings/">CSHL Meetings</a>  Mechanisms of Eukaryotic Transcription conference. 
Watch my summary of how gene expression can be stopped using the link below. Thanks to the audiovisual team at <a href="/CSHL/">Cold Spring Harbor Laboratory</a> for recording.
lnkd.in/e5zxs24M