A biochemist with an interest in the interception where chemical entities organize and become biology. Postdoc researcher specialized in organelle biogenesis.
Silencing mitochondrial gene expression in living cells | Science https://t.co/wRDoCKbFzT - Now available in new Science issue. Thanks again to all colleagues for a wonderful collaboration. Awesome work of LD Cruz-Zaragoza!
Proud to share our work by a fantastic team, spear-headed by PhD student @Kainerox with major contributions by #xenopus expert @RosiFeistel.
We developed an improved iAPEX-based #ProximityLabeling method for #massspec based subcellular #proteomics.
https://t.co/0jDlrlkK7M
Thrilled to see our publication online! Big thanks to all authors, collaborators, and all who contributed to this work. @RehlingLab, Henning Urlaub, @RizzoliSilvio, @RDennerlein_Lab, @DavidPacheu
🎉https://t.co/oNnX08ffZW
Could one envision a synthetic receptor technology that is fully programmable, able to detect diverse extracellular antigens – both soluble and cell-attached – and convert that recognition into a wide range of intracellular responses, from transgene expression and real-time fluorescence to modulation of innate cell behavior (excitation or inhibition of neurons, induction of cell migration, etc.)?
Today we report in Nature a new technology platform that provides a step in that direction: PAGERs, for Programmable Antigen-gated G protein-coupled Engineered Receptors, convert recognition of extracellular soluble or cell-attached antigens into diverse user-selected responses. PAGERs are based on G-protein coupled receptors (GPCRs), which themselves are not structurally modular, but we were able to build in modular antigen gating by fusing an antagonist peptide to the extracellular N-terminal end, and then gating the antagonist with a fused antigen-binding nanobody. When antigen binds, it sterically interferes with the antagonist, leading to relief of receptor inhibition. Drug or agonist can then turn on PAGER.
https://t.co/Clt8yjyk2y
We have 1-2 PostDoc positions for enthusiastic researchers interested in mitochondrial biology. Apply here. #mitochondria#mitojobs
https://t.co/tOv2e05PHF
Perfect timing! our latest paper on #tRNA engineering is now published, coinciding with the ongoing #tRNA2024 conference. This publication is the result of a phenomenal team effort with @jeffery_tharp
https://t.co/2vMYCPvFrZ
Honoré de rejoindre le comité scientifique consultatif du @FRQ_NT ! Hâte de contribuer à l’excellence en recherche, à l’interdisciplinarité et à l’innovation durable au Québec 👏 - @universitelaval
https://t.co/OIIpCIuuAy
Honoré de rejoindre le comité scientifique consultatif du @FRQ_NT ! Hâte de contribuer à l’excellence en recherche, à l’interdisciplinarité et à l’innovation durable au Québec 👏 - @universitelaval
https://t.co/OIIpCIuuAy
There is still the chance to register for the webinar with Nils Wiedemann, Agnieszka Chacinska, Toni Barrientos, Jan Riemer and myself next Tuesday! 250 mitochondria lovers already signed up! @Riemerlab@A_Chacinska@Antonio41949078@Mito_News