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在剪切键位点的碱基取代足以改变 RNase III 的 RNA 结合和切割活性。

Base substitutions at scissile bond sites are sufficient to alter RNA-binding and cleavage activity of RNase III.

机构信息

Department of Life Sciences (BK21 program), Chung-Ang University, Seoul, Korea.

出版信息

FEMS Microbiol Lett. 2011 Feb;315(1):30-7. doi: 10.1111/j.1574-6968.2010.02169.x. Epub 2010 Dec 6.

Abstract

RNase III, a double-stranded RNA-specific endoribonuclease, degrades bdm mRNA via cleavage at specific sites. To better understand the mechanism of cleavage site selection by RNase III, we performed a genetic screen for sequences containing mutations at the bdm RNA cleavage sites that resulted in altered mRNA stability using a transcriptional bdm'-'cat fusion construct. While most of the isolated mutants showed the increased bdm'-'cat mRNA stability that resulted from the inability of RNase III to cleave the mutated sequences, one mutant sequence (wt-L) displayed in vivo RNA stability similar to that of the wild-type sequence. In vivo and in vitro analyses of the wt-L RNA substrate showed that it was cut only once on the RNA strand to the 5'-terminus by RNase III, while the binding constant of RNase III to this mutant substrate was moderately increased. A base substitution at the uncleaved RNase III cleavage site in wt-L mutant RNA found in another mutant lowered the RNA-binding affinity by 11-fold and abolished the hydrolysis of scissile bonds by RNase III. Our results show that base substitutions at sites forming the scissile bonds are sufficient to alter RNA cleavage as well as the binding activity of RNase III.

摘要

RNase III 是一种双链 RNA 特异性内切核酸酶,通过在特定位点切割降解 bdm mRNA。为了更好地理解 RNase III 切割位点选择的机制,我们利用转录 bdm'-'cat 融合构建体,针对 bdm RNA 切割位点发生突变的序列进行了遗传筛选,这些突变导致 mRNA 稳定性发生改变。虽然大多数分离的突变体显示出 bdm'-'cat mRNA 稳定性增加,这是由于 RNase III 无法切割突变序列所致,但一个突变序列(wt-L)在体内的 RNA 稳定性与野生型序列相似。对 wt-L RNA 底物的体内和体外分析表明,RNase III 仅在 RNA 链上以 5'-末端一次切割该序列,而 RNase III 与该突变底物的结合常数适度增加。在另一个突变体中发现的 wt-L 突变 RNA 中未切割的 RNase III 切割位点的碱基取代使 RNA 结合亲和力降低了 11 倍,并使 RNase III 对裂解键的水解作用消失。我们的结果表明,形成裂解键的位点的碱基取代足以改变 RNA 的切割以及 RNase III 的结合活性。

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