タンパク質修飾の発見ががん治療の可能性を拡大(Protein modification discovery opens cancer therapy possibilities)

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2026-03-25 パデュー大学

Purdue Universityの研究チームは、タンパク質の新たな修飾機構を発見し、がん治療への応用可能性を示した。この修飾は特定のタンパク質の機能や安定性を変化させ、細胞内のシグナル伝達や増殖制御に影響を与える。研究では、この分子メカニズムが腫瘍の進行や抑制に関与することが示唆されており、標的とすることで新しい治療法の開発につながる可能性がある。従来の治療とは異なる作用点を持つため、副作用の軽減や治療効果の向上も期待される。今後は詳細な作用機構の解明と臨床応用に向けた研究が進められる見込みである。

<関連情報>

D-およびL -2-ヒドロキシグルタル酸によるキラル依存性タンパク質修飾の発見 Discovery of chirally dependent protein modifications by D- and L-2-hydroxyglutarates

Zheng Zhang,Yi-Kai Liu,Zhuojun Luo,Meng-Ju Wu,Claudia N. Evans,Zihan Qu,Fanglei Xue,Zijian Wang,Lia Stanciu,Zhong-Yin Zhang,Elizabeth I. Parkinson,Nabeel Bardeesy & W. Andy Tao
Nature Chemistry  Published:17 March 2026
DOI:https://doi.org/10.1038/s41557-026-02093-x

タンパク質修飾の発見ががん治療の可能性を拡大(Protein modification discovery opens cancer therapy possibilities)

Abstract

Mutations in isocitrate dehydrogenase 1 (IDH1) and 2 (IDH2) are common in multiple types of human cancer and cause accumulation of the oncometabolite D-2-hydroxyglutarate (D2HG) instead of α-ketoglutarate, driving cancers like gliomas and acute myeloid leukaemia by blocking cell differentiation and promoting tumour growth. Here we discovered protein O-2-hydroxyglutarylation by D2HG using chemical proteomics and further revealed distinct chiral preferences for D2HG and L-2-hydroxyglutarate (L2HG) modifications. D2HG modifications are upregulated in IDH-mutant cells or upon D2HG treatment, while L2HG modifications increase under hypoxic conditions or following L2HG treatment. Notably, two kinases MRCKA and SLK are modified by D2HG and L2HG, respectively, and confirmed by synthetic peptide standards. Phosphoproteomics revealed reduced phosphorylation of MRCKA and SLK substrates, suggesting crosstalk between D/L-2HG modification and kinase activity. These findings highlight distinctive roles of D/L-2HG modifications in cancer progression and suggest potential avenues for therapeutic targeting of oncometabolite-induced post-translational modifications.

医療・健康
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