中等嗜盐菌嗜盐盐杆菌的渗透适应调控:氯化物、谷氨酸和转换渗透策略。

Stephan H Saum, Volker Müller
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引用次数: 102

摘要

嗜盐嗜盐盐杆菌是原核生物中氯依赖性生长的典范。最近的实验揭示了氯化物依赖的分子基础。在中等盐度环境下,嗜盐盐杆菌主要通过积累谷氨酰胺和谷氨酸来调节胃胀。glnA2(编码谷氨酰胺合成酶)的转录以及谷氨酰胺合成酶的活性被确定为氯依赖步骤。嗜盐盐杆菌改变其渗透策略,在高盐度下产生脯氨酸作为主要相容溶质。此外,嗜盐盐杆菌的渗透策略也发生了转变,从指数阶段过渡到固定阶段,脯氨酸被外托氨酸交换。谷氨酸被认为是脯氨酸产生的“第二信使”。这一观察结果导致了一个通过感知不同阴离子的物理化学性质来感知盐度的新模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Regulation of osmoadaptation in the moderate halophile Halobacillus halophilus: chloride, glutamate and switching osmolyte strategies.

Regulation of osmoadaptation in the moderate halophile Halobacillus halophilus: chloride, glutamate and switching osmolyte strategies.

Regulation of osmoadaptation in the moderate halophile Halobacillus halophilus: chloride, glutamate and switching osmolyte strategies.

Regulation of osmoadaptation in the moderate halophile Halobacillus halophilus: chloride, glutamate and switching osmolyte strategies.

The moderate halophile Halobacillus halophilus is the paradigm for chloride dependent growth in prokaryotes. Recent experiments shed light on the molecular basis of the chloride dependence that is reviewed here. In the presence of moderate salinities Halobacillus halophilus mainly accumulates glutamine and glutamate to adjust turgor. The transcription of glnA2 (encoding a glutamine synthetase) as well as the glutamine synthetase activity were identified as chloride dependent steps. Halobacillus halophilus switches its osmolyte strategy and produces proline as the main compatible solute at high salinities. Furthermore, Halobacillus halophilus also shifts its osmolyte strategy at the transition from the exponential to the stationary phase where proline is exchanged by ectoine. Glutamate was found as a "second messenger" essential for proline production. This observation leads to a new model of sensing salinity by sensing the physico-chemical properties of different anions.

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