Laura Gunn
@laura-gunn.bsky.social
90 followers
50 following
11 posts
Re-imagining photosynthetic carbon fixation | Asst Prof in synthetic plant biology @Cornell | She/her | 🇳🇿 in 🇺🇸
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Laura Gunn
@laura-gunn.bsky.social
· Aug 19
Reposted by Laura Gunn
Reposted by Laura Gunn
Steven Burgess
@sjb287.bsky.social
· Jul 5
Effects of chaperone selectivity on the assembly of plant Rubisco orthologs in E. coli
We used an E. coli system to examine recognition of plant Rubisco chaperones for different Rubiscos. Identified factors influencing chaperone selectivity e
academic.oup.com
Laura Gunn
@laura-gunn.bsky.social
· Jul 6
Reposted by Laura Gunn
Reposted by Laura Gunn
Laura Gunn
@laura-gunn.bsky.social
· Apr 30
Reposted by Laura Gunn
Laura Gunn
@laura-gunn.bsky.social
· Apr 29
Laura Gunn
@laura-gunn.bsky.social
· Apr 2
Reposted by Laura Gunn
Laura Gunn
@laura-gunn.bsky.social
· Dec 13
Laura Gunn
@laura-gunn.bsky.social
· Dec 9
Unique biogenesis and kinetics of hornwort Rubiscos revealed by synthetic biology systems
Hornworts are non-vascular land plants, which diverged from vascular plants approximately 500 million years ago, yet the CO2 fixing enzyme (Rubisco) in hornworts has received little prior attention. This study develops the synthetic biology system to heterologously express hornwort Rubiscos and demonstrates that hornwort Rubiscos have different biogenesis dependencies. Further analyses of the kinetics of hornwort Rubiscos show that Rubiscos are indeed phylogenetically constrained.
www.cell.com