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Characterization of a Two-Component Regulatory System That Regulates Succinate-Mediated Catabolite Repression in Sinorhizobium meliloti▿ †

机译:调节琥珀酸根瘤菌中琥珀酸介导的分解代谢物阻遏作用的两组分调节系统的表征

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摘要

When they are available, Sinorhizobium meliloti utilizes C4-dicarboxylic acids as preferred carbon sources for growth while suppressing the utilization of some secondary carbon sources such as α- and β-galactosides. The phenomenon of using succinate as the sole carbon source in the presence of secondary carbon sources is termed succinate-mediated catabolite repression (SMCR). Genetic screening identified the gene sma0113 as needed for strong SMCR when S. meliloti was grown in succinate plus lactose, maltose, or raffinose. sma0113 and the gene immediately downstream, sma0114, encode the proteins Sma0113, an HWE histidine kinase with five PAS domains, and Sma0114, a CheY-like response regulator lacking a DNA-binding domain. sma0113 in-frame deletion mutants show a relief of catabolite repression compared to the wild type. sma0114 in-frame deletion mutants overproduce polyhydroxybutyrate (PHB), and this overproduction requires sma0113. Sma0113 may use its five PAS domains for redox level or energy state monitoring and use that information to regulate catabolite repression and related responses.
机译:当它们存在时,苜蓿中华根瘤菌利用C4-二羧酸作为生长的首选碳源,同时抑制了某些次级碳源(例如α-和β-半乳糖苷)的利用。在存在次级碳源的情况下使用琥珀酸作为唯一碳源的现象称为琥珀酸介导的分解代谢物阻抑(SMCR)。遗传筛选确定了当苜蓿链球菌在琥珀酸加乳糖,麦芽糖或棉子糖中生长时,sma0113基因是强SMCR所需要的。 sma0113和紧接下游的基因sma0114编码蛋白质Sma0113(一种具有五个PAS域的HWE组氨酸激酶)和Sma0114(一种缺乏DNA结合域的CheY样应答调节剂)。与野生型相比,sma0113框内缺失突变体显示出分解代谢物阻遏的减轻。 sma0114框内缺失突变体过度产生聚羟基丁酸酯(PHB),而这种过度产生需要sma0113。 Sma0113可以将其五个PAS域用于氧化还原水平或能量状态监控,并使用该信息来调节分解代谢物的阻抑和相关反应。

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