Hilleren P, Parker R
Department of Molecular and Cellular Biology, Howard Hughes Medical Institute, University of Arizona, Tucson 85721, USA.
Annu Rev Genet. 1999;33:229-60. doi: 10.1146/annurev.genet.33.1.229.
A conserved mRNA degradation system, referred to as mRNA surveillance, exists in eukaryotic cells to degrade aberrant mRNAs. A defining aspect of aberrant transcripts is that the spatial relationship between the termination codon and specific downstream sequence information has been altered. A key, yet unknown, feature of the mRNA surveillance system is how this spatial relationship is assessed in individual transcripts. Two views have emerged to describe how discrimination between proper and improper termination might occur. In the first view, a surveillance complex assembles onto the mRNA after translation termination, and scans the mRNA in a 3' to 5' direction for a limited distance. If specific downstream sequence information is encountered during this scanning, then the surveillance complex targets the transcript for rapid decay. An alternate view suggests that the downstream sequence information influences how translation termination occurs. This view encompasses several ideas including: (a) The architecture of the mRNP can alter the rate of key steps in translation termination; (b) the discrimination between a proper and improper termination occurs via an internal, Upf1-dependent, timing mechanism; and (c) proper termination results in the restructuring of the mRNP to a form that promotes mRNA stability. This proposed model for mRNA surveillance is similar to other systems of kinetic proofreading that monitor the accuracy of other biogenic processes such as translation and spliceosome assembly.
真核细胞中存在一种保守的mRNA降解系统,称为mRNA监测,用于降解异常mRNA。异常转录本的一个决定性特征是终止密码子与特定下游序列信息之间的空间关系发生了改变。mRNA监测系统的一个关键但未知的特征是如何在单个转录本中评估这种空间关系。关于如何区分正确和不正确的终止出现了两种观点。第一种观点认为,监测复合物在翻译终止后组装到mRNA上,并沿3'到5'方向在有限距离内扫描mRNA。如果在此扫描过程中遇到特定的下游序列信息,那么监测复合物就会将该转录本作为快速降解的目标。另一种观点认为,下游序列信息会影响翻译终止的发生方式。这种观点包含几个观点,包括:(a) mRNP的结构可以改变翻译终止关键步骤的速率;(b) 通过一种内部的、依赖Upf1的计时机制来区分正确和不正确的终止;(c) 正确的终止导致mRNP重组为促进mRNA稳定性的形式。这种提出的mRNA监测模型类似于其他动力学校对系统,这些系统监测其他生物发生过程(如翻译和剪接体组装)的准确性。