Marianovsky I, Aizenman E, Engelberg-Kulka H, Glaser G
Department of Cellular Biochemistry, Hebrew University-Hadassah Medical School, Ein Kerem, Jerusalem, 91120 Israel.
J Biol Chem. 2001 Feb 23;276(8):5975-84. doi: 10.1074/jbc.M008832200. Epub 2000 Nov 8.
The Escherichia coli mazEF system is a chromosomal "addiction module" that, under starvation conditions in which guanosine-3',5'-bispyrophosphate (ppGpp) is produced, is responsible for programmed cell death. This module specifies for the toxic stable protein MazF and the labile antitoxic protein MazE. Upstream from the mazEF module are two promoters, P(2) and P(3) that are strongly negatively autoregulated by MazE and MazF. We show that the expression of this module is positively regulated by the factor for inversion stimulation. What seems to be responsible for the negative autoregulation of mazEF is an unusual DNA structure, which we have called an "alternating palindrome." The middle part, "a," of this structure may complement either the downstream fragment, "b," or the upstream fragment, "c". When the MazE.MazF complex binds either of these arms of the alternating palindrome, strong negative autoregulation results. We suggest that the combined presence of the two promoters, the alternating palindrome structure and the factor for inversion stimulation-binding site, all permit the expression of the mazEF module to be sensitively regulated under various growth conditions.
大肠杆菌mazEF系统是一种染色体“成瘾模块”,在产生鸟苷-3',5'-双焦磷酸(ppGpp)的饥饿条件下,负责程序性细胞死亡。该模块编码有毒的稳定蛋白MazF和不稳定的抗毒蛋白MazE。在mazEF模块上游有两个启动子P(2)和P(3),它们受到MazE和MazF的强烈负向自动调节。我们发现该模块的表达受到倒位刺激因子的正向调节。似乎负责mazEF负向自动调节的是一种不寻常的DNA结构,我们称之为“交替回文”。这种结构的中间部分“a”可以与下游片段“b”或上游片段“c”互补。当MazE.MazF复合物结合交替回文的任何一个臂时,就会导致强烈的负向自动调节。我们认为,两个启动子、交替回文结构和倒位刺激因子结合位点的共同存在,使得mazEF模块的表达能够在各种生长条件下受到灵敏调节。