| Literature DB >> 25241628 |
Jiaxin Zhang1, Ali Movahedi1, Xiaoli Wang1, Xiaolong Wu1, Tongming Yin1, Qiang Zhuge2.
Abstract
The increasing resistance of bacteria and fungi to currently available antibiotics is a major concern worldwide, leading to enormous efforts to develop new antibiotics with new modes of actions. In this paper, cDNA encoding cecropin A was amplified from drury (Hyphantria cunea) (dHC) pupa fatbody total RNA using RT-PCR. The full-length dHC-cecropin A cDNA encoded a protein of 63 amino acids with a predicted 26-amino acid signal peptide and a 37-amino acid functional domain. We synthesized the antibacterial peptide (ABP) from the 37-amino acid functional domain (ABP-dHC-cecropin A), and amidated it via the C-terminus. Time-of-flight mass spectrometry showed its molecular weight to be 4058.94. The ABP-dHC-cecropin A was assessed in terms of its protein structure using bioinformatics and CD spectroscopy. The protein's secondary structure was predicted to be α-helical. In an antibacterial activity analysis, the ABP-dHC-cecropin A exhibited strong antibacterial activity against E. coli K12D31 and Agrobacterium EHA105.Entities:
Keywords: ABP-dHC-cecropin A; Antibacterial activity; Antibacterial peptide; Hyphantria cunea; Molecular structure
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Year: 2014 PMID: 25241628 DOI: 10.1016/j.peptides.2014.09.011
Source DB: PubMed Journal: Peptides ISSN: 0196-9781 Impact factor: 3.750