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1.
J Pept Sci ; 24(11): e3129, 2018 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-30325566

RESUMEN

Eight molecules, four peptides (SPs) and four lipopeptides (LPs) derived by rational design from surfactin, a well-known secreted biosurfactant from Bacillus subtilis, were produced employing Fmoc-based solid-phase synthesis. These new peptides were tested to evaluate their potential biosurfactant and biological activities, aiming at possible applications in industrial, biological, pharmaceutical, and medical use. Five molecules (SP1, SP2, SP4, LP5, and LP8) presented potential for medical uses, mainly due to their drug delivery properties as suggested by their synergistic activity with the antibiotic vancomycin against Staphylococcus aureus. All synthetic peptides showed low toxicity against Vero cell cultures, in assays of hemolysis, and in different cytotoxicity assays. In addition, we found that three peptides (SP1, LP6, and LP7) had potential technological and industrial use because of their emulsifying capacity, low toxicity, and ability to physically stabilize solutions. These novel molecules retained some properties of the parental molecule (surfactin, which was originally obtained through nonribosomal synthesis in Bacillus subtilis) but have the advantage of being linear peptides, which can be produced at large scales through the use of conventional heterologous protein expression protocols.


Asunto(s)
Bacillus subtilis/metabolismo , Lipopéptidos/síntesis química , Péptidos Cíclicos/química , Péptidos/síntesis química , Técnicas de Síntesis en Fase Sólida/métodos , Animales , Bacillus subtilis/química , Proteínas Bacterianas/química , Chlorocebus aethiops , Portadores de Fármacos/síntesis química , Portadores de Fármacos/química , Portadores de Fármacos/farmacología , Sinergismo Farmacológico , Emulsionantes/síntesis química , Emulsionantes/química , Emulsionantes/farmacología , Humanos , Lipopéptidos/química , Lipopéptidos/farmacología , Péptidos/química , Péptidos/farmacología , Staphylococcus aureus/efectos de los fármacos , Vancomicina/farmacología , Células Vero
2.
Circ J ; 76(6): 1476-85, 2012.
Artículo en Inglés | MEDLINE | ID: mdl-22453000

RESUMEN

BACKGROUND: Epsilon-protein kinase C (εPKC) protects the heart from ischemic injury. However, the mechanism(s) of εPKC cardioprotection is still unclear. Identification of the εPKC targets may aid in elucidating the εPKC-mediated cardioprotective mechanisms. Previous studies, using εPKC transgenic mice and difference in gel electrophoresis, identified proteins involved in glucose metabolism, the expression of which was modified by εPKC. Those studies were accompanied by metabolomic analysis, suggesting that increased glucose oxidation may be responsible for the cardioprotective effect of εPKC. Whether these εPKC-mediated alterations were because of differences in protein expression or phosphorylation was not determined. METHODS AND RESULTS: In the present study, we used an εPKC -specific activator peptide, ψεRACK, combined with phosphoproteomics, to find εPKC targets, and identified that the proteins whose phosphorylation was altered by selective activation of εPKC were mostly mitochondrial proteins. Analysis of the mitochondrial phosphoproteome led to the identification of 55 spots, corresponding to 37 individual proteins, exclusively phosphorylated, in the presence of ψεRACK. The majority of the proteins identified were involved in glucose and lipid metabolism, components of the respiratory chain as well as mitochondrial heat shock proteins. CONCLUSIONS: The protective effect of εPKC during ischemia involves phosphorylation of several mitochondrial proteins involved in glucose and lipid metabolism and oxidative phosphorylation. Regulation of these metabolic pathways by εPKC phosphorylation may lead to εPKC-mediated cardioprotection induced by ψεRACK.


Asunto(s)
Metabolismo Energético , Mitocondrias Cardíacas/enzimología , Isquemia Miocárdica/enzimología , Miocardio/enzimología , Proteína Quinasa C-epsilon/metabolismo , Animales , Citoprotección , Modelos Animales de Enfermedad , Metabolismo Energético/efectos de los fármacos , Activación Enzimática , Activadores de Enzimas/farmacología , Glucosa/metabolismo , Técnicas In Vitro , Metabolismo de los Lípidos , Isquemia Miocárdica/prevención & control , Oligopéptidos/farmacología , Fosforilación Oxidativa , Perfusión , Fosforilación , Proteómica/métodos , Ratas , Ratas Wistar , Transducción de Señal
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