Fantastic work by my grad student Roisin O’Brien and others in the lab. First collaboration with the Brodbelt lab @UTChemistry@TexasScience. High-res structure of a Type I-C Cascade with non-canonical SSUs. Stay tuned for more on these later this week... https://t.co/vwgehHPWVY
#ColumbiaPDSC Update - Senate Street murder case. Investigators have arrested one suspect & are searching for another in the fatal shooting of a 26-year-old man from Greenville. Help us find suspect Zachery Williams. Call @MidlandsCrime 1-888-CRIME-SC.
https://t.co/cTVUqNpisl
Very excited to see @bfloyd110's hunt for phosphorylation-dependent protein interactions in @biorxivpreprint just in time for his #VKSProteomics21 Keystone Proteomics talk
Systematic Identification of Protein Phosphorylation-Mediated Interactions https://t.co/ZzandD049f
Kudos to my colleague @LACambronne & collaborators (@CambronneLab, @BaurLab, & more) for a beautiful paper nailing down the long-missing human mitochondrial NAD+ transporter. A tour de force, using humanized yeast to boot! https://t.co/lYRSg6i50O
Thread (1/3): Best Science = Collaborative Science.
We are pleased to share our latest work demonstrating NAD+ uptake in mammalian mitochondria by SLC25A51 transport. @nature@CambronneLab@BaurLab https://t.co/B1DtDp91Zi
I am excited to share our most recent work from the
@baurlab published @nature revealing SLC25A51 expression regulates mitochondrial NAD+ levels and encodes the mammalian mitochondrial NAD+ transporter. #NAD#mitochondria#metabolism
https://t.co/WIoh4ClSmF
We are pleased to share our most recent work led by @timluongo and in collaboration with @LAcambronne published @nature. Thank you to all those who contributed to this exciting work.
(3/3) Measurements of free mitochondrial NAD+ in live cells; demonstration with recombinant system of direct transport activity in vitro; kinetic rate calculations; beautiful 3D reconstructions @EllerJared@MuJie_Lu@PaulOliphint
Thread (1/3): Best Science = Collaborative Science.
We are pleased to share our latest work demonstrating NAD+ uptake in mammalian mitochondria by SLC25A51 transport. @nature@CambronneLab@BaurLab https://t.co/eikX1MJLm1
Really exciting day! My first major publication came out in Nature! Be sure to read about our identification of SLC25A51 as a human mitochondrial NAD+ transporter with collaborators @timluongo@BaurLab
Thread (1/3): Best Science = Collaborative Science.
We are pleased to share our latest work demonstrating NAD+ uptake in mammalian mitochondria by SLC25A51 transport. @nature@CambronneLab@BaurLab https://t.co/eikX1MJLm1
The really nice aspect of seeing these papers independently tackle the problem from such different directions means that the supporting evidence for the central discovery is now very, very strong. A big advance for our basic understanding of mitochondrial NAD+ metabolism!
It's been unknown how NAD+ gets into human mitochondria. @timluongo, @EllerJared, et al discovered that "Solute carrier family 25 member 51", an uncharacterized member of a large transporter family, has this key activity. Its name reveals just how little we knew about it before..
In a new Science study, engineered gut #bacteria induce immune responses to control honey bee gene expression and protect bees against pathogens and parasites. Learn more: ($) https://t.co/Heh5IxUNFJ
Congratulations to @Coach_TElliott on winning the @BroylesAward! Thank you for having such a positive impact on our student-athletes! https://t.co/j6kAXL6wM8