...
首页> 外文期刊>RNA >Regulation of release factor expression using a translational negative feedback loop: A systems analysis
【24h】

Regulation of release factor expression using a translational negative feedback loop: A systems analysis

机译:使用翻译负反馈回路调节释放因子表达:系统分析

获取原文
获取原文并翻译 | 示例
           

摘要

The essential eukaryote release factor eRF1, encoded by the yeast SUP45 gene, recognizes stop codons during ribosomal translation. SUP45 nonsense alleles are, however, viable due to the establishment of feedback-regulated readthrough of the premature termination codon; reductions in full-length eRF1 promote tRNA-mediated stop codon readthrough, which, in turn, drives partial production of full-length eRF1. A deterministic mathematical model of this eRF1 feedback loop was developed using a staged increase in model complexity. Model predictions matched the experimental observation that strains carrying the mutant SUQ5 tRNA (a weak UAA suppressor) in combination with any of the tested sup45UAA nonsense alleles exhibit threefold more stop codon readthrough than that of an SUQ5 yeast strain. The model also successfully predicted that eRF1 feedback control in an SUQ5 sup45UAA mutant would resist, but not completely prevent, imposed changes in eRF1 expression. In these experiments, the introduction of a plasmid-borne SUQ5 copy into a sup45UAA SUQ5 mutant directed additional readthrough and full-length eRF1 expression, despite feedback. Secondly, induction of additional sup45 UAA mRNA expression in a sup45UAASUQ5 strain also directed increased full-length eRF1 expression. The autogenous sup45 control mechanism therefore acts not to precisely control eRF1 expression, but rather as a damping mechanism that only partially resists changes in release factor expression level. The validated model predicts that the degree of feedback damping (i.e., control precision) is proportional to eRF1 affinity for the premature stop codon. The validated model represents an important tool to analyze this and other translational negative feedback loops.
机译:酵母SUP45基因编码的必需真核生物释放因子eRF1在核糖体翻译过程中识别终止密码子。然而,由于建立了反馈调控的过早终止密码子的通读,SUP45的无意义等位基因是可行的。全长eRF1的减少会促进tRNA介导的终止密码子通读,进而驱动全长eRF1的部分产生。使用逐步增加的模型复杂性,开发了此eRF1反馈回路的确定性数学模型。模型预测与实验观察结果相符,即携带突变SUQ5 tRNA(弱UAA抑制剂)的菌株与任何经测试的sup45UAA无义等位基因结合的菌株显示的终止密码子通读比SUQ5酵母菌株高三倍。该模型还成功预测SUQ5 sup45UAA突变体中的eRF1反馈控制将抵抗但不能完全阻止eRF1表达的强加变化。在这些实验中,尽管有反馈,但将质粒携带的SUQ5拷贝引入sup45UAA SUQ5突变体可指导其他通读和全长eRF1表达。其次,在sup45UAASUQ5菌株中诱导额外的sup45 UAA mRNA表达也指导全长eRF1表达的增加。因此,自发性sup45控制机制的作用不是精确控制eRF1的表达,而是作为仅部分抵抗释放因子表达水平变化的阻尼机制。经过验证的模型预测,反馈阻尼的程度(即控制精度)与eRF1对提前终止密码子的亲和力成正比。经过验证的模型代表了一个重要工具,可以分析此负反馈平移负反馈回路。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号