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一种结合 G-四链体的铂类复合物通过双重靶向富含 G4 的线粒体和核基因组诱导肿瘤线粒体功能障碍。

A G-quadruplex-binding platinum complex induces cancer mitochondrial dysfunction through dual-targeting mitochondrial and nuclear G4 enriched genome.

机构信息

Key Laboratory of Drug-Targeting and Drug Delivery System of the Education Ministry and Sichuan Province, Sichuan Engineering Laboratory for Plant-Sourced Drug and Sichuan Research Center for Drug Precision Industrial Technology, West China School of Pharmacy, Sichuan University, 610041, Chengdu, China.

CNRS-UMR9187, INSERM U1196, PSL-Research University, 91405, Orsay, France.

出版信息

J Biomed Sci. 2024 May 13;31(1):50. doi: 10.1186/s12929-024-01041-6.

Abstract

BACKGROUND

G-quadruplex DNA (G4) is a non-canonical structure forming in guanine-rich regions, which play a vital role in cancer biology and are now being acknowledged in both nuclear and mitochondrial (mt) genome. However, the impact of G4-based targeted therapy on both nuclear and mt genome, affecting mt function and its underlying mechanisms remain largely unexplored.

METHODS

The mechanisms of action and therapeutic effects of a G4-binding platinum(II) complex, Pt-ttpy, on mitochondria were conducted through a comprehensive approaches with in vitro and in vivo models, including ICP-MS for platinum measurement, PCR-based genetic analysis, western blotting (WB), confocal microscope for mt morphology study, extracellular flux analyzer, JC1 and Annexin V apoptosis assay, flow cytometry and high content microscope screening with single-cell quantification of both ROS and mt specific ROS, as well as click-chemistry for IF study of mt translation. Decipher Pt-ttpy effects on nuclear-encoded mt related genes expression were undertaken via RNA-seq, Chip-seq and CUT-RUN assays.

RESULTS

Pt-ttpy, shows a highest accumulation in the mitochondria of A2780 cancer cells as compared with two other platinum(II) complexes with no/weak G4-binding properties, Pt-tpy and cisplatin. Pt-ttpy induces mtDNA deletion, copy reduction and transcription inhibition, hindering mt protein translation. Functional analysis reveals potent mt dysfunction without reactive oxygen species (ROS) induction. Mechanistic study provided first evidence that most of mt ribosome genes are highly enriched in G4 structures in their promoter regions, notably, Pt-ttpy impairs most nuclear-encoded mt ribosome genes' transcription through dampening the recruiting of transcription initiation and elongation factors of NELFB and TAF1 to their promoter with G4-enriched sequences. In vivo studies show Pt-ttpy's efficient anti-tumor effects, disrupting mt genome function with fewer side effects than cisplatin.

CONCLUSION

This study underscores Pt-ttpy as a G4-binding platinum(II) complex, effectively targeting cancer mitochondria through dual action on mt and nuclear G4-enriched genomes without inducing ROS, offering promise for safer and effective platinum-based G4-targeted cancer therapy.

摘要

背景

G-四链体 DNA(G4)是一种在富含鸟嘌呤的区域形成的非经典结构,在癌症生物学中起着至关重要的作用,现在在核和线粒体(mt)基因组中都得到了认可。然而,基于 G4 的靶向治疗对核和 mt 基因组的影响,以及影响 mt 功能的潜在机制在很大程度上仍未得到探索。

方法

通过体外和体内模型的综合方法,包括 ICP-MS 用于铂测量、基于 PCR 的遗传分析、western blot(WB)、用于 mt 形态研究的共聚焦显微镜、细胞外通量分析仪、JC1 和 Annexin V 凋亡测定、流式细胞术和高内涵显微镜筛选,用单细胞定量测定 ROS 和 mt 特异性 ROS,以及用于 mt 翻译的 IF 研究的点击化学,研究了 G4 结合的铂(II)配合物 Pt-ttpy 对线粒体的作用机制和治疗效果。通过 RNA-seq、Chip-seq 和 CUT-RUN 测定,阐明了 Pt-ttpy 对核编码 mt 相关基因表达的影响。

结果

与另外两个无/弱 G4 结合特性的铂(II)配合物 Pt-tpy 和顺铂相比,Pt-ttpy 在 A2780 癌细胞的线粒体中积累最高。Pt-ttpy 诱导 mtDNA 缺失、拷贝减少和转录抑制,阻碍 mt 蛋白翻译。功能分析显示,在没有活性氧(ROS)诱导的情况下,线粒体功能受到强烈抑制。机制研究首次提供了证据,表明大多数 mt 核糖体基因在其启动子区域高度富含 G4 结构,特别是 Pt-ttpy 通过抑制转录起始和延伸因子 NELFB 和 TAF1 与其富含 G4 序列的启动子结合,抑制大多数核编码 mt 核糖体基因的转录。体内研究表明,Pt-ttpy 具有高效的抗肿瘤作用,与顺铂相比,它能破坏 mt 基因组功能,且副作用较少。

结论

这项研究强调了 Pt-ttpy 作为一种 G4 结合的铂(II)配合物,通过对 mt 和富含核 G4 的基因组的双重作用,有效地靶向肿瘤线粒体,而不诱导 ROS,为更安全有效的基于铂的 G4 靶向癌症治疗提供了希望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b486/11089687/2c35ee3c2dc6/12929_2024_1041_Sch1_HTML.jpg

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