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International Society for Protein Termini (ISPT)

@ispt-proteinterm.bsky.social
192 followers 228 following 25 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. Website: proteintermini.org

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International Society for Protein Termini (ISPT) @ispt-proteinterm.bsky.social · 12h
Before import: N-terminal acetylation at the interface of plastid protein targeting and proteostasis academic.oup.com/jxb/article-...
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Thomas Arnesen @natmachinery.bsky.social · 22/09/2026
The Uracil-DNA Glycosylase2 UNG2 is degraded via a novel N-degron | CTLH-MKLN1-FAM72A E3 ligase recognizes the N-terminally acetylated UNG2 | @ispt-proteinterm.bsky.social www.biorxiv.org/content/10.6...
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Thomas Arnesen @natmachinery.bsky.social · 21/09/2026
Coenzyme A biosynthesis is regulated by two distinct Ubiquitin E3 ligase complexes | UBR4-KCMF1 and MKLN1-CTLH independently converge on a common N-terminal MK Arg/N-degron to promote PANK degradation and restrict CoA biosynthesis | @ispt-proteinterm.bsky.social www.biorxiv.org/content/10.6...
biorxiv.org
Parallel Arg/N-degron recognition systems regulate coenzyme A biosynthesis
Coenzyme A (CoA) is an essential metabolic cofactor whose biosynthesis is controlled by pantothenate kinases (PANKs), the rate-limiting enzymes in CoA synthesis. Although CoA production is extensively...
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N End Rules @n-end-rules.bsky.social · 16/09/2026
We introduce a new transducer of oxygen sensing: Cys2-HYT1 @isamanrique.bsky.social @charlene-kunaka.bsky.social Susanna Ubeda Tomas & @gunjansharma88.bsky.social ma88.bsky.social lead work defining HYT1 contribution to root hypoxia tolerance. @natcomms.nature.com www.nature.com/articles/s41...
nature.com
Hierarchical regulation of oxygen-sensing through coupled transducers in Arabidopsis thaliana - Nature Communications
The PLANT CYSTEINE OXIDASE (PCO) N-degron pathway contributes to oxygen sensing in plants. Here the authors identify HYPOXIA TRANSDUCER1 (HYT1) as a substrate of PCO and show it forms a coherent feed-...
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International Society for Protein Termini (ISPT) @ispt-proteinterm.bsky.social · 13/09/2026
Rubisco, a CO2-fixing enzyme and a major reservoir of nitrogen and carbon in plant leaves, requires a unique N-terminal maturation pathway | Dong Xie et al. @giglionelab.bsky.social @ifink-lab.bsky.social www.science.org/doi/10.1126/...
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Thomas Arnesen @natmachinery.bsky.social · 13/09/2026
Tideglusib as a First-in-Class Chemical Probe for the major N-terminal acetyltransferase NatA | By Rong Huang's lab and collaborators @ispt-proteinterm.bsky.social pubs.acs.org/acbcct/artic...
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Frederica Theodoulou @freddietheodoulou.bsky.social · 01/09/2026
Ever wondered why mutating BIG/AtUBR4 causes pleiotropic 🌿 phenotypes? Find a whistle stop tour of the literature in our latest review, with expert structural insight from @dangrabarczyk.bsky.social and @clausenlab.bsky.social academic.oup.com/jxb/advance-...
academic.oup.com
Decoding BIG: how one protein influences multiple pathways
Abstract. A major strength of forward genetic screens is their unbiased nature: the plant reveals which genes underlie a physiological process. Yet this st
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Thomas Arnesen @natmachinery.bsky.social · 12/08/2026
Symbiosis: An N-terminally acetylated peptide from the bacterium Photorhabdus modulates nematode development | Novel prokaryotic NAT enzyme PasC | @ispt-proteinterm.bsky.social www.pnas.org/doi/10.1073/...
pnas.org
An N-acetylated daropeptide modulates nematode development | PNAS
The symbiotic bacterium Photorhabdus is a rich source of bioactive secondary metabolites that mediate tripartite interactions with nematodes and in...
