Evidence map›Paper›PMID 41654133›Full record

ArticleThe Journal of biological chemistry2026

The SETD2 L1609P mutation found in leukemia disrupts methyltransferase activity and reduces histone H3K36 trimethylation.

Christina Michail, Jérémy Berthelet, Ariel E Mechaly, Linh-Chi Bui, Haopeng Yang, Duo Cai, Amira Al Mahi, Aowei Xie, Valeria Bisio, Valentina Sirri and 11 more

Abstract read
In one paragraph

Article in The Journal of biological chemistry, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

What it found

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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

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3 · Its place in the literature

Who cites it

0 citing papers in PubMed.

No citing paper in PubMed yet.

4 · The record

Corrections and comments

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5 · Who and what money

Authors and funding

21 authors.

Christina MichailUniversité Paris Cité, CNRS, Unité de Biologie Fonctionnelle et Adaptative, Paris, France.
Jérémy BertheletUniversité Paris Cité, CNRS, Centre Epigénétique et Destin Cellulaire, Paris, France.
Ariel E MechalyInstitut Pasteur, CNRS, Plate-forme de Cristallographie-C2RT, Paris, France.
Linh-Chi BuiUniversité Paris Cité, CNRS, Unité de Biologie Fonctionnelle et Adaptative, Paris, France.
Haopeng YangDepartment of Lymphoma and Myeloma, Department of Genomic Medicine, The University of Texas MD Anderson Cancer Center, Houston, Texas, USA.
Duo CaiUniversité Paris Cité, CNRS, Unité de Biologie Fonctionnelle et Adaptative, Paris, France.
Amira Al MahiUniversité Paris Cité, CNRS, Unité de Biologie Fonctionnelle et Adaptative, Paris, France.
Aowei XieMarine Biomedical Institute of Qingdao, School of Pharmacy and Medicine, Ocean University of China, Qingdao, Shandong, China.
Valeria BisioUniversité Paris Cité, INSERM, Institut de Recherche Saint Louis, Paris, France.
Valentina SirriUniversité Paris Cité, CNRS, Unité de Biologie Fonctionnelle et Adaptative, Paris, France.
Jean-Marie DupretUniversité Paris Cité, CNRS, Unité de Biologie Fonctionnelle et Adaptative, Paris, France.
Fabien GuidezUniversité de Bourgogne, INSERM, Dijon, France.
Ximing XuMarine Biomedical Institute of Qingdao, School of Pharmacy and Medicine, Ocean University of China, Qingdao, Shandong, China.
Nicolas JolyUniversité Paris Cité, CNRS, Institut Jacques Monod, Paris, France.
Leslie RegadUniversité Paris Cité, CNRS, Unité de Biologie Fonctionnelle et Adaptative, Paris, France; Université Paris Cité, CNRS, INSERM, Unité de Biologie Fonctionnelle et Adaptative, Paris, France.
Mireille ViguierUniversité Paris Cité, CNRS, Unité de Biologie Fonctionnelle et Adaptative, Paris, France.
Frédérique DeshayesUniversité Paris Cité, CNRS, Unité de Biologie Fonctionnelle et Adaptative, Paris, France.
Nicolas DulphyUniversité Paris Cité, INSERM, Institut de Recherche Saint Louis, Paris, France.
Michael R GreenDepartment of Lymphoma and Myeloma, Department of Genomic Medicine, The University of Texas MD Anderson Cancer Center, Houston, Texas, USA.
Ahmed HaouzInstitut Pasteur, CNRS, Plate-forme de Cristallographie-C2RT, Paris, France.
Fernando Rodrigues LimaUniversité Paris Cité, CNRS, Unité de Biologie Fonctionnelle et Adaptative, Paris, France. Electronic address: fernando.rodrigues-lima@u-paris.fr.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

SET-domain containing protein 2 (SETD2) is the primary methyltransferase responsible for generating H3K36me3, an epigenetic mark that is essential for transcriptional regulation and chromatin integrity. SETD2 mutations are frequently observed in various cancers and tend to cluster within its catalytic SET domain. Despite the clinical relevance of SETD2 missense mutations in cancer, their biochemical and structural consequences remain insufficiently characterized. Here, we present the enzymatic and structural characterization of the SETD2 L1609P mutant enzyme identified in leukemia. The L1609 residue is located in the SET domain within a conserved hydrophobic pocket that is involved in substrate H3K36 recognition. Interestingly, site-directed mutagenesis of residues within this hydrophobic pocket leads to SETD2 enzyme variants with either decreased or increased H3K36me3 methyltransferase activity, suggesting that cancer mutations affecting the L1609 residue could result in a loss- or gain-of-function enzyme variant. Using molecular and cellular approaches, we show that the SETD2 L1609P mutant exhibits reduced H3K36 methyltransferase activity, decreased protein stability, and poor cellular expression. Consistently, the crystal structure of the SETD2 L1609P in complex with a H3K36M peptide shows remodeling of the active site. These findings support the pivotal role of SETD2 inactivation and subsequent disruption of H3K36me3 deposition in oncogenesis, particularly in hematologic malignancies. Our study provides the first mechanistic and three-dimensional protein structure information on how SETD2-associated cancer mutations can lead to altered H3K36 methyltransferase activity.

Indexed as

Histone-Lysine N-MethyltransferaseHistonesLeukemiaMutationHumansMethylationModels, MolecularHistone-Lysine N-MethyltransferaseHistonesSETD2 protein, humancancer mutationscatalytic activitycrystal structureH3K36me3 epigenetic markleukemiaSETD2SET domain

Identifiers

PMID41654133
PMCPMC12969715

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.