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人类蛋白质微阵列的发展进展。

Advances in the development of human protein microarrays.

作者信息

Duarte Jessica G, Blackburn Jonathan M

机构信息

a Cancer Immunobiology Laboratory, Olivia Newton-John Cancer Research Institute/School of Cancer Medicine , La Trobe University , Heidelberg , Australia.

b Institute of Infectious Disease and Molecular Medicine & Department of Integrative Biomedical Sciences, Faculty of Health Sciences , University of Cape Town , Observatory, South Africa.

出版信息

Expert Rev Proteomics. 2017 Jul;14(7):627-641. doi: 10.1080/14789450.2017.1347042.

Abstract

High-content protein microarrays in principle enable the functional interrogation of the human proteome in a broad range of applications, including biomarker discovery, profiling of immune responses, identification of enzyme substrates, and quantifying protein-small molecule, protein-protein and protein-DNA/RNA interactions. As with other microarrays, the underlying proteomic platforms are under active technological development and a range of different protein microarrays are now commercially available. However, deciphering the differences between these platforms to identify the most suitable protein microarray for the specific research question is not always straightforward. Areas covered: This review provides an overview of the technological basis, applications and limitations of some of the most commonly used full-length, recombinant protein and protein fragment microarray platforms, including ProtoArray Human Protein Microarrays, HuProt Human Proteome Microarrays, Human Protein Atlas Protein Fragment Arrays, Nucleic Acid Programmable Arrays and Immunome Protein Arrays. Expert commentary: The choice of appropriate protein microarray platform depends on the specific biological application in hand, with both more focused, lower density and higher density arrays having distinct advantages. Full-length protein arrays offer advantages in biomarker discovery profiling applications, although care is required in ensuring that the protein production and array fabrication methodology is compatible with the required downstream functionality.

摘要

原则上,高内涵蛋白质微阵列能够在广泛的应用中对人类蛋白质组进行功能研究,包括生物标志物发现、免疫反应分析、酶底物鉴定以及蛋白质 - 小分子、蛋白质 - 蛋白质和蛋白质 - DNA/RNA相互作用的定量分析。与其他微阵列一样,基础蛋白质组学平台正在积极进行技术开发,现在有一系列不同的蛋白质微阵列可供商业使用。然而,解读这些平台之间的差异以确定最适合特定研究问题的蛋白质微阵列并非总是易事。涵盖领域:本综述概述了一些最常用的全长、重组蛋白和蛋白片段微阵列平台的技术基础、应用和局限性,包括ProtoArray人类蛋白质微阵列、HuProt人类蛋白质组微阵列、人类蛋白质图谱蛋白片段阵列、核酸可编程阵列和免疫组蛋白质阵列。专家评论:合适的蛋白质微阵列平台的选择取决于手头的特定生物学应用,更具针对性的低密度和高密度阵列都有明显优势。全长蛋白质阵列在生物标志物发现分析应用中具有优势,不过在确保蛋白质生产和阵列制造方法与所需的下游功能兼容方面需要谨慎。

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