Gulati A, Mahadevan S
Department of Molecular Reproduction, Development and Genetics, Indian Institute of Science, Bangalore 560 012, India.
J Biosci. 2001 Jun;26(2):193-203. doi: 10.1007/BF02703643.
The beta-glucoside utilization (bgl) genes of Escherichia coli are positively regulated by the product of the bglG gene, which functions as an antiterminator by binding to specific sequences present within the bgl mRNA. BglG is inactivated by phosphorylation in the absence of beta-glucosides by BglF, the bgl-specific component of the phosphotransferase system (PTS). Here, we present evidence for an additional function for BglG, namely the stabilization of the 5' end of the bgl mRNA. Half-life measurements of the promoter-proximal region of the bgl mRNA indicate a five fold enhancement of stability in the presence of active (unphosphorylated) BglG. This enhancement is lost when the binding of BglG to mRNA is prevented by deletion of the binding site. Interestingly, stabilization by BglG does not extend to downstream sequences. The enhanced stability of the upstream sequences suggest that BglG remains bound to its target on the mRNA even after the downstream sequences have been degraded. Implications of these observations for the mechanism of positive regulation of the operon by BglG are discussed.
大肠杆菌的β-葡萄糖苷利用(bgl)基因受bglG基因产物的正调控,bglG基因产物通过与bgl mRNA中存在的特定序列结合而作为抗终止子发挥作用。在没有β-葡萄糖苷的情况下,bglG会被磷酸转移酶系统(PTS)的bgl特异性组分BglF磷酸化而失活。在此,我们提供了bglG的另一种功能的证据,即bgl mRNA 5'端的稳定作用。对bgl mRNA启动子近端区域的半衰期测量表明,在存在活性(未磷酸化)bglG的情况下,稳定性提高了五倍。当通过缺失结合位点阻止bglG与mRNA结合时,这种增强作用消失。有趣的是,bglG介导的稳定性增强并不延伸至下游序列。上游序列稳定性的增强表明,即使下游序列已被降解,bglG仍与mRNA上的靶标结合。本文讨论了这些观察结果对bglG对操纵子进行正调控机制的影响。