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C/EBP 的转录和翻译控制:理解生理功能需要“深入”遗传学的案例。

Transcriptional and translational control of C/EBPs: the case for "deep" genetics to understand physiological function.

机构信息

Institute for Stem Cell Research, MRC Centre for Regenerative Medicine, University of Edinburgh, Edinburgh, UK.

出版信息

Bioessays. 2010 Aug;32(8):680-6. doi: 10.1002/bies.201000004.

Abstract

The complexity of organisms is not simply determined by the number of their genes, but to a large extent by how gene expression is controlled. In addition to transcriptional regulation, this involves several layers of post-transcriptional control, such as translational repression, microRNA-mediated mRNA degradation and translational inhibition, alternative splicing, and the regulated generation of functionally distinct gene products from a single mRNA through alternative use of translation initiation sites. Much progress has been made in describing the molecular basis for these gene regulatory mechanisms. However, it is now a major challenge to translate this knowledge into deeper understanding of the physiological processes, both normal and pathological, that they govern. Using the C/EBP family of transcription factors as an example, the present review describes recent genetic experiments addressing this general problem and discusses how the physiological importance of newly discovered regulatory mechanisms might be determined.

摘要

生物体的复杂性不仅取决于其基因数量,在很大程度上还取决于基因表达的控制方式。除了转录调控外,这还涉及几个层次的转录后调控,如翻译抑制、miRNA 介导的 mRNA 降解和翻译抑制、选择性剪接,以及通过选择性使用翻译起始位点从单个 mRNA 产生具有不同功能的基因产物。在描述这些基因调控机制的分子基础方面已经取得了很大进展。然而,如何将这些知识转化为对它们所调控的正常和病理生理过程的更深入理解,是一个主要的挑战。本文以 C/EBP 家族转录因子为例,描述了最近针对这一普遍问题的遗传实验,并讨论了如何确定新发现的调控机制的生理重要性。

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