960 resultados para C-terminal Fragment
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Pós-graduação em Biotecnologia - IQ
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Pós-graduação em Biotecnologia - IQ
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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The adsorption behavior of the Tet-124 antimicrobial peptide and the Tet-124 peptide modified at the C- and N-terminus with the sequence glycine-3,4-dihydroxyphenylalanine-glycine (G-DOPA-G) on titanium surfaces was studied using quartz crystal micro balance with dissipation (QCM-D). At a low pH level (4.75) Tet-124 and Tet-124-G-DOPA-G form rigid layers. This is attributed to the electrostatic interactions of the positively charged lysine and arginine residues in the peptide sequence with the negatively charged titanium oxide layer. At an elevated pH level (6.9) Tet-124 shows a lower mass adsorption at the surface than Tet-124-G-DOPA-G. This is attributed to the interaction of the catechol due to the formation of complexes with the titanium oxide and titanium surface layer. The C terminal and N terminal modification with the sequence G-DOPA-G shows similar adsorption rate and mass adsorption coverage at saturation; however it is presented a more loosely layers on the G-DOPA-G-TeT-124. Fibroblast adhesion and the biocompatibility test of both the surfaces following modification with Tet-124-G-DOPA-G and the titanium alloy control showed similar results. In addition, no changes in the adhesion of E. coli bacteria due to the modification of the surface were detected.
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Os peptídeos têm sido amplamente estudados e demonstrados como uma estratégia promissora no combate a micro-organismos patogênicos, devido aos inovadores mecanismos de ação que apresentam e a menor indução de resistência nos microorganismos. Os peptídeos da família das Histatinas, naturalmente presentes na saliva humana, são os principais agentes que auxiliam na cicatrização e oclusão de feridas, re-epitelização e, além disso, dispõem de mecanismos de ação contra microorganismos, em especial, a Candida albicans. O agente etiológico da Candidiose bucal é a Candida albicans, um patógeno de origem fúngica, que acomete indivíduos de todas as idades, indivíduos imunologicamente debilitados e, especialmente, os usuários de próteses dentárias. Um importante fator de virulência da Candida albicans é a habilidade de formar biofilmes, estrutura comunitária microbiana revestida por exopolissacarídeos, capaz de aderir-se a superfícies lisas. Os biofilmes associam-se com a capacidade de causar infecções, com o desenvolvimento de resistência contra o sistema imune do hospedeiro e contra os antifúngicos. O uso indiscriminado e a exposição prolongada aos antifúngicos induz o surgimento de resistência a esses medicamentos, além disso existem cepas de Candida albicans resistentes ao tratamento com antifúngicos azólicos. Devido a isso surge a necessidade de desenvolvimento de novos alvos terapêuticos. O objetivo desse estudo consiste no desenvolvimento de análogos da Histatina-5 com algumas modificações estruturais, a fim de potencializar a ação terapêutica já comprovada dos peptídeos da família das Histatinas. A Histatina-5GH apresenta maior carga positiva que os demais peptídeos devido a troca de duas glicinas na estrutura da Histatina-5 por duas histidinas. Por sua vez, a Histatina-5SC possui o resíduo de serina C-terminal substituído por...
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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During DNA replication the helicase (DnaB) recruits the primase (DnaG) in the replisome to initiate the polymerization of new DNA strands. DnaB is attached to the τ subunit of the clamp-loader that loads the β clamp and interconnects the core polymerases on the leading and lagging strands. The τ–DnaB−DnaG ternary complex is at the heart of the replisome and its function is likely to be modulated by a complex network of allosteric interactions. Using a stable ternary complex comprising the primase and helicase from Geobacillus stearothermophilus and the τ subunit of the clamp-loader from Bacillus subtilis we show that changes in the DnaB–τ interaction can stimulate allosterically primer synthesis by DnaG in vitro. The A550V τ mutant stimulates the primase activity more efficiently than the native protein. Truncation of the last 18 C-terminal residues of τ elicits a DnaG-stimulatory effect in vitro that appears to be suppressed in the native τ protein. Thus changes in the τ–DnaB interaction allosterically affect primer synthesis. Although these C-terminal residues of τ are not involved directly in the interaction with DnaB, they may act as a functional gateway for regulation of primer synthesis by τ-interacting components of the replisome through the τ–DnaB−DnaG pathway.
