小児脳腫瘍に対する新たな治療法の可能性を解明(UW researchers uncover possible new treatment to target a devastating childhood brain cancer)

ad

2025-10-15 ウィスコンシン大学マディソン校(UW-Madison)

ウィスコンシン大学マディソン校の研究チームは、小児びまん性正中部神経膠腫(DMG)の新たな治療標的を見出した。研究者らはショウジョウバエを用いて、DNAパッケージタンパク質の変異が腫瘍形成を引き起こす仕組みを解析。変異オンコプロテインをハエの眼や翼で発現させ、数百の遺伝子をスクリーニングした結果、腫瘍形成を悪化・軽減する経路を複数特定した。これらの遺伝子はヒト腫瘍にも共通しており、将来の治療標的となる可能性がある。成果は『Genetics』誌に掲載。

<関連情報>

ショウジョウバエ における腫瘍タンパク質を介したポリコーム阻害の新規修飾因子 Novel modifiers of oncoprotein-mediated Polycomb inhibition in Drosophila melanogaster

Samuel D Krabbenhoft, Tyler E Masuda, Yadwinder Kaur, Truman J Do, Siddhant U Jain, Peter W Lewis, Melissa M Harrison
Genetics  Published:16 September 2025
DOI:https://doi.org/10.1093/genetics/iyaf193

小児脳腫瘍に対する新たな治療法の可能性を解明(UW researchers uncover possible new treatment to target a devastating childhood brain cancer)

Abstract

Polycomb Repressive Complex 2 (PRC2) maintains epigenetic repression through the catalysis of H3K27 trimethylation (H3K27me3), which restricts gene expression and preserves developmental gene-regulatory networks. The integrity of PRC2-mediated gene silencing depends critically on the ability of PRC2 to establish and propagate H3K27me3 beyond initial recruitment sites. The oncoproteins EZHIP and histone H3 K27M specifically inhibit this propagation by blocking the allosterically activated state of PRC2, leading to global disruption of H3K27me3 patterns and developmental abnormalities. To uncover chromatin-related pathways intersecting with PRC2 repression, we developed a Drosophila melanogaster model with tissue-specific expression of EZHIP and H3 K27M. A targeted RNAi screen of conserved chromatin regulators identified genetic modifiers that when knocked down either enhanced or suppressed developmental phenotypes driven by these PRC2 inhibitors. Strong suppressors, including the Trithorax group proteins Ash1 and Trx, the PR-DUB complex member Asx, and the nucleoporin Nup153, restored normal development despite persistent depletion of global H3K27me3. Gene expression analyses revealed that suppression reflected reduced expression of genes aberrantly activated following PRC2 inhibition. Together, these findings highlight conserved chromatin-regulatory pathways that intersect with Polycomb to maintain transcriptional balance and support developmental homeostasis.

医療・健康
ad
ad
Follow
ad
タイトルとURLをコピーしました