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Laurenz Rabl @laurenzrabl.bsky.social · 15/07/2026
More on NAC and cotranslational Nt-acetylation by NatB. Congratulations to the first authors Natalia and Pawel! rdcu.be/ftSay
rdcu.be
Structural basis of cotranslational protein N-terminal acetylation by NatB in human cells
Nature Communications - N-terminal acetylation is one of the most common protein modifications. Here, the authors show how NAC recruits the essential enzyme NatB to translating ribosomes, revealing...
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Thomas Arnesen @natmachinery.bsky.social · 28/07/2026
α-Synuclein N-terminal acetylation tunes both its structural and physicochemical properties to enhance binding to lipid bilayers @ispt-proteinterm.bsky.social pubs.acs.org/bichaw/artic...
pubs.acs.org
N-Terminal Amine Chemistry Influences α-Synuclein Interactions with Lipid Bilayers
Abstract. α-Synuclein (αSyn) is an intrinsically disordered protein whose reversible membrane binding via amphipathic α-helix formation is central to its f
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Jorge Vicente @yorgsvicen.bsky.social · 27/07/2026
Our new preprint shows that metacaspase-mediated proteoform generation and N-degron pathway-dependent proteoform stability act together to diversify UBP6 function during Arabidopsis immunity www.biorxiv.org/content/10.6...
biorxiv.org
Functional diversification of UBP6 in plant immunity through N‑degron pathway regulation
Deubiquitylases are key proteolytic regulators of ubiquitin-dependent cellular processes, catalyzing the removal or remodelling of ubiquitin modifications on substrate proteins, including those target...
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Thomas Arnesen @natmachinery.bsky.social · 23/06/2026
Structural and mechanistic insights into the UBR4-KCMF1-Calmodulin complex @ispt-proteinterm.bsky.social academic.oup.com/proteincell/...
academic.oup.com
Structural and mechanistic insights into the UBR4-KCMF1-Calmodulin complex
Dear Editor,
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Frederica Theodoulou @freddietheodoulou.bsky.social · 06/06/2026
After a wonderful four day, @giglionelab.bsky.social wraps up #proteintermini2026 Grazie, Carmela for a fantastic meeting and we look forward to Heidelberg in 2028!
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Frederica Theodoulou @freddietheodoulou.bsky.social · 06/06/2026
Well, the conference dinner is absolutely hellish #proteintermini2026
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Frederica Theodoulou @freddietheodoulou.bsky.social · 03/06/2026
As predicted, the food at #Proteintermini2026 is delicioso! Trying hard to resist these ricotta-filled pastries with candied orange
A cheerful Italian gentleman with a tray of ricotta-filled profiteroles
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Frederica Theodoulou @freddietheodoulou.bsky.social · 03/06/2026
Look out for @jxbotany.bsky.social and @febsletters.bsky.social special issues on all things related to #Proteintermini2026
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Frederica Theodoulou @freddietheodoulou.bsky.social · 03/06/2026
Have you ever seen a poster session like this? Simply beautiful. #Proteintermini2026
A beautiful rococo chapel with poster boards and scientists milling around
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Frederica Theodoulou @freddietheodoulou.bsky.social · 03/06/2026
And we’re off! @giglionelab.bsky.social introduces FEBS Workshop #Proteintermini2026 Looking forward to four days of great science
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Frederica Theodoulou @freddietheodoulou.bsky.social · 03/06/2026
#Proteintermini2026 is about to begin! This beautiful room in the heart of Palermo will be our home for the next four days 🤩
A beautiful room with ceiling fresco and a large chandelier Reverse view of the same room
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Frederica Theodoulou @freddietheodoulou.bsky.social · 26/10/2025
A conference about #proteostasis in a palazzo in Palermo; inclusive, affordable, and organised by the marvellous @giglionelab.bsky.social - what’s not to like? Oh, and there is a fantastic lineup of talks plus slots to spare #ProteinTermini2026
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giglionelab.bsky.social @giglionelab.bsky.social · 18/05/2026
Excited to co-organize the upcoming FASEB Science Research Conference (SRC) on Protein Lipidation: Enzymology, Signaling, Therapeutics! July 13-15, 2026. Where: Yours Truly DC Hotel | Washington, DC. Register & Submit your abstract here: events.faseb.org/event/protei... Deadline Extended!
