Have a look in how PTMs can regulate glycolysis and TCA cycle in Plants 🌱🌱 together with @schwarzland_lab we wrote this review 🥳
https://t.co/dyPpn4O7Mi
How do enzymes evolve to fulfill specialized roles in plants? 🌱🔬
A new study of the @MaurinoLab uncovers the structural and functional evolution of NADP-malic enzyme isoforms, revealing how subtle sequence changes drive distinct forms and functions.
👉https://t.co/nekB7cORqd
🌱🌱Exciting discoveries in C4 photosynthesis evolution! Our research uncovers how the tetrameric state of C4-NADP-Malic Enzyme evolved to optimize C4 carbon fixation in grasses. Dive into the structural basis of this pivotal evolutionary adaptation! 👩🔬🧑🔬
https://t.co/V14rS4RrC5
Two plant glyoxalase systems with different evolutionary origins detoxify diverse reactive carbonyl species @BalpardaManuel@MaurinoLab@ASPB#PlantSci https://t.co/LNHBr9gix3
Happy to share our work on the molecular evolution of C4-NAD-Malic enzyme. It took many years of hard work and interpretation of results. An extraordinary biochemical work that strengthens my love to both, day and night science. https://t.co/MgcxFgvaz5
Dienstag Abend wird's spannend: da werde ich gemeinsam mit dem Rechtswissenschaftler @ruppe_p auf die Bühne im Haus der Universität geworfen - und dann schauen wir, was passiert. Ein toller Rahmen für kreative Entwicklungen - vielleicht auch in unserer Forschung?
It's FINALLY official: a surprisingly simple relationship between the concentrations of enzymes and their substrates. Fantastic work by Hugo Dourado, with great contributions by @matteomori87 and Terry Hwa.
#PLOSBiology https://t.co/4cHaplgfFs @HHU_de@UCSDPhysics
Combined Abiotic Stresses Repress Defense and Cell Wall Metabolic Genes and Render Plants More Susceptible to Pathogen Infection https://t.co/wMaP2IHm5H #mdpiplants via @Plants_MDPI
I just supported @RAFV2021 on @buymeacoffee! 🎉
RAFV2021 is a meeting organized by the Argentinean Society of Plant Physiology. You can support by buying a seedling 🌱 here — https://t.co/uxZ37wMqTp
Finally, some light shed on the biochemistry of NAD-ME C4 #photosynthesis. The notorious heteromer NAD-ME selectively forms the C4 decarboxylase by association with regulatory subunit while housekeeping function is performed with a C3-like subunit.
https://t.co/95cOxIDTRa
Ever been at a mental roadblock where you wished you could talk to an expert? How about having an imaginary conversation in your head instead? @TPilpel does that, e.g., when working on Pavlovian conditioning of bacteria, as he told @ItaiYanai and me in our Podcast.
@HHU_de
S1 E1: Ellen Rothenberg: Inhabiting the data.
In this 1st episode of the Night Science Podcast, Caltech Professor Ellen Rothenberg discusses how "the kind of science that I want to do is exploratory."
https://t.co/rvonTomQja
@ItaiYanai@MartinJLercher@evrlab