化学シールドがミトコンドリアDNAの炎症誘発を阻止(Chemical shield stops stressed DNA from triggering disease)

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2025-07-21 カリフォルニア大学リバーサイド校(UCR)

カリフォルニア大学リバーサイド校の研究チームは、ミトコンドリアDNA(mtDNA)の損傷による疾患誘発を防ぐ新しい化学プローブ「mTAP」を開発した。mTAPは損傷中のmtDNAに選択的に結合し、分解を防ぐことでDNA量の維持と細胞機能の保護を実現。心臓や脳など高エネルギー組織での慢性炎症、アルツハイマー病、糖尿病などの予防に有望とされる。修復ではなく“損傷の予防”という新たな戦略が注目されている。

<関連情報>

ミトコンドリア標的アベイシック部位反応性プローブ(mTAP)がミトコンドリアDNAレベルの操作を可能にする Mitochondria-Targeting Abasic Site-Reactive Probe (mTAP) Enables the Manipulation of Mitochondrial DNA Levels

Dr. Anal Jana, Yu-Hsuan Chen, Dr. Linlin Zhao
Angewandte Chemie International Edition  Published: 15 July 2025
DOI:https://doi.org/10.1002/anie.202502470

Graphical Abstract

Mitochondria-targeting water-soluble probe mTAP exclusively reacts with mitochondrial abasic sites, enabling the manipulation of mitochondrial DNA levels under genotoxic stress.

化学シールドがミトコンドリアDNAの炎症誘発を阻止(Chemical shield stops stressed DNA from triggering disease)

Abstract

Mitochondrial DNA (mtDNA) encodes essential genes for mitochondrial and cellular functions and acts as a cell signaling molecule in innate immune and inflammatory responses. Defects in mtDNA are implicated in a range of mitochondrial disorders and human diseases. Currently, no chemical strategy exists to prevent mtDNA loss under genotoxic stress. To address this, we developed a mitochondria-targeting probe (mTAP) that selectively reacts with key mtDNA repair intermediates–abasic (AP) sites. We confirmed that mTAP forms oxime conjugates exclusively with mitochondrial AP sites without conjugation with nuclear AP sites. Upon mTAP conjugation, DNA substrates containing AP sites were resistant to cleavage by AP endonuclease (APE1) and mitochondrial extracts. This conjugation significantly reduced the DNA-binding affinity of APE1 without affecting the DNA-binding activity of a mtDNA-packaging factor, mitochondrial transcription factor A (TFAM). Importantly, cellular experiments demonstrated that mTAP treatment alleviated the decrease in mtDNA and transcription product levels induced by mitochondrial AP site damage. Functional assays also demonstrated that mTAP treatment did not compromise mtDNA replication activity or increase the overall mtDNA damage level. These findings highlight the potential of mTAP as a valuable chemical tool to modulate mtDNA levels under genotoxic stress.

生物化学工学
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