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giglionelab.bsky.social @giglionelab.bsky.social · 15/05/2026
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giglionelab.bsky.social @giglionelab.bsky.social · 15/05/2026
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giglionelab.bsky.social @giglionelab.bsky.social · 15/05/2026
The countdown to Palermo is on! 🇮🇹 The FEBS Workshop "Protein Termini 2026" is set. • 151 participants from all over the world. • >50% ECRs! • 30+ travel grants. Thx to sponsors: FEBS, IUBMB, CDBC, ARS, and others.. See you at Palazzo dei Normanni! #ProteinTermini #FEBS #Proteostasis
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New Phytologist @newphyt.bsky.social · 18/05/2026
An N-Acetyltransferase-MAPK fusion protein modulates developmental reprogramming in Physcomitrium patens 📖 nph.onlinelibrary.wiley.com/doi/10.1111/... by de Luxán-Hernández et al. @moodytomato.bsky.social @plantophagy.bsky.social @eleazarrodriguez.bsky.social @WileyPlantSci #PlantScience
Rosetta NATD-MAPK 1 interacts with proteins that are associated with various biological processes.
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Thomas Arnesen @natmachinery.bsky.social · 08/05/2026
New review out on protein N-terminal formylation - a stress-inducible modification of eukaryotic proteins #N-degron @ispt-proteinterm.bsky.social www.nature.com/articles/s12...
nature.com
N-terminal formylmethionine as a degron and a specific signal in proteostasis and stress adaptation - Experimental & Molecular Medicine
N-terminal methionine formylation, a protein modification once thought to be exclusive to bacteria and organelles, also occurs on proteins synthesized in the cytosol of yeast and human cells, challeng...
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Sjon Hartman @hartman-plantlab.com · 05/05/2026
So happy and proud to share our lab’s first #plantscience research article, revealing that angiosperms have the capacity to encode memory of flooding stress. A heroic effort by @aidamaric.bsky.social in collaboration with @djgibbs.bsky.social and others. A brief 🧵 www.biorxiv.org/content/10.6...
biorxiv.org
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Thomas Arnesen @natmachinery.bsky.social · 22/04/2026
N-terminal cysteine dependent proteolysis of RGS4/5 is not sensitive to physiological oxidative stress | Preprint by Ya-Min Tian, Haeun Kim, Peter Ratcliffe & Thomas Keeley @ox.ac.uk @ispt-proteinterm.bsky.social #N-degron #cysteine www.biorxiv.org/content/10.6...
biorxiv.org
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dave dougan @douganlab.bsky.social · 08/04/2026
A C-degron regulates Chk1 kinase by allowing stability of inactive Chk1 and by making it short- lived upon activation www.pnas.org/doi/10.1073/...
pnas.org
A C-degron regulates Chk1 kinase by allowing stability of inactive Chk1 and by making it short- lived upon activation | PNAS
The Arg/N-degron pathway of Saccharomyces cerevisiae is mediated by two interacting E3 ubiquitin ligases, Ubr1 and Ufd4. We show here that the mito...
