Greg Merz (@gregemerz) 's Twitter Profile
Greg Merz

@gregemerz

ID: 460437592

calendar_today10-01-2012 19:18:51

748 Tweet

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San Francisco Chronicle (@sfchronicle) 's Twitter Profile Photo

UCSF opens groundbreaking facility that will bring patients, physicians, medical scientists and researchers together under one roof in the hopes of treating brain diseases that have until now proved largely intractable. trib.al/WDiAvXl

UC San Francisco (@ucsf) 's Twitter Profile Photo

Congrats to QBI and the QBI Coronavirus Research Group (QCRG), awarded an initial $67.5M from the NIAID News to support pandemic preparedness! Proud to join the NIH AViDD Centers for Pathogens of Pandemic Concern. ucsf.edu/news/2022/05/4…

Matthew Chalkley (@chalkley_talk) 's Twitter Profile Photo

Sometimes collaborations take you to unexpected, exciting places. Greg Merz got me involved with this project with Institute for Neurodegenerative Diseases on the first high resolution structure of a small molecule bound to an amyloid (Alzheimer's patient brain derived tau filament). (biorxiv.org/content/10.110…)

Greg Merz (@gregemerz) 's Twitter Profile Photo

Thrilled that manuscript is finally out in Nature Communications! Thanks so much to everyone who worked so hard to push this over the finish line! nature.com/articles/s4146…

Greg Merz (@gregemerz) 's Twitter Profile Photo

So proud to share this. Nick and the team did fantastic work characterizing of new filament fold of MSA! Along with being our first novel filament structure from the IND, it’s also my first corresponding author paper! biorxiv.org/content/10.110…

FEBS Letters (@febs_letters) 's Twitter Profile Photo

🧠 Multiple system atrophy (MSA) is a #neurodegenerative disease with α-#synuclein #amyloid filament accumulation in the brain. This #cryoEM study reveals the structure of a new α-synuclein filament subtype in MSA 🖊 Gergory Merz UC San Francisco & team ➡ bit.ly/40k3q6j

🧠 Multiple system atrophy (MSA) is a #neurodegenerative disease with α-#synuclein #amyloid filament accumulation in the brain.

This #cryoEM study reveals the structure of a new α-synuclein filament subtype in MSA

🖊 Gergory Merz <a href="/UCSF/">UC San Francisco</a> &amp; team

➡ bit.ly/40k3q6j
CornellArts&Sciences (@cornellcas) 's Twitter Profile Photo

Researchers from CornellChemistry have discovered a way for ammonia oxidizing archaea, one of the most abundant types of microorganisms on Earth (they're in soil, in water, on human skin...) to produce nitrous oxide, greenhouse gas. @LancasterLabCU as.cornell.edu/news/how-perva…

Researchers from <a href="/CornellChem/">CornellChemistry</a> have discovered a way for ammonia oxidizing archaea, one of the most abundant types of microorganisms on Earth (they're in soil, in water, on human skin...) to produce nitrous oxide, greenhouse  gas. @LancasterLabCU 
as.cornell.edu/news/how-perva…
CornellArts&Sciences (@cornellcas) 's Twitter Profile Photo

"We firmly believe that chemistry has the potential to help solve many of the world's problems." As the need to find climate change solutions becomes more urgent, CornellChemistry researchers are leading the way with innovative and far-reaching discoveries… as.cornell.edu/news/cornell-c…

"We firmly believe that chemistry has the potential to help solve many of the world's problems."

As the need to find climate change solutions becomes more urgent, <a href="/CornellChem/">CornellChemistry</a> researchers are leading the way with innovative and far-reaching discoveries…
as.cornell.edu/news/cornell-c…