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J Bacteriol. 1988 May;170(5):2374-8. doi: 10.1128/jb.170.5.2374-2378.1988.
2
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3
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Osmotic regulation of transcription: induction of the proU betaine transport gene is dependent on accumulation of intracellular potassium.转录的渗透调节:脯氨酸/甜菜碱转运基因proU的诱导依赖于细胞内钾离子的积累。
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Gas Chromatography-Mass Spectrometry of N- Heptafluorobutyryl Isobutyl Esters of Amino Acids in the Analysis of the Kinetics of [N]H(4) Assimilation in Lemna minor L.气相色谱-质谱法测定小蘗碱中[N]H(4)同化动力学的氨基酸异丁基 N-七氟丁酰酯
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Protein measurement with the Folin phenol reagent.使用福林酚试剂进行蛋白质测定。
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Studies of proline metabolism in Escherichia coli. I. The degradation of proline during growth of a proline-requiring auxotroph.大肠杆菌中脯氨酸代谢的研究。I. 脯氨酸营养缺陷型菌株生长过程中脯氨酸的降解
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5
A third L-proline permease in Salmonella typhimurium which functions in media of elevated osmotic strength.鼠伤寒沙门氏菌中的第三种L-脯氨酸通透酶,其在高渗透压强度的培养基中发挥作用。
J Bacteriol. 1982 Sep;151(3):1433-43. doi: 10.1128/jb.151.3.1433-1443.1982.
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Proline over-production results in enhanced osmotolerance in Salmonella typhimurium.脯氨酸过量产生可增强鼠伤寒沙门氏菌的渗透压耐受性。
Mol Gen Genet. 1981;182(1):82-6. doi: 10.1007/BF00422771.
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Purification and characteristics of a gamma-glutamyl kinase involved in Escherichia coli proline biosynthesis.参与大肠杆菌脯氨酸生物合成的γ-谷氨酰激酶的纯化及特性
J Bacteriol. 1984 Feb;157(2):545-51. doi: 10.1128/jb.157.2.545-551.1984.
8
Regulation of proline utilization in Salmonella typhimurium: characterization of put::Mu d(Ap, lac) operon fusions.鼠伤寒沙门氏菌中脯氨酸利用的调控:put::Mu d(Ap, lac)操纵子融合的特性分析
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Influence of environment on the content and composition of microbial free amino acid pools.环境对微生物游离氨基酸库的含量及组成的影响
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鼠伤寒沙门氏菌胞质脯氨酸水平的调节:渗透胁迫对脯氨酸合成、降解及细胞内潴留的影响。

Regulation of cytoplasmic proline levels in Salmonella typhimurium: effect of osmotic stress on synthesis, degradation, and cellular retention of proline.

作者信息

Csonka L N

机构信息

Department of Biological Sciences, Purdue University, West Lafayette, Indiana 47907.

出版信息

J Bacteriol. 1988 May;170(5):2374-8. doi: 10.1128/jb.170.5.2374-2378.1988.

DOI:10.1128/jb.170.5.2374-2378.1988
PMID:3283109
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC211132/
Abstract

I investigated the effects of osmotic stress on the synthesis and catabolism of proline in Salmonella typhimurium by measuring the intracellular and extracellular proline levels in various strains. In the wild-type strain, exposure to 0.8 M NaCl did not cause a significant change in the intracellular proline level; however, it brought about a 6.5-fold increase in the intracellular glutamate pool size. These results indicate that gamma-glutamyl kinase is inhibited by proline in wild-type cells in media of normal or elevated osmolarity. I also tested whether proline is subject to turnover in cells wild type with respect to the enzymes of the proline degradation pathway. In strains that were wild type for proline biosynthesis, the loss of the proline catabolic enzymes, due to putA mutations, did not result in a statistically significant increase in the intracellular proline levels. Therefore, in the wild-type strain, proline turnover does not seem to be important for control of the intracellular proline levels. However, in a proline-overproducing mutant, a putA lesion caused a threefold increase in the intracellular proline level and a 6.5-fold increase in the extracellular proline level, indicating that proline is subject to turnover in the overproducing mutant. The proline-overproducing mutants excreted large quantities of the proline into the culture medium; osmotic stress altered the partitioning of proline such that the ratio of intracellular to extracellular levels of proline increased with increased osmotic stress. The increased cellular retention of proline in media of high osmolarity is probably due to the functioning of the ProP and ProU proline transport systems, which are stimulated under conditions of osmotic stress.

摘要

我通过测量各种菌株的细胞内和细胞外脯氨酸水平,研究了渗透胁迫对鼠伤寒沙门氏菌中脯氨酸合成和分解代谢的影响。在野生型菌株中,暴露于0.8M NaCl不会导致细胞内脯氨酸水平发生显著变化;然而,它使细胞内谷氨酸池大小增加了6.5倍。这些结果表明,在正常或高渗透压培养基中,野生型细胞中的γ-谷氨酰激酶受到脯氨酸的抑制。我还测试了脯氨酸在野生型细胞中是否会通过脯氨酸降解途径的酶进行周转。在脯氨酸生物合成的野生型菌株中,由于putA突变导致脯氨酸分解代谢酶的缺失,并没有导致细胞内脯氨酸水平在统计学上显著增加。因此,在野生型菌株中,脯氨酸周转似乎对细胞内脯氨酸水平的控制并不重要。然而,在一个脯氨酸过量产生的突变体中,putA损伤导致细胞内脯氨酸水平增加了三倍,细胞外脯氨酸水平增加了6.5倍,这表明脯氨酸在过量产生的突变体中会进行周转。脯氨酸过量产生的突变体将大量脯氨酸分泌到培养基中;渗透胁迫改变了脯氨酸的分配,使得脯氨酸的细胞内与细胞外水平之比随着渗透胁迫的增加而增加。在高渗透压培养基中脯氨酸细胞保留量的增加可能是由于ProP和ProU脯氨酸转运系统的作用,它们在渗透胁迫条件下受到刺激。