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International Society for Protein Termini (ISPT) @ispt-proteinterm.bsky.social · 01/04/2026
Resistance to prolonged darkness in plants steered by N-terminal acetylation | New study by Gong et al. Markus Wirtz lab @giglionelab.bsky.social Tanja Bange lab #NatB #autophagy #N-degron #proteostasis www.nature.com/articles/s41...
nature.com
The ribosome-associated N-terminal acetyltransferase B coordinates global proteostasis and autophagy in plants by creating Ac/N-degrons - Nature Communications
Protein N-terminal acetylation profoundly influences protein fate. Here, the authors establish NatB as a central regulator of the interplay between ubiquitin–proteasome system and autophagy, and highl...
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Beckmann Lab @beckmannlab.bsky.social · 16/03/2026
How are histones acetylated as they emerge from the ribosome? We show that NAA40 cooperates with the NAC complex to enable co-translational acetylation of H2A/H4, revealing NAC as a coordinator of nascent protein modification. Read more about our collaboration with @kirmizislab.bsky.social #cryoEM
rdcu.be
NAA40 and NAC cooperate in co-translational histone acetylation in humans
Nature Communications - N-terminal histone acetylation by human NAA40 alters epigenetic signaling and affects gene regulation. Here, the authors combine biochemistry and cryo-EM to unravel the...
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Mikel Lavilla-Puerta @mikellavi.bsky.social · 11/03/2026
Finally officially out!! www.pnas.org/doi/10.1073/... We moved the main oxygen sensing machinery from plants to yeast and we learned a few things!
pnas.org
A synthetic ERFVII-dependent circuit in yeast sheds light on the regulation of early hypoxic responses of plants | PNAS
Plants face hypoxic conditions either chronically, as particular tissues are characterized by fluctuating or stable low oxygen levels, or acutely, ...
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Dan Gibbs 🌱🧬 @djgibbs.bsky.social · 24/02/2026
My review “Co-translational control of protein stability and quality in plants” is now online at @jxbotany.bsky.social, in which I describe how co-translational processing and ribosome-associated quality control together establish protein stability and fate early in synthesis. tinyurl.com/5dhhz9h6
tinyurl.com
Co-translational control of protein stability and quality in plants
Abstract. Proteostasis relies on the coordinated control of protein synthesis, folding, modification and degradation, and an increasingly clear picture is
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Thomas Arnesen @natmachinery.bsky.social · 23/02/2026
Actin N-terminal maturation can be blocked by a butynamide stereoprobe which acts as an ACTMAP inhibitor. Preprint by Xiong et al. Benjamin Cravatt and Bruno Melillo. @ispt-proteinterm.bsky.social www.biorxiv.org/content/10.6...
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giglionelab.bsky.social @giglionelab.bsky.social · 16/02/2026
Join us in Palermo! FEBS Workshop Protein Termini 2026: the power of protein termini across bacteria, plants, and animals—from ribosome biology to proteostasis and applications. Deadline: 3 March 2026 proteintermini.org/meeting #ProteinTermini #Proteostasis #FEBS #EMBO @iubmb.bsky.social
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David Balchin @davidbalchin.bsky.social · 13/02/2026
Join us at the @crick.ac.uk for the 2026 meeting of the UK proteostasis community! We especially encourage students and postdocs to attend and share their work. All talks (except the keynotes) will be selected from abstracts.
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N End Rules @n-end-rules.bsky.social · 12/02/2026
Surprisingly: "Conditional stability of HY5 through the ATE N-degron pathway regulates environmental responses in Arabidopsis thaliana". The shining bounds of N-degron pathway influence expands! @charlene-kunaka.bsky.social www.biorxiv.org/content/10.6...
biorxiv.org
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International Society for Protein Termini (ISPT) @ispt-proteinterm.bsky.social · 09/02/2026
Protein event of the year - sign up today! See you at beautiful Palazzo dei Normanni in Palermo for the FEBS 2026 Protein Termini Workshop. #ProteinTermini #Proteostasis #ProteinModifications #StructuralBiology #PalazzoDeiNormanni #Palermo2026 proteintermini.org/meeting/
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International Society for Protein Termini (ISPT) @ispt-proteinterm.bsky.social · 30/01/2026
Protein degradation in Turnip - an adapted Arg/N-degron pathway. Preprint from Brian Mooney et al. Emmanuelle Graciet lab. www.biorxiv.org/content/10.6...
