Baker Kristian E, Mackie George A
Department of Biochemistry and Molecular Biology, University of British Columbia, Vancouver, BC, Canada V6T 1Z3.
Mol Microbiol. 2003 Jan;47(1):75-88. doi: 10.1046/j.1365-2958.2003.03292.x.
In Escherichia coli, 5'-terminal stem-loops form major impediments to mRNA decay, yet conditions that determine their effectiveness or the use of alternative decay pathway(s) are unclear. A synthetic 5'-terminal hairpin stabilizes the rpsT mRNA sixfold. This stabilization is dependent on efficient translational initiation and ribosome transit through at least two-thirds of the coding sequence past a major RNase E cleavage site in the rpsT mRNA. Insertion of a 12-15 residue 'ectopic' RNase E cleavage site from either the rne leader or 9S pre-rRNA into the 5'-non-coding region of the rpsT mRNA significantly reduces the stabilizing effect of the terminal stem-loop, dependent on RNase E. A similar insertion into the rpsT coding sequence is partially destabilizing. These findings demonstrate that RNase E can bypass an interaction with the 5'-terminus, and exploit an alternative 'internal entry' pathway. We propose a model for degradation of the rpsT mRNA, which explains the hierarchy of protection afforded by different 5'-termini, the use of internal entry for bypass of barriers to decay, 'ectopic sites' and the role of translating ribosomes.
在大肠杆菌中,5' 端茎环结构是mRNA降解的主要障碍,但决定其有效性的条件或替代降解途径的使用尚不清楚。一个合成的5' 端发夹结构使rpsT mRNA的稳定性提高了六倍。这种稳定性依赖于有效的翻译起始以及核糖体通过rpsT mRNA中一个主要的核糖核酸酶E切割位点后至少三分之二的编码序列。将来自rne前导序列或9S前体rRNA的12 - 15个残基的“异位”核糖核酸酶E切割位点插入rpsT mRNA的5' 非编码区,会显著降低末端茎环的稳定作用,且依赖于核糖核酸酶E。类似地插入rpsT编码序列会部分地使其不稳定。这些发现表明核糖核酸酶E可以绕过与5' 端的相互作用,并利用一种替代的“内部进入”途径。我们提出了一个rpsT mRNA降解的模型,该模型解释了不同5' 端提供的保护等级、利用内部进入来绕过降解障碍、“异位位点”以及翻译核糖体的作用。