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首页> 外文期刊>Food microbiology >Amino acids other than glutamate affect the expression of the GAD system in Listeria monocytogenes enhancing acid resistance
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Amino acids other than glutamate affect the expression of the GAD system in Listeria monocytogenes enhancing acid resistance

机译:除了谷氨酸外的氨基酸会影响GAD系统在李斯特菌单核细胞增强酸性抗性的表达

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The Glutamate Decarboxylase (GAD) system is important for survival of L. monocytogenes and other microorganisms under acidic conditions. Environmental conditions influence the function of the GAD system. Until now, the only conditions known to lead to increased transcription of the GAD system are the stationary phase in rich media and anoxic conditions. Previously, we showed that transcription of the GAD system requires unidentified compounds other than glutamate present in rich media. Following a test looking at various compounds we identified for first time that peptone, tryptone and casamino acids activate the GAD system under oxic conditions suggesting that amino acid(s) other than glutamate and/or peptides are important for the above process. The defined medium, where the GAD system is inactive, once it is supplemented with the above compounds results in an active intracellular and extracellular GAD system and increased acid resistance. Through functional genomics we show that these compounds are required for GadD2 activity and although we previously showed that GadD3 is active part of the intracellular GAD system, the supplementation did not activate this gene. The above is explained by the fact that only gadD2 transcription was upregulated by these compounds while the transcription of gadD1 and gadD3 remained unaffected. Together our results show that the L. monocytogenes GadD2 decarboxylase is activated in the presence of amino acids or peptides other than glutamate, a finding that has important implications for acid tolerance and food safety.
机译:谷氨酸脱羧酶(GAD)系统对于在酸性条件下的L.单核细胞增生和其他微生物的存活是重要的。环境条件影响了GAD系统的功能。到目前为止,已知导致GAD系统的转录增加的唯一条件是富含培养基和缺氧条件的固定相。以前,我们表明,GAD系统的转录需要除富介质中存在的谷氨酸外的未识别化合物。在考试中看着我们首次鉴定的各种化合物,蛋白质,胰蛋白酶和Casamino酸在氧的条件下激活GAD系统,表明除谷氨酸和/或肽以外的氨基酸对上述方法很重要。一旦它补充了上述化合物,所定义的培养基,即在其上述化合物中导致有活性细胞内和细胞外的GAD系统并增加耐酸性。通过功能基因组学,我们表明这些化合物是GADD2活性所必需的,尽管我们以前表明GADD3是细胞内GAD系统的活性部分,但补充没有激活该基因。以上所解释的是,只有这些化合物仅通过这些化合物上调,而在GADD1和GADD3的转录中仍未受到影响。我们的结果表明,L.单核细胞增生GADD2脱羧酶在氨基酸或除谷氨酸外的氨基酸存在下活化,该发现具有对酸性耐受和食品安全的重要影响。

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