Nalband Danielle M, Warner Benjamin P, Zahler Nathan H, Kirshenbaum Kent
Department of Chemistry, New York University, New York, NY, 10003.
Biopolymers. 2014 Sep;102(5):407-15. doi: 10.1002/bip.22528.
N-Substituted glycine peptoid oligomers have recently attracted attention for their metal binding capabilities. Due to their efficient synthesis on solid phase, peptoids are well suited for generation of compound libraries, followed by screening for molecular recognition and other diverse functional attributes. Ideally, peptoids could be simultaneously screened for binding to a number of metal species. Here, we demonstrate the use of bench-top X-ray fluorescence (XRF) instrumentation to screen rapidly, on solid support, a library of peptoid oligomers incorporating metal-binding functionalities. A subset of the peptoid sequences exhibited significant metal binding capabilities, including a peptoid pentamer and a nonamer that were shown to selectively bind nickel. The binding capabilities were validated by colorimetric assay and by depletion of Ni(2+) ion concentration from solution, establishing bench-top XRF as a rapid, practicable high-throughput screening technique for peptoid oligomers. This protocol will facilitate discovery of metallopeptoids with unique material properties.
N-取代甘氨酸类肽低聚物最近因其金属结合能力而备受关注。由于它们能在固相上高效合成,类肽非常适合用于生成化合物库,随后筛选分子识别及其他各种功能特性。理想情况下,类肽可以同时针对与多种金属物种的结合进行筛选。在此,我们展示了使用台式X射线荧光(XRF)仪器在固相支持物上快速筛选包含金属结合功能的类肽低聚物库。一部分类肽序列表现出显著的金属结合能力,包括一个类肽五聚体和一个九聚体,它们被证明能选择性结合镍。通过比色测定法以及溶液中Ni(2+)离子浓度的消耗验证了结合能力,确立了台式XRF作为一种用于类肽低聚物的快速、实用的高通量筛选技术。该方案将有助于发现具有独特材料特性的金属类肽。