| Literature DB >> 28638403 |
Arlete Beatriz Becker-Ritt1, Camila Saretta Portugal1, Célia Regina Carlini2.
Abstract
Urease from Canavalia ensiformis seeds was the first enzyme ever to be crystallized, in 1926. These proteins, found in plants, bacteria and fungi, present different biological properties including catalytic hydrolysis of urea, and also enzyme-independent activities, such as induction of exocytosis, pro-inflammatory effects, neurotoxicity, antifungal and insecticidal properties. Urease is toxic to insects and fungi per se but part of this toxicity relies on an internal peptide (~11 kDa), which is released upon digestion of the protein by insect enzymes. A recombinant form of this peptide, called jaburetox (JBTX), was constructed using jbureII gene as a template. The peptide exhibits liposome disruption properties, and insecticidal and fungicidal activities. Here we review the known biological properties activities of JBTX, and comment on new ones not yet fully characterized. JBTX was able to cause mortality of Aedes aegypti larvae in a feeding assay whereas in a dose as low as of 0.1 μg it provoked death of Triatoma infestans bugs. JBTX (10-5-10-6 M) inhibits the growth of E. coli, P. aeruginosa and B. cereus after 24 h incubation. Multilamellar liposomes interacting with JBTX undergo reorganization of the membrane's lipids as detected by small angle X-ray scattering (SAXS) studies. Encapsulating JBTX into lipid nanoparticles led to an increase of the peptide's antifungal activity. Transgenic tobacco and sugarcane plants expressing the insecticidal peptide JBTX, showed increased resistance to attack of the insect pests Spodoptera frugiperda, Diatraea saccharalis and Telchin licus licus. Many questions remain unanswered; however, so far, JBTX has shown to be a versatile peptide that can be used against various insect and fungus species, and in new bacterial control strategies.Entities:
Keywords: Bacteria; Membranes; Nanoparticles; Peptide
Year: 2017 PMID: 28638403 PMCID: PMC5472951 DOI: 10.1186/s40409-017-0122-y
Source DB: PubMed Journal: J Venom Anim Toxins Incl Trop Dis ISSN: 1678-9180
Fig. 1Effects of jaburetox-V5-loaded lyophilized E. coli on A. aegypti. Mosquito larvae, 25 per experimental condition, were fed fish diet soaked with a suspension of lyophilized E. coli cells containing 0 (control), 10 or 100 μg of JBTX, as quantified by ELISA. Controls with non-transformed E. coli were run in parallel. The larvae were kept at 28 oC with a photoperid of 8:16 (light:dark) and developmental stage and mortality were recorded daily up to day 6. The results are average of duplicates, and expressed as a percentage relative to the initial number of insects. Copyright by K. Kappaun [19]. Reprinted with permission
Fig. 2Effects of jaburetox on bacteria. Bacterial multiplication was evaluated by absorbance at 620 nm at time zero, and 4 and 24 h after incubation in the presence of different concentrations of JBTX. a Bacillus cereus; b Escherichia coli; c Pseudomonas aeruginosa; d Staphylococcus aureus. Growth in the presence of buffer (Tris HCl 10 mM pH 7.0) or H2O2 was considered as negative and positive control, respectively. Each graph represents three independent experiments in triplicates for each condition. Results are mean ± SD. Asterisks (*) indicate statistical differences (p values ≤ 0.05, Tukey test). Copyright by I. A. Terra [33]. Reprinted with permission
Antimicrobial activity of some peptide classes
| AMP class | AMP name | Plant species | Antimicrobial activity | Reference |
|---|---|---|---|---|
| Defensin | Cp-thionin-2 |
|
| [ |
| Defensin | Fabatin-1 |
|
| [ |
| Defensin | Fabatin-2 |
|
| [ |
| Defensin |
|
|
| [ |
| Defensin | Cn-AMP1 |
|
| [ |
| Defensin | Cn-AMP2 |
|
| [ |
| Defensin | Cn-AMP3 |
|
| [ |
| Cyclotide | Kalata B1 |
|
| [ |
| Cyclotide | Circulin A |
|
| [ |
| Cyclotide | Circulin B |
|
| [ |
| Cyclotide | Cycloviolacin O2 |
|
| [ |
| α/β-Thionin | Alpha-1-purothionin |
|
| [ |
| α/β-Thionin | PR-13 thionins |
|
| [ |
| Snakin | Snakin-1 |
|
| [ |
| Snakin | StSN1 |
|
| [ |
| Snakin | StSN2 |
|
| [ |
| LTP | LTP-s1 LTP-s2 |
|
| [ |