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Spatially addressed combinatorial protein libraries for recombinant antibody discovery and optimization.用于重组抗体发现和优化的空间寻址组合蛋白文库。
Nat Biotechnol. 2010 Nov;28(11):1195-202. doi: 10.1038/nbt.1694. Epub 2010 Oct 24.
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Screening small-molecule compound microarrays for protein ligands without fluorescence labeling with a high-throughput scanning microscope.利用高通量扫描显微镜对小分子化合物微阵列进行无荧光标记的蛋白质配体筛选。
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Profiling human serum antibodies with a carbohydrate antigen microarray.使用碳水化合物抗原微阵列分析人血清抗体。
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Macromolecular scaffolds for immobilizing small molecule microarrays in label-free detection of protein-ligand interactions on solid support.用于在固体支持物上无标记检测蛋白质 - 配体相互作用时固定小分子微阵列的大分子支架。
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Protein reactions with surface-bound molecular targets detected by oblique-incidence reflectivity difference microscopes.通过斜入射反射率差显微镜检测蛋白质与表面结合分子靶点的反应。
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Label-free and dynamic detection of biomolecular interactions for high-throughput microarray applications.用于高通量微阵列应用的生物分子相互作用的无标记动态检测。
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A novel high-throughput scanning microscope for label-free detection of protein and small-molecule chemical microarrays.一种用于无标记检测蛋白质和小分子化学微阵列的新型高通量扫描显微镜。
Rev Sci Instrum. 2008 Jan;79(1):013708. doi: 10.1063/1.2830286.
9
Impact of hapten presentation on antibody binding at lipid membrane interfaces.半抗原呈递对脂质膜界面处抗体结合的影响。
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Quantitative analysis of carbohydrate-protein interactions using glycan microarrays: determination of surface and solution dissociation constants.使用聚糖微阵列对碳水化合物-蛋白质相互作用进行定量分析:表面和解离常数的测定。
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使用基于微阵列的动力学常数测定法同时测量10,000个蛋白质-配体亲和常数。

Simultaneous measurement of 10,000 protein-ligand affinity constants using microarray-based kinetic constant assays.

作者信息

Landry James P, Fei Yiyan, Zhu Xiangdong

机构信息

Department of Physics, University of California at Davis, Davis, CA 95616, USA.

出版信息

Assay Drug Dev Technol. 2012 Jun;10(3):250-9. doi: 10.1089/adt.2011.0406. Epub 2011 Dec 22.

DOI:10.1089/adt.2011.0406
PMID:22192305
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3374384/
Abstract

Fluorescence-based endpoint detection of microarrays with 10,000 or more molecular targets is a most useful tool for high-throughput profiling of biomolecular interactions, including screening large molecular libraries for novel protein ligands. However, endpoint fluorescence data such as images of reacted microarrays contain little information on kinetic rate constants, and the reliability of endpoint data as measures of binding affinity depends on reaction conditions and postreaction processing. We here report a simultaneous measurement of binding curves of a protein probe with 10,000 molecular targets in a microarray with an ellipsometry-based (label-free) optical scanner. The reaction rate constants extracted from these curves (k(on), k(off), and k(a)=k(on)/k(off)) are used to characterize the probe-target interactions instead of the endpoints. This work advances the microarray technology to a new milestone, namely, from an endpoint assay to a kinetic constant assay platform. The throughput of this binding curve assay platform is comparable to those at the National Institutes of Health Molecular Library Screening Centers, making it a practical method in screening compound libraries for novel ligands and for system-wide affinity profiling of proteins, viruses, or whole cells against diverse molecular targets.

摘要

基于荧光的、针对含有一万个或更多分子靶点的微阵列进行的终点检测,是用于高通量分析生物分子相互作用的极为有用的工具,包括筛选大型分子文库以寻找新型蛋白质配体。然而,诸如反应后的微阵列图像之类的终点荧光数据几乎不包含有关动力学速率常数的信息,并且终点数据作为结合亲和力度量的可靠性取决于反应条件和反应后处理。我们在此报告了一种在基于椭圆偏振光法(无标记)的光学扫描仪的微阵列中,同时测量蛋白质探针与一万个分子靶点的结合曲线的方法。从这些曲线中提取的反应速率常数(k(on)、k(off)以及k(a)=k(on)/k(off))用于表征探针 - 靶点相互作用,而非终点。这项工作将微阵列技术推进到了一个新的里程碑,即从终点测定法转变为动力学常数测定平台。这种结合曲线测定平台的通量与美国国立卫生研究院分子文库筛选中心的通量相当,使其成为筛选化合物文库以寻找新型配体以及对蛋白质、病毒或全细胞针对多种分子靶点进行全系统亲和力分析的实用方法。