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Genomics in the immune system.

机译:免疫系统中的基因组学。

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摘要

The analysis of gene expression in tissues, cells, and biologic systems has evolved in the last decade from the analysis of a selected set of genes to an efficient high throughput whole-genome screening approach of potentially all genes expressed in a tissue or cell sample. Development of sophisticated methodologies such as microarray technology allows an open-ended survey to identify comprehensively the fraction of genes that are differentially expressed between samples and define the samples' unique biology. This discovery-based research provides the opportunity to characterize either new genes with unknown function or genes not previously known to be involved in a biologic process. The latter category may hold surprises that sometimes urge us to redirect our thinking. Here, we review the impact of large-scale gene expression profiling by DNA-microarray technology on basic and clinical aspects of immunology.
机译:在过去的十年中,对组织,细胞和生物系统中基因表达的分析已从对一组选定基因的分析发展为对组织或细胞样品中可能表达的所有基因进行高效高通量全基因组筛选的方法。诸如微阵列技术之类的复杂方法的发展使开放式调查能够全面识别样品之间差异表达的基因部分,并定义样品的独特生物学特性。这项基于发现的研究提供了机会来鉴定功能未知的新基因或以前未知参与生物过程的基因。后一类可能会带来一些惊喜,有时会促使我们改变思维方式。在这里,我们审查了DNA基因芯片技术对免疫学的基础和临床方面的大规模基因表达谱的影响。

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