Kwok T, Yang J, Pittard A J, Wilson T J, Davidson B E
Department of Biochemistry and Molecular Biology, University of Melbourne, Parkville, Victoria, Australia.
Mol Microbiol. 1995 Aug;17(3):471-81. doi: 10.1111/j.1365-2958.1995.mmi_17030471.x.
In Escherichia coli, TyrR represses and activates transcription of operons required for tyrosine, phenylalanine and tryptophan biosynthesis and uptake. The TyrR central domain is homologous with NtrC and some other bacterial regulatory proteins, although TyrR regulates sigma 70, not sigma 54, promoters. We isolated a central domain TyrR mutant (TyrR E274Q) by substitution of a normally conserved amino acid. The mutant was unable to bring about tyrosine-mediated repression of aroF, aroL, tyrB, and tyrP and had diminished capability for tyrosine- and phenylalanine-mediated repression of aroP. In contrast, it was able to effect wild-type levels of phenylalanine-mediated repression of aroG, tryptophan-mediated repression of aroP and transcriptional activation of mtr and tyrP. The binding of purified TyrR E274Q to ATP (a requirement for tyrosine binding) and to the strong TyrR box of tyrP operator DNA were normal, but tyrosine binding and tyrosine-dependent hexamerization were significantly impaired. These properties are consistent with the proposal that self association is essential for tyrosine-mediated repression by TyrR but not for tyrosine- or phenylalanine-mediated activation. E274 of TyrR must participate in either the binding of tyrosine, or the coupling of ATP binding with a conformational change that alters the affinity of the ATP-dependent aromatic amino acid-binding site.
在大肠杆菌中,TyrR可抑制并激活酪氨酸、苯丙氨酸和色氨酸生物合成及摄取所需操纵子的转录。TyrR中央结构域与NtrC及其他一些细菌调节蛋白同源,尽管TyrR调节的是σ70启动子,而非σ54启动子。我们通过替换一个通常保守的氨基酸分离出了一个中央结构域TyrR突变体(TyrR E274Q)。该突变体无法实现酪氨酸介导的对aroF、aroL、tyrB和tyrP的抑制,且对酪氨酸和苯丙氨酸介导的aroP抑制能力减弱。相比之下,它能够实现苯丙氨酸介导的aroG抑制、色氨酸介导的aroP抑制以及mtr和tyrP转录激活的野生型水平。纯化的TyrR E274Q与ATP(酪氨酸结合的必需物质)以及tyrP操纵子DNA的强TyrR框的结合正常,但酪氨酸结合和酪氨酸依赖性六聚化显著受损。这些特性与以下提议一致,即自我缔合对于TyrR介导的酪氨酸抑制至关重要,但对于酪氨酸或苯丙氨酸介导的激活并非必需。TyrR的E274必定参与酪氨酸的结合,或ATP结合与构象变化的偶联,这种构象变化会改变ATP依赖性芳香族氨基酸结合位点的亲和力。