Brant-Zawadzki Peter B, Schmid Douglas I, Jiang Huimao, Weyrich Andrew S, Zimmerman Guy A, Kraiss Larry W
Division of Vascular Surgery, Department of Surgery, University of Utah, Salt Lake City, Utah 84132, USA.
J Vasc Surg. 2007 Jun;45 Suppl A(Suppl A):A8-14. doi: 10.1016/j.jvs.2007.02.033.
Cellular phenotype and function is ultimately determined by the synthesis of proteins derived from a genetic blueprint. Control of gene expression occurs at multiple checkpoints, including the transcription of DNA into RNA and the translation of RNA into protein. Translational control mechanisms are important regulators of cellular phenotype, controlling up to 10% of overall cellular gene expression, yet they remain relatively understudied when compared with transcriptional control mechanisms. Specific regulation of protein synthesis from messenger RNA transcripts allows cells to temporally unlink translation from transcription and provides a mechanism for a more rapid response to environmental signals than if transcription were required. We discuss some of the fundamental concepts of translational control, tools for studying it and its relevance to vascular cells, in particular the endothelium.
细胞表型和功能最终由源自基因蓝图的蛋白质合成所决定。基因表达的控制发生在多个检查点,包括将DNA转录为RNA以及将RNA翻译为蛋白质。翻译控制机制是细胞表型的重要调节因子,控制着高达10%的整体细胞基因表达,但与转录控制机制相比,它们仍相对较少被研究。信使RNA转录本的蛋白质合成的特定调节使细胞能够在时间上使翻译与转录脱钩,并提供了一种比需要转录时更快响应环境信号的机制。我们讨论了翻译控制的一些基本概念、研究它的工具及其与血管细胞特别是内皮细胞的相关性。