4.7 Article

Short communication: Improving the activity of bile salt hydrolases in Lactobacillus casei based on in silico molecular docking and heterologous expression

期刊

JOURNAL OF DAIRY SCIENCE
卷 100, 期 2, 页码 975-980

出版社

ELSEVIER SCIENCE INC
DOI: 10.3168/jds.2016-11720

关键词

bile salt hydrolase; Lactobacillus casei; molecular docking; heterologous expression

资金

  1. National Natural Science Foundation of China [31371809]
  2. New Century Excellent Talents Project of Ministry of Education of China [NCET-13-0901]
  3. International Cooperation Project of Shanghai Science and Technology Commission [14390711700]
  4. Shanghai Education Development Foundation [15SG42]
  5. Key Laboratory of Synthetic Biology, Chinese Academy of Sciences, China
  6. Shu Guang project of Shanghai Municipal Education Commission

向作者/读者索取更多资源

Bile salt hydrolase (BSH) plays an essential role in the cholesterol-removing effect of lactic acid bacteria, which hydrolyze conjugated bile salts to amino acid and deconjugated bile salts. However, Lactobacillus casei lacks the bsh gene, which may make it highly sensitive to bile salt stress. We wanted to improve the BSH activity of L. casei for various food-industry applications (e.g., milk fermentation). Plate assay testing indicated that Lactobacillus plantarum AR113 has the highest BSH activity. We cloned and sequenced 4 bsh genes from the genome of L. plantarum AR113. Structure modeling and molecular docking of BSH indicated that BSH1 and BSH3 could react efficiently with bile salts, so we selected BSH1 and BSH3 for heterologous expression in L. casei. Compared with single expression of BSH1 or BSH3, co-expression of both protein sequences showed the highest hydrolysis activity by HPLC analysis. Our results suggested that heterologous expression of BSH in L. casei can significantly improve host activity against bile salts, and in silico molecular docking could be an efficient method of rapid screening for BSH with high activity.

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