CitST is a typical two-component regulatory system that can regulate citrate utilization and is involved in the regulation of carbohydrate metabolism in Bacillus subtilis. B.
Qi Yang +7 more
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Two-Component Response Regulators CitT, YvcP, and YycI Differentially Control Pectin and Hemicellulose Degradation in Degumming of Ramie Fibers by Bacillus subtilis Strain 168 [PDF]
Exploring the metabolic regulatory mechanisms of bacteria for ramie degumming and constructing more efficient engineered strains are preferred strategies to solve the technical bottleneck of high residual gum content in fibers. Bacillus subtilis strain 168, an advantageous bacterium for microbial degumming, was previously found to significantly up ...
Qi Yang +9 more
exaly +5 more sources
Cellulose fibers from ramie is a kind of functional biological material with multipurpose in the textile industry, which called as “China grass.” The degumming of ramie fibers performed with Bacillus subtilis were regulated by response regulator CitT ...
Qi Yang +8 more
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Evolution of a cross-feeding interaction following a key innovation in a long-term evolution experiment with Escherichia coli. [PDF]
Turner CB +3 more
europepmc +1 more source
The two-component system expression patterns and immune regulatory mechanism of Vibrio parahaemolyticus with different genotypes at the early stage of infection in THP-1 cells. [PDF]
Meng YY +7 more
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Redundancy in Citrate and cis-Aconitate Transport in Pseudomonas aeruginosa. [PDF]
Underhill SAM, Cabeen MT.
europepmc +1 more source
Time-resolved transcriptomic and proteomic profiling of Heyndrickxia coagulans during NaOH-buffered L-lactic acid production. [PDF]
Huang X, Tian W, Wang X, Qin J.
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C4-Dicarboxylates as Growth Substrates and Signaling Molecules for Commensal and Pathogenic Enteric Bacteria in Mammalian Intestine. [PDF]
Schubert C, Unden G.
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Evolution of cyclic di-GMP signalling on a short and long term time scale. [PDF]
Römling U, Cao LY, Bai FW.
europepmc +1 more source
A comprehensive review and comparison of L-tryptophan biosynthesis in Saccharomyces cerevisiae and Escherichia coli. [PDF]
Ren X +6 more
europepmc +1 more source

