Department of Biosciences and Bioengineering, Indian Institute of Technology Guwahati, Guwahati, Assam, 781 039, India.
Department of Chemistry, Indian Institute of Technology Guwahati, Guwahati, Assam, 781 039, India.
Chembiochem. 2018 Jul 4;19(13):1400-1408. doi: 10.1002/cbic.201800032. Epub 2018 May 30.
The present study explores the potential of pyridine-based synthetic amphiphiles C1 and C2 having 4-carbon and 12-carbon hydrophobic tails, respectively, as staphylococcal nuclease inhibitors. UV-visible titration with calf-thymus DNA (CT-DNA) revealed a hypochromic shift in the absorbance bands of C1 and C2, whereas fluorescence titration indicated a reduction in the emission intensity of the monomer bands of the amphiphiles. Interaction of deoxyribonuclease I (DNase 1) and micrococcal nuclease (MNase) with C1 or C2 led to a decrease in the emission intensity of tryptophan at λ=345 nm along with an increase in the monomer emission intensity of C1 and C2 at λ=375 nm for DNase I and excimer emission intensity at λ=470 nm for both DNase I and MNase. Scatchard's analysis indicated superior interaction of C2 with DNase I. Circular dichroism spectroscopy revealed major changes in the secondary structures of both DNase I and MNase upon interaction with the amphiphiles. A solution-based nuclease assay in conjunction with gel electrophoresis indicated amphiphile-mediated protection against nuclease-directed DNA cleavage. Interestingly, C2 could render inhibition of nuclease present in the culture supernatant of Staphylococcus aureus MTCC 96, which highlights the therapeutic prospect of the amphiphile against S. aureus.
本研究探索了分别具有 4 个碳和 12 个碳疏水尾部的吡啶基合成两亲物 C1 和 C2 作为葡萄球菌核酸酶抑制剂的潜力。与小牛胸腺 DNA(CT-DNA)的紫外可见滴定显示 C1 和 C2 的吸收带发生了减色效应,而荧光滴定则表明两亲物单体带的发射强度降低。脱氧核糖核酸酶 I(DNase I)和微球菌核酸酶(MNase)与 C1 或 C2 的相互作用导致色氨酸在 λ=345nm 处的发射强度降低,同时 C1 和 C2 在 λ=375nm 处的单体发射强度增加,DNase I 处的激基发射强度增加,MNase 处的单体发射强度增加。Scatchard 分析表明 C2 与 DNase I 的相互作用更好。圆二色性光谱显示,两亲物与两种核酸酶相互作用后,DNase I 和 MNase 的二级结构发生了重大变化。基于溶液的核酸酶测定法与凝胶电泳相结合,表明两亲物介导的对核酸酶定向 DNA 切割的保护。有趣的是,C2 可以抑制金黄色葡萄球菌 MTCC 96 培养上清液中的核酸酶,这突出了该两亲物对金黄色葡萄球菌的治疗前景。