International Society for Protein Termini (ISPT)
@ispt-proteinterm.bsky.social
150 followers
210 following
14 posts
Non-profit society of scientists devoted to understanding the molecular mechanisms and biological role of protein termini in plants, animals, fungi and bacteria. Conference every second year. #acetylation #arginylation #oxidation #N-degron #C-degron
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Reposted by International Society for Protein Termini (ISPT)
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Reposted by International Society for Protein Termini (ISPT)
Reposted by International Society for Protein Termini (ISPT)
Thomas Arnesen
@natmachinery.bsky.social
· Aug 20
Nitric oxide promotes cysteine N-degron proteolysis through control of oxygen availability | PNAS
Selected proteins containing an N-terminal cysteine (Nt-Cys) are subjected to rapid,
O2-dependent proteolysis via the Cys/Arg-branch of the N-degro...
www.pnas.org
Reposted by International Society for Protein Termini (ISPT)
Thomas Arnesen
@natmachinery.bsky.social
· Aug 19
Gene Editing of a Susceptibility LncRNA Enhances Broad‐Spectrum Disease Resistance in Rice without Developmental Trade‐Offs
Editing susceptibility lncRNAs offers a strategy to enhance disease resistance without yield loss. RESIS, a domestication-acquired, pathogen-induced lncRNA, promotes protein N-terminal acetylation th...
advanced.onlinelibrary.wiley.com
Reposted by International Society for Protein Termini (ISPT)
Reposted by International Society for Protein Termini (ISPT)
Dan Gibbs 🌱🧬
@djgibbs.bsky.social
· Aug 7
The evolutionary rise of oxygen sensing in land plants
Land plants evolved from aquatic green algal ancestors to dominate terrestrial ecosystems
approximately 480 million years ago during the Ordovician period (Hammarlund et al.,
2020). This major event i...
www.cell.com
Reposted by International Society for Protein Termini (ISPT)
Reposted by International Society for Protein Termini (ISPT)
Reposted by International Society for Protein Termini (ISPT)
Reposted by International Society for Protein Termini (ISPT)
Reposted by International Society for Protein Termini (ISPT)
Reposted by International Society for Protein Termini (ISPT)
Monica Perri
@monicaperri1.bsky.social
· Jul 28
Manipulating plant oxygen sensing through NCO substitution reveals trade-offs between growth and flooding tolerance
The oxygen-dependent degradation of Ethylene Response Factors VII (ERFVIIs) through the N-degron pathway is central to regulating the transcriptional responses to hypoxia in vascular plants. Plant Cys...
www.biorxiv.org
Reposted by International Society for Protein Termini (ISPT)
Reposted by International Society for Protein Termini (ISPT)
Reposted by International Society for Protein Termini (ISPT)