biorxiv.org
Functional divergence of the Arg/N-degron pathway between the crop Brassica rapa and the model plant Arabidopsis thaliana
The ubiquitin-dependent Arg/N-degron pathway relates the stability of a substrate protein to the nature of its N-terminal amino acid residue or its biochemical modifications, with some N-terminal residues being recognized by specific E3 ubiquitin ligases, resulting in the ubiquitylation and degradation of the substrate protein. Work in the model plant Arabidopsis thaliana has shown that the Arg/N-degron pathway is a key regulator of plant responses to hypoxia, which can be either physiological or a stress in the context of waterlogging or submergence. The role of the Arg/N-degron pathway in hypoxia response is mediated via the oxygen-dependent degradation of group VII ETHYLENE RESPONSE FACTOR (ERFVII) transcription factors, which act as the master regulators of the hypoxia response program in plants. Analysis of Arabidopsis mutants for different enzymatic components of the Arg/N-degron pathway has also revealed its roles in the regulation of responses to other abiotic stresses (e.g. salt stress), as well as to pathogens. Although much has been learned from studies in Arabidopsis about the functions of the Arg/N-degron pathway, very little is known about this pathway in crops, including in Brassica crops such as oilseed rape, cabbage or turnip. To determine functional similarities and divergence of the Arg/N-degron pathway between Arabidopsis and Brassica crops, we isolated and characterized the first Arg/N-degron pathway mutants in Brassica rapa (turnip, pak choi), a diploid Brassica crop closely related to oilseed rape. We focused on two enzymatic components, namely the arginine-transferases ( ATE s) and the E3 ubiquitin ligase PROTEOLYSIS6 ( PRT6 ). Our results show both similarities and divergence of function for these Arg/N-degron pathway components in B. rapa compared to Arabidopsis. Specifically, ATE mutants in B. rapa arrest their development at the seedling stage, which contrasts with the mild phenotypic defects of the equivalent Arabidopsis mutants. Double mutant lines for two of the three PRT6 genes in B. rapa indicated a constitutive activation of hypoxia response genes at the transcriptional level, as shown in the single prt6 mutant in Arabidopsis. However, contrary to Arabidopsis, the B. rapa double mutants were more sensitive to waterlogging and hypoxia, and did not show differential response to salt stress or to biotic stress compared to the wild type. The functional divergence identified likely reflects variability in each species in the substrate repertoire and/or in the regulation of pathways or targets downstream of Arg/N-degron pathway substrates. Such differences could be driven by direct selective pressures at N-termini (e.g. gain or loss of a destabilizing N-terminal residue), or by species-specific proteases that may generate destabilizing neo-N-termini after cleavage. These similarities and differences highlight the difficulties in translating research findings from Arabidopsis to crops, even within the same plant family (Brassicaceae) and highlight the need to study pathways in crops. ### Competing Interest Statement The authors have declared no competing interest. Science Foundation Ireland, https://ror.org/0271asj38, 13/IA/1870, 20/FFP-P/8433 Irish Research Council, https://ror.org/051xex213, GOIPG/2017/2
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International Society for Protein Termini (ISPT) @ispt-proteinterm.bsky.social · 28/01/2026
Ribosome-NAC collaboration: A regulatory platform for cotranslational chaperones, enzymes, and targeting factors. New review out in @cp-molcell.bsky.social from Elke Deuerling's lab. www.sciencedirect.com/science/arti...
sciencedirect.com
Ribosome-NAC collaboration: A regulatory platform for cotranslational chaperones, enzymes, and targeting factors
Protein biogenesis requires the ribosome to collaborate with a diverse set of cotranslational factors that shape the fate of nascent chains. These int…
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Thomas Arnesen @natmachinery.bsky.social · 26/01/2026
Complexity at the ribosomal polypeptide tunnel exit. The major N-terminal acetyltransferase NatA may form different complexes on the ribosome to facilitate protein maturation. By Marius Klein & Klemens Wild in Irmgard Sinning's lab BZH & Nina McTiernan in my lab. www.nature.com/articles/s41...
