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Molecular analysis of the glucose-specific phosphoenolpyruvate?:?sugar phosphotransferase system from Lactobacillus casei and its links with the control of sugar metabolism

机译:葡萄糖特异性磷酸丙酮酸的分子分析?:α:糖磷脂硅酸盐酶系统来自乳酸杆菌酪虫及其与糖代谢的控制联系

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Lactobacillus casei transports glucose preferentially by a mannose-class phosphoenolpyruvate?:?sugar phosphotransferase system (PTS). The genomic analysis of L. casei allowed the authors to find a gene cluster (manLMNO) encoding the IIAB (manL), IIC (manM) and IID (manN) proteins of a mannose-class PTS, and a putative 121?aa protein of unknown function (encoded by manO), homologues of which are also present in man clusters that encode glucose/mannose transporters in other Gram-positive bacteria. The L. casei man operon is constitutively expressed into a manLMNO messenger, but an additional manO transcript was also detected. Upstream of the man operon, two genes (upsR and upsA) were found which encode proteins resembling a transcriptional regulator and a membrane protein, respectively. Disruption of either upsR or upsA did not affect manLMNO transcription, and had no effect on glucose uptake. Cells carrying a manO deletion transported glucose at a rate similar to that of the wild-type strain. By contrast, a manM disruption resulted in cells unable to transport glucose by the PTS, thus confirming the functional role of the man genes. In addition, the manM mutant exhibited neither inducer exclusion of maltose nor glucose repression. This result confirms the need for glucose transport through the PTS to trigger these regulatory processes in L. casei.
机译:乳酸杆菌酪蛋白通过甘露糖类磷酸丙糖醛酸酯α:α:糖磷酸转移酶系统(PTS)。 L. casei的基因组分析允许作者找到编码IAB(MANL),IIC(MANM)和IID(MANN)PTS的IIAIAS(MANM)和IID(MANN)蛋白的基因簇(MANLMNO),以及占地面积的121?AA蛋白未知功能(Mano编码),其同源物也存在于在其他革兰氏阳性细菌中编码葡萄糖/甘露糖转运蛋白的人群中。 L. SIASI MAMORMOLON组成型式表达到MANLMNO信使中,但也检测到额外的MANO转录物。在Man操纵子的上游,发现两个基因(UPSR和UPSA),分别编码类似转录调节剂的蛋白质和膜蛋白。 upsr或upsa的破坏并没有影响manlmno转录,对葡萄糖摄取没有影响。携带马诺缺失的细胞以类似于野生型菌株的速率运输葡萄糖。相比之下,人马破坏导致细胞不能通过PTS运输葡萄糖,从而证实了人类基因的功能作用。此外,人类突变体既没有诱导麦芽糖排除,也没有葡萄糖抑制。该结果证实需要通过PTS通过PTS引发L.酪虫的这些调节过程。

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