Visser Astrid E, Verschure Pernette J, Gommans Willemijn M, Haisma Hidde J, Rots Marianne G
Department of Molecular Genetics, Leiden Institute of Chemistry, University of Leiden, 2300 RA Leiden, The Netherlands.
Adv Genet. 2006;56:131-61. doi: 10.1016/S0065-2660(06)56004-3.
Increasing knowledge about the influence of dysregulated gene expression in causing numerous diseases opens up new possibilities for the development of innovative therapeutics. In this chapter, we first describe different mechanisms of misregulated gene expression resulting in various pathophysiological conditions. Then, an overview is given of different technologies developed to readjust expression levels of genes. One of the most promising upcoming approaches in this respect is the development of engineered zinc-finger transcription factors. Results obtained from modulating endogenous gene expression using such engineered transcription factors are reviewed in depth. Finally, we address possible pitfalls of using such transcriptional targeting approaches at the "chromatin level." We describe aspects of studies at this level that influence successful DNA binding of engineered transcription factors, thereby affecting gene activity. Engineered transcription factors have great promise as potent therapeutics. Moreover, this technology is expected to yield fundamental knowledge about the organization and function of the genome.
对基因表达失调在引发众多疾病中所起作用的认识不断增加,为创新疗法的开发开辟了新的可能性。在本章中,我们首先描述导致各种病理生理状况的基因表达失调的不同机制。然后,概述了为重新调整基因表达水平而开发的不同技术。在这方面最有前景的新兴方法之一是工程化锌指转录因子的开发。深入综述了使用此类工程化转录因子调节内源性基因表达所获得的结果。最后,我们探讨了在“染色质水平”使用此类转录靶向方法可能存在的陷阱。我们描述了这一水平上影响工程化转录因子成功结合DNA从而影响基因活性的研究方面。工程化转录因子作为强效疗法具有巨大潜力。此外,这项技术有望产生关于基因组组织和功能的基础知识。