Tseng Ming-Chung, Chang Yi-Pin, Chu Yen-Ho
Department of Chemistry and Biochemistry, National Chung Cheng University, Chia-Yi, Taiwan 621, Republic of China.
Anal Biochem. 2007 Dec 1;371(1):1-9. doi: 10.1016/j.ab.2007.08.035. Epub 2007 Sep 1.
This paper describes direct binding of a small vancomycin to peptide ligands immobilized on a sensor chip using quartz crystal microbalance. In this study, the binding ligands were composed of three components: a molecular recognition element (peptide), a conformationally flexible and hydrophilic linker, and a long-chain alkanethiol. These peptide ligands were used to establish the well-packed, self-assembled monolayers on quartz chips and could be readily synthesized using conventional organic chemistry protocols. Results of quartz crystal microbalance measurements showed that vancomycin specifically associated with the d-Ala-d-Ala-containing peptide with an affinity of 3.2+/-0.3 microM and was, as expected, completely inactive to the self-assembled monolayer presenting l-Ala-l-Ala peptide. The dissociation constant obtained correlated well with values reported in literature and was further confirmed by surface plasmon resonance measurement (2.7+/-0.7 microM). The technique used in this study should be applicable to both peptidyl and nonpeptidyl ligands of greater complexity than that used here. This method is practical, it provides quantitative binding information, and complicated analysis is avoided.
本文描述了使用石英晶体微天平将小的万古霉素直接与固定在传感器芯片上的肽配体结合。在本研究中,结合配体由三个部分组成:分子识别元件(肽)、构象灵活且亲水的连接子以及长链烷硫醇。这些肽配体用于在石英芯片上建立紧密堆积的自组装单层,并且可以使用常规有机化学方法轻松合成。石英晶体微天平测量结果表明,万古霉素与含d-Ala-d-Ala的肽特异性结合,亲和力为3.2±0.3 microM,正如预期的那样,对呈现l-Ala-l-Ala肽的自组装单层完全无活性。获得的解离常数与文献报道的值相关性良好,并通过表面等离子体共振测量进一步得到证实(2.7±0.7 microM)。本研究中使用的技术应适用于比此处使用的更复杂的肽基和非肽基配体。该方法实用,提供定量结合信息,且避免了复杂的分析。