Department of Chemistry, National Sun Yat-sen University, No, 70, Lienhai Rd,, Kaohsiung, 80424, Taiwan.
Proteome Sci. 2013 May 23;11(1):23. doi: 10.1186/1477-5956-11-23.
There is great interest in the design of small molecules that selectively target minor grooves of duplex DNA for controlling specific gene expression implicated in a disease. The design of chiral small molecules for rational drug design has attracted increasing attention due to the chirality of DNA. Yet, there is limited research on the chirality effect of minor groove binders on DNA interaction, especially at the protein expression level. This paper is an attempt to illustrate that DNA binding affinity might not provide a full picture on the biological activities. Drug interacting at the genomic level can be translated to the proteomic level. Here we have illustrated that although the chiral bispyrrole-pyrrolidine-oligoamides, PySSPy and PyRSPy, showed low binding affinity to DNA, their influence at the proteomic level is significant. More importantly, the chirality also plays a role. Two-dimensional proteomic profile to identify the differentially expressed protein in Escherichia coli DH5α (E coli DH5α) were investigated.
E coli DH5α incubated with the chiral PySSPy and PyRSPy, diastereomeric at the pyrrolidine ring, showed differential expression of eighteen proteins as observed through two dimensional proteomic profiling. These eighteen proteins identified by MALDI_TOF/TOF MS include antioxidant defense, DNA protection, protein synthesis, chaperone, and stress response proteins. No statistically significant toxicity was observed at the tested drug concentrations as measured via MTT assay.
The current results showed that the chiral PySSPy and PyRSPy impact on the proteomic profiling of E coli DH5α, implicating the importance of drug chirality on biological activities at the molecular level.
人们对设计能选择性靶向双链 DNA 小沟的小分子以控制特定疾病相关基因表达非常感兴趣。由于 DNA 的手性,设计手性小分子用于合理药物设计引起了越来越多的关注。然而,关于小沟结合物对 DNA 相互作用的手性效应的研究有限,特别是在蛋白质表达水平上。本文试图说明 DNA 结合亲和力可能无法全面反映生物活性。在基因组水平上与药物相互作用的物质可以转化为蛋白质组水平。在这里,我们已经表明,尽管手性双吡咯-吡咯烷-寡聚酰胺 PySSPy 和 PyRSPy 与 DNA 的结合亲和力较低,但它们在蛋白质组水平上的影响是显著的。更重要的是,手性也起到了作用。通过二维蛋白质组图谱来鉴定大肠杆菌 DH5α(E coli DH5α)中的差异表达蛋白。
用手性 PySSPy 和 PyRSPy (吡咯烷环的非对映异构体)孵育大肠杆菌 DH5α,通过二维蛋白质组图谱观察到 18 种蛋白质的差异表达。通过 MALDI_TOF/TOF MS 鉴定的这 18 种蛋白质包括抗氧化防御、DNA 保护、蛋白质合成、伴侣和应激反应蛋白。通过 MTT 测定法测量,在测试的药物浓度下未观察到统计学上显著的毒性。
目前的结果表明,手性 PySSPy 和 PyRSPy 影响大肠杆菌 DH5α 的蛋白质组图谱,这表明药物手性对分子水平上的生物活性的重要性。