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Results 1 - 4 of 4
EC Number General Information Commentary Reference
Show all pathways known for 3.5.1.96Display the reaction diagram Show all sequences 3.5.1.96malfunction mutant BW25113-DELTAastE mainly regulates intracellular pH-homeostasis to adapt to butanol stress, indicating the non-negligible impact of pH on microbial butanol tolerance, broadening our understanding of microbial butanol tolerance and providing a strategy for the rational engineering of a more robust butanol-producing host -, 758342
Show all pathways known for 3.5.1.96Display the reaction diagram Show all sequences 3.5.1.96metabolism analysis of the mechanism of the enzyme's tolerance to butanol, metabolome and GC-MS-based transcriptomics analysis showing that acid-activated glutaminase ybaS and the amino acid antiporter gadC are significantly upregulated, but the levels of L-arginine and glutamate are not significantly increased and decreased, detailed overview -, 758342
Show all pathways known for 3.5.1.96Display the reaction diagram Show all sequences 3.5.1.96physiological function enzyme is part of the arginine succinyltransferase pathway, which is the major arginine and ornithine utilization pathway under aerobic conditions in Pseudomonas aeruginosa. The aruR, aruC, aruD, aruB, and aruE genes specify the ArgR regulatory protein, N2-succinylornithine 5-aminotransferase, N-succinylglutamate 5-semialdehyde dehydrogenase, N2-succinylarginine dihydrolase, and N-succinylglutamate desuccinylase, respectively, and the aruF and aruG genes encode the subunits AruAI and AruAII of arginine and ornithine N2-succinyltransferases 486123
Show all pathways known for 3.5.1.96Display the reaction diagram Show all sequences 3.5.1.96physiological function final enzyme of the ammonia-producing arginine succinyltransferase pathway AST in Escherichia coli. Overproduction of AST enzymes results in faster growth with arginine and aspartate 486124
Results 1 - 4 of 4