Akopov S B, Chernov I P, Vetchinova A S, Bulanenkova S S, Nikolaev L G
Mol Biol (Mosk). 2007 Sep-Oct;41(5):787-92.
The publication of the human and other metazoan genome sequences opened up the possibility for mapping and analysis of genomic regulatory elements. Unfortunately, experimental data on genomic positions of such sequences as enhancers, silencers, insulators, transcription terminators, and replication origins are very limited, especially at the whole genome level. As most genomic regulatory elements (e.g., enhancers) are generally gene-, tissue-, or cell-specific, the prediction of these elements in silico is often ambiguous. Therefore, the development of high-throughput experimental approaches for identification and mapping of genomic functional elements is highly desirable. In this review we discuss novel approaches to high-throughput experimental identification of mammalian genomes cis-regulatory elements which is a necessary step toward the complete genome annotation.
人类及其他后生动物基因组序列的公布为基因组调控元件的定位和分析开辟了可能性。不幸的是,关于增强子、沉默子、绝缘子、转录终止子和复制起点等序列的基因组位置的实验数据非常有限,尤其是在全基因组水平上。由于大多数基因组调控元件(如增强子)通常是基因、组织或细胞特异性的,因此在计算机上对这些元件的预测往往不明确。因此,非常需要开发用于鉴定和定位基因组功能元件的高通量实验方法。在这篇综述中,我们讨论了高通量实验鉴定哺乳动物基因组顺式调控元件的新方法,这是迈向完整基因组注释的必要步骤。