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International Society for Protein Termini (ISPT) @ispt-proteinterm.bsky.social · 26/01/2026
This is how co-translational N-terminal myristoylation occurs on the ribosome. NMT1 acts together with NAC, but after the release of MetAP. Cryo-EM study by Timo Denk et al. @beckmannlab.bsky.social @giglionelab.bsky.social www.nature.com/articles/s41...
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Thomas Arnesen @natmachinery.bsky.social · 05/01/2026
Intricate regulation of Src kinases via N-terminal modifications and specific degradation pathways. A novel degradation pathway involving the CUL4A-DDB1-DCAF10 E3 ligase found by Kremer et al. Tanja Bange lab @andrea-musacchio.bsky.social @ispt-proteinterm.bsky.social www.nature.com/articles/s41...
nature.com
CUL4A-DDB1-DCAF10 is an N-recognin for N-terminally acetylated Src kinases - Nature Communications
Cells depend on early protein modifications for proper function. Here, the authors show that when Src-family signaling kinases lack their typical myristoylation, an alternative acetylated start is det...
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The BanLab @thebanlab.bsky.social · 20/12/2025
Last X-Mas, the ribosome gave you methionine, but the very next day, MetAP took it away. This year, to save histones from tears, NatD gives you an acetyl group. ⭐️ Explore our latest paper with the Deuerling lab @uni-konstanz.de and Shu-ou Chan lab @caltech.edu! www.science.org/doi/10.1126/...
tinyurl.com
Mechanism of cotranslational modification of histones H2A and H4 by MetAP1 and NatD
NAC enables cotranslational N-terminal processing of histones H2A and H4 by recruiting MetAP1 and NatD at the ribosomal tunnel.
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bioRxiv Plant Bio @biorxiv-plants.bsky.social · 09/12/2025
Functional divergence of the Arg/N-degron pathway between the crop Brassica rapa and the model plant Arabidopsis thaliana www.biorxiv.org/content/10.64898/20…
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Molecular Cell @cp-molcell.bsky.social · 10/12/2025
Online Now: HYPK promotes N-terminal protein acetylation through rapid ribosome exchange of NatA Online now:
dlvr.it
HYPK promotes N-terminal protein acetylation through rapid ribosome exchange of NatA
Huntingtin-interacting protein K (HYPK) promotes the activity of N-terminal acetyltransferase A (NatA), which cotranslationally acetylates 40% of the eukaryotic proteome. Kinetic and in-cell measurements revealed that HYPK acts as a ribosome exchange factor for NatA, enabling its access to and acetylation of the translatome.
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N End Rules @n-end-rules.bsky.social · 03/12/2025
Just registered for FEBS advanced workshop Protein termini 2026 in Palermo #proteintermini2026 (?) Looking forward to a great meeting. @ispt-proteinterm.bsky.social www.conferencecentral.org/webpage/view...
conferencecentral.org
FEBS Workshop 'Protein termini 2026: From mechanisms to biological impact'
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Peter Mabbitt @petermabbitt.bsky.social · 29/11/2025
We’ve made some new tools to manipulate N-recognins. Check them out in our preprint. www.biorxiv.org/content/10.1...
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Henriette Aksnes @henrietteaksnes.bsky.social · 27/10/2025
Want to assess N-terminal acetyltransferases without radioactive labelling or mass spec? Look here! @ispt-proteinterm.bsky.social @cellsignal.com
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