Bhattarai Jay K, Tan Yih Horng, Pandey Binod, Fujikawa Kohki, Demchenko Alexei V, Stine Keith J
Department of Chemistry and Biochemistry, University of Missouri-St. Louis, Saint Louis, MO 63121, USA.
J Electroanal Chem (Lausanne). 2016 Nov 1;780:311-320. doi: 10.1016/j.jelechem.2016.09.045. Epub 2016 Sep 28.
The interactions of the lectin Concanavalin A (Con A) with self-assembled monolayers (SAMs) of thiolated mono-, di-, and tri-mannosides were studied on the surface of gold wires using electrochemical impedance spectroscopy (EIS). The SAMs of mannosides were prepared either pure or along with thiolated triethylene glycol (TEG) at different molar ratios (1:1, 1:2, 1:4, 1:9, and 1:19) to better understand and optimize the interaction conditions. The charge-transfer resistance of the [Fe(CN)]/ redox probe was compared before and after the interaction at different concentrations of Con A to determine the equilibrium dissociation constant () and limit of detection (LOD). Values of were found in the nanomolar range showing multivalent interactions between mannosides and Con A, and LOD was found ranging from 4-13 nM depending on the type of mannoside SAM used. Analysis using the Hill equation suggests negative cooperativity in the binding behavior. Peanut agglutinin was used as a negative control, and cyclic voltammetry was used to further support the experiments. We have found that neither the pure nor the widely dispersed monolayers of mannosides provide the conditions for optimal binding of Con A. The binding of Con A to these SAMs is sensitive to the molar ratio of the mannoside used to prepare the SAM and to the structure of the mannoside. A simple cleaning method has also been shown to regenerate the used gold wire electrodes. The results from these experiments contribute to the development of simple, cheap, selective, and sensitive EIS-based bioassays, especially for lectin-carbohydrate interactions.
利用电化学阻抗谱(EIS),在金线表面研究了凝集素伴刀豆球蛋白A(Con A)与硫醇化单甘露糖苷、二甘露糖苷和三甘露糖苷自组装单分子层(SAMs)之间的相互作用。制备了纯的甘露糖苷SAMs,或使其与硫醇化三甘醇(TEG)按不同摩尔比(1:1、1:2、1:4、1:9和1:19)混合,以更好地理解和优化相互作用条件。比较了不同浓度Con A相互作用前后[Fe(CN)]/氧化还原探针的电荷转移电阻,以确定平衡解离常数()和检测限(LOD)。发现值在纳摩尔范围内,表明甘露糖苷与Con A之间存在多价相互作用,并且根据所使用的甘露糖苷SAM类型,检测限在4 - 13 nM范围内。使用希尔方程进行分析表明结合行为存在负协同性。使用花生凝集素作为阴性对照,并使用循环伏安法进一步支持实验。我们发现,无论是纯的甘露糖苷单分子层还是广泛分散的甘露糖苷单分子层,都不能提供Con A最佳结合的条件。Con A与这些SAMs的结合对用于制备SAM的甘露糖苷的摩尔比以及甘露糖苷的结构敏感。还展示了一种简单的清洁方法可使使用过的金线电极再生。这些实验结果有助于开发简单、廉价、选择性和灵敏的基于EIS的生物测定方法,特别是用于凝集素 - 碳水化合物相互作用的测定。