Quantitative biology with a particular focus on endocytosis and the actin cytoskeleton @Yale Molecular Biophysics & Biochemistry, and Cell Biology departments
Super @Berrolab postdoc Yuan Ren @yren0_0 is on fire! After publication of his paper on force gradients on endocytic Hip1R homologue End4 last week, his new preprint shows how End4 deals with forces like a mini-talin! https://t.co/PCoDah0DBR https://t.co/cogSEpGYxi
Just a few days left to register to the next FYIM workshop on modeling in cell biology and AI! Experimentalists and modelers at all career stages are welcome!
Wondering how/whether AI can be helpful in your mathematical models in cell biology? Whether you are a biologist, physicist, engineer, mathematician, or computer scientist, join us for the next Finding Your Inner Modeler, August 7-8 at UC Irvine! https://t.co/UFfDocyM46
Wondering how/whether AI can be helpful in your mathematical models in cell biology? Whether you are a biologist, physicist, engineer, mathematician, or computer scientist, join us for the next Finding Your Inner Modeler, August 7-8 at UC Irvine! https://t.co/UFfDocyM46
Wondering how/whether AI can be helpful in your mathematical models in cell biology? Whether you are a biologist, physicist, engineer, mathematician, or computer scientist, join us for the next Finding Your Inner Modeler, August 7-8 at UC Irvine! https://t.co/UFfDocyM46
Julien Berro thinks about the force – particularly around the 'cytoskeleton' scaffold inside our cells. The member of the Yale Nanobiology Institute spoke w/ @CytoskelJournal about the exciting projects that could pave the way to new medical therapeutics: https://t.co/Lww64BCZl9
Are you a senior PhD student or recent grad seeking a postdoc opportunity? Apply to SUPR, Yale Cell Biology’s new initiative! Selected applicants will visit Yale to connect with potential mentors! Deadline: 1/10/2025. Apply: https://t.co/1jaACY3YK1
Learn how #NIHHighRisk Transformative Research Awardee Dr. Julien Berro of @YaleWestCampus will lead a team of scientists to build a sensor that can detect mechanical forces between proteins to target diseased cells https://t.co/W0jN59QOvc
With their @NIHDirector’s Transformative Research Award, awardees will pursue groundbreaking science that has the potential to shift traditional scientific paradigms: https://t.co/pccLgw0dlh #NIHHighRisk
Led by the Yale Nanobiology Institute's Julien Berro, a team of scientists have received an #NIHHighRisk award to build a new sensor to target the mechanical properties of diseased cells https://t.co/VdnCDZqcfj @NIH_CommonFund
@joachimgoedhart@DasLab_Pombe @microscopyEd @MLacyPhD Found it: "Incubation with 2.5 µM SiR647 for 15 h achieved a density of labeled Pil1p-SiR ≥15–20%"
@joachimgoedhart@DasLab_Pombe @microscopyEd We (i.e. @MLacyPhD) tried to push labeling efficiencies in a previous paper. I forgot the exact number (definitely not close to 100%, more like ~10%). See Supp figure 1
https://t.co/uD6nNDJfDk
REU student Andras gave an awesome talk this morning on his summer research in the @BerroLab - such a great way to start off the last day of #ABRCMS2023
Super @Berrolab postdoc Yuan Ren @yren0_0 is on fire! After publication of his paper on force gradients on endocytic Hip1R homologue End4 last week, his new preprint shows how End4 deals with forces like a mini-talin! https://t.co/PCoDah0DBR https://t.co/cogSEpGYxi
Super @Berrolab postdoc Yuan Ren @yren0_0 is on fire! After publication of his paper on force gradients on endocytic Hip1R homologue End4 last week, his new preprint shows how End4 deals with forces like a mini-talin! https://t.co/PCoDah0DBR https://t.co/cogSEpGYxi
Another great collaboration between @BerroLab and @ZhanglabY , where we show an evolutionarily conserved force transmission mechanism during clathrin-mediated endocytosis that makes us think End4 is a mini- and/or ancient- talin.
https://t.co/MOaJbRNDiS