PubMed Health⌕ Search

Biomedical subjects

Xianpeng Cai

Publications and source records attributed to Xianpeng Cai.

3 recordsLinked to original sources

Nucleotide mutations in purA gene and pur operon promoter discovered in guanosine- and inosine-producing Bacillus subtilis strains.

The promoter region of the pur operon, which contains 12 genes for inosine monophosphate biosynthesis from phosphoribosylpyrophosphate, and the purA gene, encoding the adenylosuccinate synthetase, were compared among wild-type and three purine-producing Bacillus subtilis strains. A single nucleotide deletion at position 55 (relative to translation start site) in purA gene was found in a high inosine-producing strain and in a high guanosine-producing strain, which correlates with the absence of adenylosuccinate synthetase activity in these strains. Within the pur operon promoter of high guanosine-producing strain, in addition to a single nucleotide deletion in PurBox1 and a single nucleotide substitution in PurBox2, there were 4 substitutions in the flanking region of the PurBoxes and 32 nucleotide mutations in the 5' untranslated region. These mutations may explain the purine accumulation in purine-producing strains and be helpful to the rational design of high-yield recombinant strains.

Adenylosuccinate Synthase↗

[Relationship between key enzyme activities of inosine-producing pathway and inosine accumulation].

The specific activities of key enzymes relating to the pathway of inosine synthesis of three different bacterial strains including high-yield, low-yield and wild strains were determined and compared systematically. A close relationship between inosine production and the specific activities of key enzymes was found. According to the enzyme characteristics of high-yield strain, suggestions on further strain improvement by modification of genetic engineering were proposed. Enzymology study is believed to be an effective way to make screening of high-yield strains more efficient.

Adenylosuccinate Synthase↗

[The optimization of guanosine fermentation based on process parameter correlation analysis].

The characteristic of Bacillus subtilis fermentation process of guanosine on 50 L fermentor was analyzed. Based on determination of on-line and off-line parameter, using correlation analysis, the technology study of physiologic regulation was combined with the metabolic flux distribution of synthesis process. The metabolic flux shift from HMP to EMP and TCA cycle during fermentation was found. The reason of the flux shift was preliminary analyzed, based on which the procedure was optimized to increase the yield of guanosine to 30 g/L.

Ammonia↗