作者
José M Pastor, Vicente Bernal, Manuel Salvador, Montserrat Argandoña, Carmen Vargas, Laszlo Csonka, Ángel Sevilla, José L Iborra, Joaquín J Nieto, Manuel Cánovas
发表日期
2013/6/14
期刊
Journal of Biological Chemistry
卷号
288
期号
24
页码范围
17769-17781
出版商
Elsevier
简介
Bacterial osmoadaptation involves the cytoplasmic accumulation of compatible solutes to counteract extracellular osmolarity. The halophilic and highly halotolerant bacterium Chromohalobacter salexigens is able to grow up to 3 m NaCl in a minimal medium due to the de novo synthesis of ectoines. This is an osmoregulated pathway that burdens central metabolic routes by quantitatively drawing off TCA cycle intermediaries. Consequently, metabolism in C. salexigens has adapted to support this biosynthetic route. Metabolism of C. salexigens is more efficient at high salinity than at low salinity, as reflected by lower glucose consumption, lower metabolite overflow, and higher biomass yield. At low salinity, by-products (mainly gluconate, pyruvate, and acetate) accumulate extracellularly. Using [1-13C]-, [2-13C]-, [6-13C]-, and [U-13C6]glucose as carbon sources, we were able to determine the main central metabolic …
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