首页> 美国卫生研究院文献>Journal of Bacteriology >Sinorhizobium meliloti Mutants Lacking Phosphotransferase System Enzyme HPr or EIIA Are Altered in Diverse Processes Including Carbon Metabolism Cobalt Requirements and Succinoglycan Production
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Sinorhizobium meliloti Mutants Lacking Phosphotransferase System Enzyme HPr or EIIA Are Altered in Diverse Processes Including Carbon Metabolism Cobalt Requirements and Succinoglycan Production

机译:缺乏磷酸转移酶系统酶HPr或EIIA的苜蓿中华根瘤菌突变体在多种过程中发生了变化包括碳代谢钴需求和琥珀糖生产

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摘要

Sinorhizobium meliloti is a member of the Alphaproteobacteria that fixes nitrogen when it is in a symbiotic relationship. Genes for an incomplete phosphotransferase system (PTS) have been found in the genome of S. meliloti. The genes present code for Hpr and ManX (an EIIAMan-type enzyme). HPr and EIIA regulate carbon utilization in other bacteria. hpr and manX in-frame deletion mutants exhibited altered carbon metabolism and other phenotypes. Loss of HPr resulted in partial relief of succinate-mediated catabolite repression, extreme sensitivity to cobalt limitation, rapid die-off during stationary phase, and altered succinoglycan production. Loss of ManX decreased expression of melA-agp and lac, the operons needed for utilization of α- and β-galactosides, slowed growth on diverse carbon sources, and enhanced accumulation of high-molecular-weight succinoglycan. A strain with both hpr and manX deletions exhibited phenotypes similar to those of the strain with a single hpr deletion. Despite these strong phenotypes, deletion mutants exhibited wild-type nodulation and nitrogen fixation when they were inoculated onto Medicago sativa. The results show that HPr and ManX (EIIAMan) are involved in more than carbon regulation in S. meliloti and suggest that the phenotypes observed occur due to activity of HPr or one of its phosphorylated forms.
机译:苜蓿中华根瘤菌是Alphaproteobacteria的一员,当它处于共生关系时可固定氮。在苜蓿链球菌的基因组中发现了不完全磷酸转移酶系统(PTS)的基因。这些基因目前编码Hpr和ManX(一种EIIA Man 型酶)。 HPr和EIIA调节其他细菌的碳利用。 hpr和manX框内删除突变体表现出改变的碳代谢和其他表型。 HPr的损失导致琥珀酸介导的分解代谢物阻抑的部分缓解,对钴限制的极度敏感性,固定相期间的快速死亡以及改变的琥珀聚糖产量。 ManX的损失会降低melA-agp和lac的表达,这是利用α-和β-半乳糖苷所需的操纵子,会减缓各种碳源的生长,并增加高分子量琥珀聚糖的积累。具有hpr和manX缺失的菌株表现出与具有单个hpr缺失的菌株相似的表型。尽管具有这些强表型,但将缺失突变体接种到紫花苜蓿上时仍表现出野生型结瘤和固氮作用。结果表明,HPr和ManX(EIIA Man )参与了苜蓿链球菌的碳调控,并表明观察到的表型是由于HPr的活性或其磷酸化形式之一。

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