Centre for Molecular Medicine and Therapeutics at the Child and Family Research Institute, Department of Medical Genetics, University of British Columbia, 950 West 28th Avenue, Vancouver, BC V5Z 4H4, Canada.
Genome Med. 2011 Oct 10;3(10):65. doi: 10.1186/gm281.
Functional contributions of cis-regulatory sequence variations to human genetic disease are numerous. For instance, disrupting variations in a HNF4A transcription factor binding site upstream of the Factor IX gene contributes causally to hemophilia B Leyden. Although clinical genome sequence analysis currently focuses on the identification of protein-altering variation, the impact of cis-regulatory mutations can be similarly strong. New technologies are now enabling genome sequencing beyond exomes, revealing variation across the non-coding 98% of the genome responsible for developmental and physiological patterns of gene activity. The capacity to identify causal regulatory mutations is improving, but predicting functional changes in regulatory DNA sequences remains a great challenge. Here we explore the existing methods and software for prediction of functional variation situated in the cis-regulatory sequences governing gene transcription and RNA processing.
顺式调控序列变异对人类遗传疾病的功能贡献是众多的。例如,破坏凝血因子 IX 基因上游转录因子 HNF4A 结合位点的变异会导致莱顿血友病 B。尽管临床基因组序列分析目前专注于鉴定导致蛋白质改变的变异,但顺式调控突变的影响也可能同样强烈。新技术现在使基因组测序超越外显子组成为可能,揭示了负责基因活性发育和生理模式的非编码基因组的 98%的变异。鉴定因果调控突变的能力在不断提高,但预测调控 DNA 序列中的功能变化仍然是一个巨大的挑战。在这里,我们探索了现有的方法和软件,用于预测位于调控基因转录和 RNA 加工的顺式调控序列中的功能变异。