RRC ID 40944
Author Luang-In V, Narbad A, Cebeci F, Bennett M, Rossiter JT.
Title Identification of Proteins Possibly Involved in Glucosinolate Metabolism in L. agilis R16 and E. coli VL8.
Journal Protein J
Abstract This study was aimed to identify sinigrin-induced bacterial proteins potentially involved in the metabolism of glucosinolate in two glucosinolate-metabolising bacteria Lactobacillus agilis R16 and Escherichia coli VL8. Sinigrin (2 mM) was used to induce the proteins in both bacteria under anaerobic incubation for 8 h at 30 °C for L. agilis R16 and 37 °C for E. coli VL8 and the controls without sinigrin were performed. Allyl isothiocyanate and allyl nitrile as two degradation products of sinigrin were detected in sinigrin-induced cultures of L. agilis R16 (27% total products) and E. coli VL8 (38% total products) from a complete sinigrin degradation in 8 h for both bacteria. 2D gel electrophoresis was conducted to identify induced proteins with at least twofold increased abundance. Sinigrin-induced L. agilis R16 and the control produced 1561 and 1543 protein spots, respectively. For E. coli VL8, 1363 spots were detected in sinigrin-induced and 1354 spots in the control. A combination of distinct proteins and upregulated proteins of 32 and 35 spots in L. agilis R16 and E. coli VL8, respectively were detected upon sinigrin induction. Of these, 12 and 16 spots from each bacterium respectively were identified by LC-MS/MS. In both bacteria most of the identified proteins are involved in carbohydrate metabolism, oxidoreduction system and sugar transport while the minority belong to purine metabolism, hydrolysis, and proteolysis. This indicated that sinigrin induction led to the expressions of proteins with similar functions in both bacteria and these proteins may play a role in bacterial glucosinolate metabolism.
Volume 34(2)
Pages 135-46
Published 2015-4-1
DOI 10.1007/s10930-015-9607-0
PMID 25805049
MeSH Bacterial Proteins / isolation & purification* Chromatography, High Pressure Liquid Electrophoresis, Gel, Two-Dimensional Escherichia coli / enzymology Escherichia coli / metabolism* Glucosinolates / metabolism* Glycoside Hydrolases / chemistry Hydrolysis Isothiocyanates / analysis Lactobacillus / enzymology Lactobacillus / metabolism* Nitriles / analysis Tandem Mass Spectrometry
IF 1.317
Times Cited 6
WOS Category BIOCHEMISTRY & MOLECULAR BIOLOGY
Resource
General Microbes JCM 7040 JCM 7045 JCM 7050