Probing Protein Sequences as Sources for Encrypted Antimicrobial Peptides

被引:42
作者
Brand, Guilherme D. [1 ,5 ]
Magalhaes, Mariana T. Q. [1 ]
Tinoco, Maria L. P. [2 ]
Aragao, Francisco J. L. [2 ]
Nicoli, Jacques [3 ]
Kelly, Sharon M. [4 ]
Cooper, Alan [5 ]
Bloch, Carlos, Jr. [1 ]
机构
[1] Embrapa Recursos Genet & Biotecnol, Lab Espectrometria Massa, Brasilia, DF, Brazil
[2] Embrapa Recursos Genet & Biotecnol, Lab Transferencia & Expressao Genes, Brasilia, DF, Brazil
[3] Univ Fed Minas Gerais, Inst Ciencias Biol, Dept Microbiol, Belo Horizonte, MG, Brazil
[4] Univ Glasgow, Inst Mol Cell & Syst Biol, Glasgow, Lanark, Scotland
[5] Univ Glasgow, Sch Chem, Glasgow, Lanark, Scotland
来源
PLOS ONE | 2012年 / 7卷 / 09期
基金
英国生物技术与生命科学研究理事会;
关键词
CIRCULAR-DICHROISM; MODEL MEMBRANES; BIOACTIVE PEPTIDES; TRANSGENIC PLANTS; LIPID-BILAYER; WHEAT GLUTEN; RESISTANCE; PATHOGENS; DIMYRISTOYLPHOSPHATIDYLCHOLINE; HYDROPHOBICITY;
D O I
10.1371/journal.pone.0045848
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Starting from the premise that a wealth of potentially biologically active peptides may lurk within proteins, we describe here a methodology to identify putative antimicrobial peptides encrypted in protein sequences. Candidate peptides were identified using a new screening procedure based on physicochemical criteria to reveal matching peptides within protein databases. Fifteen such peptides, along with a range of natural antimicrobial peptides, were examined using DSC and CD to characterize their interaction with phospholipid membranes. Principal component analysis of DSC data shows that the investigated peptides group according to their effects on the main phase transition of phospholipid vesicles, and that these effects correlate both to antimicrobial activity and to the changes in peptide secondary structure. Consequently, we have been able to identify novel antimicrobial peptides from larger proteins not hitherto associated with such activity, mimicking endogenous and/or exogenous microorganism enzymatic processing of parent proteins to smaller bioactive molecules. A biotechnological application for this methodology is explored. Soybean (Glycine max) plants, transformed to include a putative antimicrobial protein fragment encoded in its own genome were tested for tolerance against Phakopsora pachyrhizi, the causative agent of the Asian soybean rust. This procedure may represent an inventive alternative to the transgenic technology, since the genetic material to be used belongs to the host organism and not to exogenous sources.
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页数:14
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