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基于水凝胶的蛋白质微芯片:制造、特性及应用

Hydrogel-based protein microchips: manufacturing, properties, and applications.

作者信息

Rubina A Yu, Dementieva E I, Stomakhin A A, Darii E L, Pan'kov S V, Barsky V E, Ivanov S M, Konovalova E V, Mirzabekov A D

机构信息

Russian Academy of Sciences, Moscow, Russia.

出版信息

Biotechniques. 2003 May;34(5):1008-14, 1016-20, 1022. doi: 10.2144/03345rr01.

Abstract

Here a simple, reproducible, and versatile method is described for manufacturing protein and ligand chips. The photo-induced copolymerization of acrylamide-based gel monomers with different probes (oligonucleotides, DNA, proteins, and low-molecular ligands) modified by the introduction of methacrylic groups takes place in drops on a glass or silicone surface. All probes are uniformly and chemically fixed with a high yield within the whole volume of hydrogel semispherical chip elements that are chemically attached to the surface. Purified enzymes, antibodies, antigens, and other proteins, as well as complex protein mixtures such as cell lysates, were immobilized on a chip. Avidin- and oligohistidine-tagged proteins can be immobilized within biotin- and Ni-nitrilotriacetic acid-modified gel elements. Most gel-immobilized proteins maintain their biological properties for at least six months. Fluorescence and chemiluminescence microscopy were used as efficient methods for the quantitative analysis of the microchips. Direct on-chip matrix-assisted laser desorption ionization-time of flight mass spectrometry was used for the qualitative identification of interacting molecules and to analyze tryptic peptides after the digestion of proteins in individual gel elements. We also demonstrate other useful properties of protein microchips and their application to proteomics and diagnostics.

摘要

本文描述了一种用于制造蛋白质和配体芯片的简单、可重复且通用的方法。通过引入甲基丙烯酸基团进行修饰的丙烯酰胺基凝胶单体与不同探针(寡核苷酸、DNA、蛋白质和低分子配体)的光诱导共聚反应在玻璃或硅表面的液滴中发生。所有探针均以高产率均匀地化学固定在化学附着于表面的水凝胶半球形芯片元件的整个体积内。纯化的酶、抗体、抗原和其他蛋白质,以及诸如细胞裂解物等复杂蛋白质混合物被固定在芯片上。带有抗生物素蛋白和寡聚组氨酸标签的蛋白质可以固定在生物素和镍-次氮基三乙酸修饰的凝胶元件内。大多数固定在凝胶上的蛋白质至少能保持六个月的生物学特性。荧光和化学发光显微镜被用作微芯片定量分析的有效方法。直接芯片上基质辅助激光解吸电离飞行时间质谱用于相互作用分子的定性鉴定以及分析单个凝胶元件中蛋白质消化后的胰蛋白酶肽段。我们还展示了蛋白质微芯片的其他有用特性及其在蛋白质组学和诊断中的应用。

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