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Study on Cecropin B2 Production via Construct Bearing Intein Oligopeptide Cleavage Variants.


ABSTRACT: In this study, genetic engineering was applied to the overexpression of the antimicrobial peptide (AMP) cecropin B2 (cecB2). pTWIN1 vector with a chitin-binding domain (CBD) and an auto-cleavage Ssp DnaB intein (INT) was coupled to the cecB2 to form a fusion protein construct and expressed via Escherichia coli ER2566. The cecB2 was obtained via the INT cleavage reaction, which was highly related to its adjacent amino acids. Three oligopeptide cleavage variants (OCVs), i.e., GRA, CRA, and SRA, were used as the inserts located at the C-terminus of the INT to facilitate the cleavage reaction. SRA showed the most efficient performance in accelerating the INT self-cleavage reaction. In addition, in order to treat the INT as a biocatalyst, a first-order rate equation was applied to fit the INT cleavage reaction. A possible inference was proposed for the INT cleavage promotion with varied OCVs using a molecular dynamics (MD) simulation. The production and purification via the CBD-INT-SRA-cecB2 fusion protein resulted in a cecB2 yield of 58.7 mg/L with antimicrobial activity.

SUBMITTER: Fang YT 

PROVIDER: S-EPMC7070832 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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Study on Cecropin B2 Production via Construct Bearing Intein Oligopeptide Cleavage Variants.

Fang Yi-Ting YT   Li Si-Yu SY   Hu Nien-Jen NJ   Yang Jie J   Liu Jyung-Hurng JH   Liu Yung-Chuan YC  

Molecules (Basel, Switzerland) 20200224 4


In this study, genetic engineering was applied to the overexpression of the antimicrobial peptide (AMP) cecropin B2 (cecB2). pTWIN1 vector with a chitin-binding domain (CBD) and an auto-cleavage Ssp DnaB intein (INT) was coupled to the cecB2 to form a fusion protein construct and expressed via <i>Escherichia coli</i> ER2566. The cecB2 was obtained via the INT cleavage reaction, which was highly related to its adjacent amino acids. Three oligopeptide cleavage variants (OCVs), i.e., GRA, CRA, and  ...[more]

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