Bukau B, Ehrmann M, Boos W
J Bacteriol. 1986 Jun;166(3):884-91. doi: 10.1128/jb.166.3.884-891.1986.
The maltose regulon consists of four operons that direct the synthesis of proteins required for the transport and metabolism of maltose and maltodextrins. Expression of the mal genes is induced by maltose and maltodextrins and is dependent on a specific positive regulator, the MalT protein, as well as on the cyclic AMP-catabolite gene activator protein complex. In the absence of an exogenous inducer, expression of the mal regulon was greatly reduced when the osmolarity of the growth medium was high; maltose-induced expression was not affected, and malTc-dependent expression was only weakly affected. Mutants lacking MalK, a cytoplasmic membrane protein required for maltose transport, expressed the remaining mal genes at a high level, presumably because an internal inducer of the mal system accumulated; this expression was also strongly repressed at high osmolarity. The repression of mal regulon expression at high osmolarity was not caused by reduced expression of the malT, envZ, or crp gene or by changes in cellular cyclic AMP levels. In strains carrying mutations in genes encoding amylomaltase (malQ), maltodextrin phosphorylase (malP), amylase (malS), or glycogen (glg), malK mutations still led to elevated expression at low osmolarity. The repression at high osmolarity no longer occurred in malQ mutants, however, provided that glycogen was present.
麦芽糖调节子由四个操纵子组成,这些操纵子指导麦芽糖和麦芽糊精运输及代谢所需蛋白质的合成。mal基因的表达由麦芽糖和麦芽糊精诱导,并且依赖于一种特定的正调节因子——MalT蛋白,以及环腺苷酸 - 分解代谢基因激活蛋白复合物。在没有外源诱导剂的情况下,当生长培养基的渗透压较高时,mal调节子的表达会大大降低;麦芽糖诱导的表达不受影响,而依赖MalTc的表达仅受到微弱影响。缺乏MalK(麦芽糖运输所需的一种细胞质膜蛋白)的突变体高水平表达其余的mal基因,推测是因为mal系统的一种内部诱导剂积累;这种表达在高渗透压下也受到强烈抑制。高渗透压下mal调节子表达的抑制不是由malT、envZ或crp基因表达降低或细胞内环腺苷酸水平变化引起的。在编码淀粉麦芽糖酶(malQ)、麦芽糊精磷酸化酶(malP)、淀粉酶(malS)或糖原(glg)的基因发生突变的菌株中,malK突变在低渗透压下仍导致表达升高。然而,在malQ突变体中,如果存在糖原,则不再发生高渗透压下的抑制作用。