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Amino acid substitution on beta 1 and alpha F of Cyt2Aa2 affects molecular interaction of protoxin
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Document Title
Amino acid substitution on beta 1 and alpha F of Cyt2Aa2 affects molecular interaction of protoxin
Author
Thammachat S, Pungtanom N, Kidsanguan S, Pathaichindachote W, Promdonkoy B, Krittanai C
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Affiliations
Mahidol University; National Science & Technology Development Agency - Thailand; National Center Genetic Engineering & Biotechnology (BIOTEC)
Type
Article
Source Title
BMB REPORTS
ISSN
1976-6696
Year
2010
Volume
43
Issue
1
Open Access
gold
Publisher
KOREAN SOCIETY BIOCHEMISTRY & MOLECULAR BIOLOGY
DOI
10.5483/BMBRep.2010.43.6.427
Format
Abstract
Cyt2Aa2 is a mosquito-larvicidal protein produced as a 29 kDa crystalline protoxin from Bacillus thuringiensis subsp. darmstadiensis. To become an active toxin, proteolytic processing is required to remove amino acids from its N- and C-termini. This study aims to investigate the functional role of amino acid residues on the N-terminal beta 1 and C-terminal alpha F of Cyt2Aa2 protoxin. Mutant protoxins were constructed, characterized and compared to the wild type Cyt2Aa2. Protein expression data and SDS-PAGE analysis revealed that substitution at leucine-33 (L33) of beta 1 has a critical effect on dimer formation and structural stability against proteases. In addition, amino acids N230 and I233-F237 around the C-terminus alpha F demonstrated a crucial role in protecting the protoxin from proteolytic digestion. These results suggested that beta 1 and alpha F on the Nand C-terminal ends of Cyt2Aa2 protoxin play an important role in the molecular interaction and in maintaining the structural stability of the protoxin. [BMB reports 2010; 43(6): 427-431]
Keyword
Bacillus thuringiensis | Cytolytic toxin | Mutagenesis | Protein folding | Toxicity
Funding Sponsor
Thailand Research Fund (TRF); National Center for Genetic Engineering and Biotechnology; Thailand Center of Excellence for Physics; Royal Golden Jubilee
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WOS