McKenna Sean M, Florea Bogdan I, Zisterer Daniela M, van Kasteren Sander I, McGouran Joanna F
School of Chemistry, Trinity Biomedical Sciences Institute, Trinity College Dublin 152-160 Pearse St Dublin 2 Ireland
Synthesis and Solid State Pharmaceutical Centre (SSPC) Ireland.
RSC Chem Biol. 2024 Jun 25;5(8):776-786. doi: 10.1039/d4cb00053f. eCollection 2024 Jul 31.
Affinity-based probes are valuable tools for detecting binding interactions between small molecules and proteins in complex biological environments. Metalloproteins are a class of therapeutically significant biomolecules which bind metal ions as part of key structural or catalytic domains and are compelling targets for study. However, there is currently a limited range of chemical tools suitable for profiling the metalloproteome. Here, we describe the preparation and application of a novel, photoactivatable affinity-based probe for detection of a subset of previously challenging to engage metalloproteins. The probe, bearing an 8-mercaptoquinoline metal chelator, was anticipated to engage several zinc metalloproteins, including the 26S-proteasome subunit Rpn11. Upon translation of the labelling experiment to mammalian cell lysate and live cell experiments, proteomic analysis revealed that several metalloproteins were competitively enriched. The diazirine probe SMK-24 was found to effectively enrich multiple components of the minichromosome maintenance complex, a zinc metalloprotein assembly with helicase activity essential to DNA replication. Cell cycle analysis experiments revealed that HEK293 cells treated with SMK-24 experienced stalling in G0/G1 phase, consistent with inactivation of the DNA helicase complex. This work represents an important contribution to the library of cell-permeable chemical tools for studying a collection of metalloproteins for which no previous probe existed.
基于亲和力的探针是在复杂生物环境中检测小分子与蛋白质之间结合相互作用的宝贵工具。金属蛋白是一类具有重要治疗意义的生物分子,它们结合金属离子作为关键结构或催化结构域的一部分,是极具吸引力的研究靶点。然而,目前适用于分析金属蛋白质组的化学工具种类有限。在此,我们描述了一种新型的、可光活化的基于亲和力的探针的制备和应用,用于检测此前难以研究的一部分金属蛋白。该探针带有一个8-巯基喹啉金属螯合剂,预计能与多种锌金属蛋白结合,包括26S蛋白酶体亚基Rpn11。在将标记实验转化为哺乳动物细胞裂解物和活细胞实验后,蛋白质组学分析表明有几种金属蛋白被竞争性富集。发现重氮丙啶探针SMK-24能有效富集微型染色体维持复合体的多个组分,这是一种具有解旋酶活性的锌金属蛋白组装体,对DNA复制至关重要。细胞周期分析实验表明,用SMK-24处理的HEK293细胞在G0/G1期停滞,这与DNA解旋酶复合体的失活一致。这项工作为可穿透细胞的化学工具库做出了重要贡献,有助于研究此前没有探针的一系列金属蛋白。