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Expression of the glycolytic gapA operon in Bacillus subtilis: differential syntheses of proteins encoded by the operon

机译:糖浆枯草芽孢杆菌糖浆Gapa操纵子的表达:操纵子编码的蛋白质的差异合成

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Glycolysis is one of the central routes of carbon catabolism in Bacillus subtilis. Several glycolytic enzymes, including the key enzyme glyceraldehyde-3-phosphate dehydrogenase, are encoded in the hexacistronic gapA operon. Expression of this operon is induced by a variety of sugars and amino acids. Under non-inducing conditions, expression is repressed by the CggR repressor protein, the product of the promoter-proximal gene of the operon. Here, it is shown that the amount of glyceraldehyde-3-phosphate dehydrogenase encoded by the second gene of the operon exceeds that of the CggR repressor by about 100-fold. This differential synthesis was attributed to an mRNA processing event that takes place at the 3′ end of the cggR open reading frame and to differential segmental stabilities of the resulting cleavage products. The mRNA specifying the truncated cggR gene is quickly degraded, whereas the downstream processing products encompassing gapA are quite stable. This increased stability is conferred by the presence of a stem–loop structure at the 5′ end of the processed mRNAs. Mutations were introduced in the region of the cleavage site. A mutation affecting the stability of the stem–loop structure immediately downstream of the processing site had two effects. First, the steady-state transcript pattern was drastically shifted towards the primary transcripts; second, the stability of the processed mRNA containing the destabilized stem–loop structure was strongly decreased. This results in a reduction of the amount of glyceraldehyde-3-phosphate dehydrogenase in the cell. It is concluded that mRNA processing is involved in differential syntheses of the proteins encoded by the gapA operon.
机译:糖酵解是碳分解代谢在枯草芽孢杆菌的中心途径之一。几个糖酵解酶,包括关键酶的甘油醛-3-磷酸脱氢酶,被编码在hexacistronic的gapA操纵子。该操纵子的表达受多种糖和氨基酸的诱导。在非诱导条件下,表达受CggR阻抑蛋白抑制,操纵子的启动子附近的基因的产物。在这里,它表明甘油醛-3-磷酸的量脱氢酶由操纵子的第二基因超过了CggR阻遏的约100倍编码。该差动合成归因于在cggR开放阅读框的3'末端和到所得到的裂解产物的差动节段性稳定性发生的mRNA加工事件。 mRNA的指定截断cggR基因快速降解,而下游加工产品涵盖的gapA相当稳​​定。这种增加的稳定性是通过茎 - 环结构中的经处理的mRNA的5'端的存在赋予。突变的切割位点的区域进行了介绍。影响立即加工现场下游的茎环结构的稳定性的突变有两个方面的影响。首先,稳态转录图案急剧移位朝向初级转录物;第二,该加工的mRNA的含有不稳定茎 - 环结构的稳定性强烈降低。这导致减少甘油醛-3-磷酸的量的脱氢酶在细胞中。可以得出结论,mRNA加工参与由操纵子的gapA编码的蛋白质的差动合成。

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