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The aprE leader is a determinant of extreme mRNA stability in Bacillus subtilis

机译:APRE领导者是枯草芽孢杆菌极端mRNA稳定性的决定因素

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The Bacillus subtilis aprE gene encodes subtilisin, an extracellular proteolytic enzyme produced in stationary phase. The authors examined the stability of aprE mRNA and aprE leader–lacZ fusion mRNA. Both mRNAs were found to be unusually stable, with half-lives longer than 25 min, demonstrating that the aprE leader contains a determinant for extreme mRNA stability. The half-lives were the same in growing and stationary-phase cells. This contrasts with the findings of O. Resnekov et al. (1990)R31[Proc Natl Acad Sci USA 87, 8355–8359], which suggested a growth-phase-dependent mechanism for decay of aprE mRNA. The discrepancy is explained by the techniques used. Substitution of two bases or deletion of 25 nucleotides in the aprE leader led to a major difference in its predicted secondary structure and resulted in a fivefold reduction of the half-life of aprE mRNA. The authors also determined the half-life of amyE mRNA, which encodes α-amylase, another stationary-phase, excreted enzyme and found it to be around 5?min. This shows that extreme stability is not a general property of stationary-phase mRNAs encoding excreted enzymes.
机译:枯草芽孢杆菌APRE基因编码枯草杆菌蛋白酶,在固定相中产生的细胞外蛋白水解酶。作者检测了APRE mRNA和APRE Leader-Lacz融合mRNA的稳定性。发现两个MRNA都是异常稳定的,半衰期超过25分钟,表明APRE负责人含有极端mRNA稳定性的决定因素。生长和静止相细胞中的半衰期是相同的。这与O. Resnekov等人的结果形成鲜明对比。 (1990)R31 [PROC NATL ACAD SCI USA 87,8355-8359],这表明APRE mRNA衰减的生长相位依赖机制。使用的技术解释了差异。在APRE领导者中取代两种碱基或缺失25个核苷酸导致其预测的二级结构的主要差异,并导致APRE mRNA半衰期的五倍降低。作者还确定了amye mRNA的半衰期,其编码α-淀粉酶,另一个固定相,排出的酶,发现它约为5?min。这表明极端稳定性不是编码排泄酶的固定相MRNA的一般性质。

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