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使用基于凝胶的芯片分析单核苷酸多态性(SNPs)和其他基因组变异。

Analysis of SNPs and other genomic variations using gel-based chips.

作者信息

Kolchinsky Alexander, Mirzabekov Andrei

机构信息

Health Front Line Ltd., Champaign, Illinois, USA.

出版信息

Hum Mutat. 2002 Apr;19(4):343-60. doi: 10.1002/humu.10077.

DOI:10.1002/humu.10077
PMID:11933189
Abstract

Application of microarrays for the analysis of point mutations and SNPs in genomic DNAs is currently under intensive development. Various technologies are being investigated, employing enzymatic, chemical, and physical tools [for review, see Tillib and Mirzabekov, 2001]. Our current approach is based on the use of IMAGE chips (immobilized microarrays of gel elements) consisting of an array of gel pads attached to a hydrophobic glass surface. The gel pads range in size from picoliters to nanoliters and are used for immobilization of oligonucleotide probes, as well as miniature test tubes for chemical or enzymatic reactions with tethered compounds. Nucleic acids are hybridized, fractionated, modified, and subjected to enzymatic reactions inside the pads. All steps of sequence analysis (PCR-amplification, activation or release of primers and products, DNA extension, hybridization, and reading of the results) can be performed within the same pad. A flexible and inexpensive technology platform enables one to monitor processes in the arrays in both real time and steady-state. Identification of SNPs, microsequencing, and other specific tasks are easily performed. In particular, stacking interactions with short oligonucleotides enhance the capability of high-throughput screening. The IMAGE chips can be analyzed using a variety of equipment, from a dedicated multi-color fluorescent microscope or MALDI-spectrometer to an inexpensive portable analyzer suitable for field conditions. Customized gel-based chips were successfully used for screening of SNPs in a broad range of biologically meaningful genes.

摘要

目前,微阵列技术在基因组DNA点突变和单核苷酸多态性(SNP)分析中的应用正处于深入发展阶段。人们正在研究各种技术,包括酶促、化学和物理工具[综述见Tillib和Mirzabekov,2001年]。我们目前的方法基于使用IMAGE芯片(凝胶元件固定微阵列),它由附着在疏水玻璃表面的一系列凝胶垫组成。凝胶垫的大小从皮升至纳升不等,用于固定寡核苷酸探针,以及作为与连接化合物进行化学或酶促反应的微型试管。核酸在凝胶垫内进行杂交、分级分离、修饰以及酶促反应。序列分析的所有步骤(PCR扩增、引物和产物的激活或释放、DNA延伸、杂交以及结果读取)都可以在同一个凝胶垫内完成。一个灵活且廉价的技术平台使人们能够实时和稳态监测阵列中的过程。SNP的鉴定、微测序和其他特定任务都很容易完成。特别是,与短寡核苷酸的堆积相互作用增强了高通量筛选的能力。IMAGE芯片可以使用各种设备进行分析,从专用的多色荧光显微镜或基质辅助激光解吸电离质谱仪到适合现场条件的廉价便携式分析仪。定制的基于凝胶的芯片已成功用于筛选广泛的具有生物学意义的基因中的SNP。

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