Suppr超能文献

吡咯并苯二氮卓(PBDs)与双链和发夹DNA片段内末端鸟嘌呤残基的共价键合。

Covalent Bonding of Pyrrolobenzodiazepines (PBDs) to Terminal Guanine Residues within Duplex and Hairpin DNA Fragments.

作者信息

Mantaj Julia, Jackson Paul J M, Karu Kersti, Rahman Khondaker M, Thurston David E

机构信息

Institute of Pharmaceutical Science, King's College London, 7 Trinity Street, London, SE1 1DB, United Kingdom.

Femtogenix Limited, Britannia House, 7 Trinity Street, London, SE1 1DB, United Kingdom.

出版信息

PLoS One. 2016 Apr 7;11(4):e0152303. doi: 10.1371/journal.pone.0152303. eCollection 2016.

Abstract

Pyrrolobenzodiazepines (PBDs) are covalent-binding DNA-interactive agents with growing importance as payloads in Antibody Drug Conjugates (ADCs). Until now, PBDs were thought to covalently bond to C2-NH2 groups of guanines in the DNA-minor groove across a three-base-pair recognition sequence. Using HPLC/MS methodology with designed hairpin and duplex oligonucleotides, we have now demonstrated that the PBD Dimer SJG-136 and the C8-conjugated PBD Monomer GWL-78 can covalently bond to a terminal guanine of DNA, with the PBD skeleton spanning only two base pairs. Control experiments with the non-C8-conjugated anthramycin along with molecular dynamics simulations suggest that the C8-substituent of a PBD Monomer, or one-half of a PBD Dimer, may provide stability for the adduct. This observation highlights the importance of PBD C8-substituents, and also suggests that PBDs may bind to terminal guanines within stretches of DNA in cells, thus representing a potentially novel mechanism of action at the end of DNA strand breaks.

摘要

吡咯并苯二氮卓类化合物(PBDs)是一种共价结合的DNA相互作用剂,作为抗体药物偶联物(ADCs)中的有效载荷,其重要性日益凸显。到目前为止,人们认为PBDs通过一个三碱基对识别序列与DNA小沟中的鸟嘌呤的C2-NH2基团共价结合。我们利用高效液相色谱/质谱方法结合设计的发夹和双链寡核苷酸,现已证明PBD二聚体SJG-136和C8共轭PBD单体GWL-78可以与DNA的末端鸟嘌呤共价结合,PBD骨架仅跨越两个碱基对。使用非C8共轭的氨茴霉素进行的对照实验以及分子动力学模拟表明,PBD单体的C8取代基或PBD二聚体的一半可能为加合物提供稳定性。这一观察结果突出了PBD C8取代基的重要性,也表明PBDs可能与细胞内DNA片段中的末端鸟嘌呤结合,从而代表了DNA链断裂末端一种潜在的新作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f979/4824457/498c17a5ad39/pone.0152303.g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验