Sebastiaan van Heesch

@sebastiaanvheesch.bsky.social

Childhood cancer immunotherapy, Microproteins, RNA translation, new ORFs & antigens, lncRNAs PI @Princess Máxima Center for Pediatric Oncology and @Oncode Institute. Vice-chair Therapeutic Vaccines @Oncode Accelerator. Personal account - he/him/his

Introducing peptidiens! Congratulations to the TransCODE consortium on this exciting tour-de-force in @nature.com: nature.com/articles/s41... We look forward to seeing what’s next as lead authors Sebastiaan van Heesch and John Prensner take on our dark proteome challenge as part of team ILLUMINE!

Expanding the human proteome with microproteins and peptideins - Nature

A large-scale proteomics analysis of the dark proteome by the TransCODE Consortium reveals many translated non-canonical open reading frames to encode microproteins and peptideins.

nature.com

But are they genes? That's a question of definitions, and a definition question demands a conversation. So a massive international collaboration dug into these little proteins, surveying many lines of evidence, including billions of mass spectra. cen.acs.org/biological-c...

How many genes are in the human genome? For once, it’s more than we thought

Improved analysis adds several microproteins to the human proteome, and suggests a path toward identifying thousands more

cen.acs.org

The estimated size of the human proteome has been shrinking for decades. At the outset of the human genome project, researchers thought maybe 100K proteins encoded. After it wrapped, perhaps ~23K. Since then, pseudogene removal has cut the count to ~19.5K.

Are you looking to study the #darkproteome but don't know where to start? Never fear, we've got your back. Here, we share the latest catalog for #RiboSeq #ORFs. Thanks to Sonia Chothani and @jruizorera.bsky.social for leading! 🧪 💻 + 🧬 #GENESky #bioinformatics www.biorxiv.org/content/10.1...

An expanded reference catalog of translated open reading frames for biomedical research

Non-canonical (i.e., unannotated) open reading frames (ncORFs) have until recently been omitted from reference genome annotations, despite evidence of their translation, limiting their incorporation into biomedical research. To address this, in 2022, we initiated the TransCODE consortium and built the first community-driven consensus catalog of human ncORFs, which was openly distributed to the research community via Ensembl-GENCODE. While this catalog represented a starting point for reference ncORF annotation, major technical and scientific issues remained. In particular, this initial catalogue had no standardized framework to judge the evidence of translation for individual ncORFs. Here, we present an expanded and refined catalog of the human reference annotation of ncORFs. By incorporating more datasets and by lifting constraints on ORF length and start-codon, we define a comprehensive set of 28,359 ncORFs that is nearly four times the size of the previous catalog. Furthermore, to aid users who wish to work with ncORFs with the strongest and most reproducible signals of translation, we utilized a data-driven framework (i.e. translation signature scores) to assess the accumulated evidence for any individual ncORF. Using this approach, we derive a subset of 7,888 ncORFs with translation evidence on par with canonical protein-coding genes, which we refer to as the Primary set. This set can serve as a reliable reference for downstream analyses and validation, with a particular emphasis on high quality. Overall, this update reflects continual community-driven efforts to make ncORFs accessible and actionable to the broader research public and further iterations of the catalog will continue to expand and refine this resource. ### Competing Interest Statement J.R.P. has received research honoraria from Novartis Biosciences and Quantum-Si, and is a paid consultant for ProFound Therapeutics. J.L.A. is an advisor to Microneedle Solutions. G.M. is co-founder and CSO of OHMX.bio. P.F. is a member of the scientific advisory board of Infinitopes. A.-R. C. is a member of the advisory board of ProFound Therapeutics. P.V.B. is a cofounder and shareholder of Eirnabio Ltd.

biorxiv.org

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Glad to be in the "conversation" about microproteins and other non-canonical proteins arising from noncoding translation. I look forward to continuing the discussion at the upcoming keystone symposium on microproteins

Nature@nature.com · 2y ago

“The leaders of the Human Genome Project always knew they were just starting a conversation” The human genome encodes potentially thousands of tiny proteins that were previously overlooked. The search is on to find out what they do https://go.nature.com/3CupmSS

“The leaders of the Human Genome Project always knew they were just starting a conversation” The human genome encodes potentially thousands of tiny proteins that were previously overlooked. The search is on to find out what they do https://go.nature.com/3CupmSS

‘Dark proteins’ hiding in our cells could hold clues to cancer and other diseases

The human genome encodes potentially thousands of tiny proteins that were previously overlooked. The search is on to find out what they do.

go.nature.com

On June 5th this year, 9 van Heesch lab members will battle the steep French Alpe D'huez by bike or foot in the yearly Alpe D'huZes event, to raise money for cancer research. Please do support them in their goal to battle this horrible disease by donating: www.opgevenisgeenoptie.nl/fundraisers/...

Oncode 3

Wij doen als team mee aan Alpe d’HuZes omdat wij geloven dat wij samen kunnen werken aan een wereld waarin je niet meer doodgaat aan kanker, wil jij ons steunen?

opgevenisgeenoptie.nl

Humans are similar to other primates in ways that affect how we treat & interact with them. But when it comes to genetic details critical for biomedical research, key differences make non-human primates poor stand-ins for humans. Two new findings show us why... 🧵

Side by side photographs of a human staring at a computer with their hand on their chin like they're thinking and a chimpanzee outside in the same posture.