MichaelMcMurray lab

@mcmurraylab.bsky.social

Official account of Michael McMurray’s lab in the Dept. Cell and Developmental Biology at the University of Colorado Anschutz Medical Campus. We study septin proteins, folding/assembly of multi subunit protein complexes, & various aspects of yeast biology

Officially recruiting postdocs at GW. If you are interested in genetic novelty, structural variation, or evo genetics please get in touch! We have data sets on mulitple organisms with large population sizes (Drosophila, Megalonaias nervosa) and species in decline (fireflies, mussels, elephants).

Join us in a fun, crazy and interesting interdisciplinary research project that combines protein biophysics, evolutionary genomics, biomolecular archaeology, and textile research to resolve species identity and post-translational modifications in the structural proteins collagen and keratin

Matthew Collins@matthewcollins.bsky.social · 3w ago

Copenhagen job alert 🚨 GLOBE (@ucph.bsky.social) is hiring a 21-mo Postdoc in #Bioinformatics & #ComputationalProteomics Work with @lindorfflarsen.bsky.social, @fridowelker.bsky.social, @brandtgroup.bsky.social & more mapping collagen/keratin diversity across 1000s of genomes. 📅 Deadline Aug 31

1/ Mitochondrial Na⁺ links metabolism, Ca2+ signaling and disease. We know how it gets in, how it gets out, and proteins that use it. But: we've never actually seen Na⁺ in single mitochondria in live cells. We started with an unusual observation, went down a rabbit hole & found some cool biology .

A mitochondrion showing Ca2+ entering through the MCU, exchanged for Na+ by NCLX, Complex I acting as a Na+/H+ exchanger, and various transporters that use Na+ to move their substrates in and out of the mitochondria

Our new paper was, by definition, an adventure: stepping outside of our comfort zone, embracing the unknown, and engaging in activities where the outcome is uncertain. Includes discovery of a new species and working with a Native American tribe to name it… 🧵👇 onlinelibrary.wiley.com/doi/10.1002/...

Comparative Analysis of Stress Adaptation in the Yeast Microbiome of Cactus

Yeasts and related fungi isolated from cacti or nearby non-cactus plants were characterized phenotypically and genomically, revealing differences that hint at modes of adaptation to the cactus host.

onlinelibrary.wiley.com

It's great that buffering by chaperones like Hsp90s continues to be studied as "capacitors of evolution". I hope at some point the concept catches on that chaperones can also protect against harmful mutant proteins by kinetically trapping them so they can't poison protein complexes (PMID 25673805)

Nature@nature.com · 2mo ago

Our genomes are full of mutations that have the potential to damage our health or even kill us. Yet most of them rarely cause problems. Why? go.nature.com/4w0pUGl