#JustIn: Collen Kebinatshipi stormed to victory in the Men's 400m at the Eugene Diamond League, clocking 44.00s. while Rai Benjamin took second in 44.11s. Christopher Bailey finished third in 44.58s
Our lab is recruiting both a postdoc and research technician to start in May/June! If you know anyone interested in investigating mechanisms of metastasis and immune suppression in cancer through developing innovative mouse models and studying senescence, please spread the word!
Post-doc and Clinical Fellowship Opportunities.
If you have a PhD and want to pursue a post-doc with us @OncologyBGLab , we have an opportunity to apply for this fully funded fellowship through Queen's - https://t.co/pTerDTStw3
If you are an oncologist and want to do a clinical fellowship with us, we can apply through the ESMO Award- https://t.co/jbcSs9Rtxv
For what we are looking for in our fellows @OncologyBGLab , read here and send me an email- https://t.co/hxf72Uzj0c
Congratulations to Botswana on winning Destination of the Year @ITB_Berlin Travel Awards 🏆
The EU is proud to partner with an international leader in conservation, supporting tourism that creates jobs, strengthens communities and drives inclusive economic growth.
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The cycle of life, every instant, in your mitochondria.
The major electron carrier in mitochondria is NAD+. When it collects an electron from the food you eat, NAD+ is converted into NADH. NADH then feeds the electron to the electron transport chain so the electron can flow to oxygen - the ultimate electron acceptor.
How easily electrons make their way to oxygen determines energy resistance (éR) following the energy resistance principle (ERP) https://t.co/eAL6i73l09
Mitochondrial matrix and cell cytoplasm are two different "sealed" compartments, but there is a special system that connects the NAD+/NADH pools between mito and cytoplasm: the Malate-Aspartate shuttle
The Malate-Aspartate shuttle shown below is how NADH from the cytoplasm (made by glycolysis) is carried into mitochondria. The electron transport chain can then regenerate NAD+ by respiring the flowing electron.
Everywhere in biology: energy transfer. Sometimes without molecular carriers. Here with a number of enzymatic intermediates, creating an integrated electrical circuit.
The circuit is in service of the flowing electron looking for a place to rest. Getting back onto oxygen to become H2O (water) again, as it was initially before getting ripped off by light energy and stuck onto a carbon backbone in a green leaf.
Animation by @janetiwasa lab
https://t.co/V7R07dVJbi
🧵5 Top Free Alternatives to BioRender for Scientific Illustrations!
These five websites offer free scientific illustrations for biologists. Great for presentations, research papers and other research communication needs.
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Interested in single cell genomics but need help getting started? Check out my lab's Single Cell Genomics Day on April 25. Talks will feature recent exciting computational and experimental advances and will be live-streamed at https://t.co/zG98gkckMU. Please RT/spread the word!
Online Now: Distinct cellular mechanisms underlie chemotherapies and PD-L1 blockade combinations in triple-negative breast cancer https://t.co/gfAqAg0E3c