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Os peptídeos têm sido amplamente estudados e demonstrados como uma estratégia promissora no combate a micro-organismos patogênicos, devido aos inovadores mecanismos de ação que apresentam e a menor indução de resistência nos microorganismos. Os peptídeos da família das Histatinas, naturalmente presentes na saliva humana, são os principais agentes que auxiliam na cicatrização e oclusão de feridas, re-epitelização e, além disso, dispõem de mecanismos de ação contra microorganismos, em especial, a Candida albicans. O agente etiológico da Candidiose bucal é a Candida albicans, um patógeno de origem fúngica, que acomete indivíduos de todas as idades, indivíduos imunologicamente debilitados e, especialmente, os usuários de próteses dentárias. Um importante fator de virulência da Candida albicans é a habilidade de formar biofilmes, estrutura comunitária microbiana revestida por exopolissacarídeos, capaz de aderir-se a superfícies lisas. Os biofilmes associam-se com a capacidade de causar infecções, com o desenvolvimento de resistência contra o sistema imune do hospedeiro e contra os antifúngicos. O uso indiscriminado e a exposição prolongada aos antifúngicos induz o surgimento de resistência a esses medicamentos, além disso existem cepas de Candida albicans resistentes ao tratamento com antifúngicos azólicos. Devido a isso surge a necessidade de desenvolvimento de novos alvos terapêuticos. O objetivo desse estudo consiste no desenvolvimento de análogos da Histatina-5 com algumas modificações estruturais, a fim de potencializar a ação terapêutica já comprovada dos peptídeos da família das Histatinas. A Histatina-5GH apresenta maior carga positiva que os demais peptídeos devido a troca de duas glicinas na estrutura da Histatina-5 por duas histidinas. Por sua vez, a Histatina-5SC possui o resíduo de serina C-terminal substituído por...
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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The aim of this study was to characterize the physicochemical properties of bacterial cellulose (BC) membranes functionalized with osteogenic growth peptide (OGP) and its C-terminal pentapeptide OGP[10-14], and to evaluate in vitro osteoinductive potential in early osteogenesis, besides, to evaluate cytotoxic, genotoxic and/or mutagenic effects. Peptide incorporation into the BC membranes did not change the morphology of BC nanofibers and BC crystallinity pattern. The characterization was complemented by Raman scattering, swelling ratio and mechanical tests. In vitro assays demonstrated no cytotoxic, genotoxic or mutagenic effects for any of the studied BC membranes. Culture with osteogenic cells revealed no difference in cell morphology among all the membranes tested. Cell viability/proliferation, total protein content, alkaline phosphatase activity and mineralization assays indicated that BC-OGP membranes enabled the highest development of the osteoblastic phenotype in vitro. In conclusion, the negative results of cytotoxicity, genotoxicity and mutagenicity indicated that all the membranes can be employed for medical supplies, mainly in bone tissue engineering/regeneration, due to their osteoinductive properties.
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Gomesin (Gm) was the first antimicrobial peptide (AMP) isolated from the hemocytes of a spider, the Brazilian mygalomorph Acanthoscurria gomesiana. We have been studying the properties of this interesting AMP, which also displays anticancer, antimalarial, anticryptococcal and anti-Leishmania activities. In the present study, the total syntheses of backbone-cyclized analogues of Gm (two disulfide bonds), [Cys(Acm)2,15]-Gm (one disulfide bond) and [Thr2,6,11,15,d-Pro9]-Gm (no disulfide bonds) were accomplished, and the impact of cyclization on their properties was examined. The consequence of simultaneous deletion of pGlu1 and Arg16-Glu-Arg18-NH2 on Gm antimicrobial activity and structure was also analyzed. The results obtained showed that the synthetic route that includes peptide backbone cyclization on resin was advantageous and that a combination of 20% DMSO/NMP, EDC/HOBt, 60?degrees C and conventional heating appears to be particularly suitable for backbone cyclization of bioactive peptides. The biological properties of the Gm analogues clearly revealed that the N-terminal amino acid pGlu1 and the amidated C-terminal tripeptide Arg16-Glu-Arg18-NH2 play a major role in the interaction of Gm with the target membranes. Moreover, backbone cyclization practically did not affect the stability of the peptides in human serum; it also did not affect or enhanced hemolytic activity, but induced selectivity and, in some cases, discrete enhancements of antimicrobial activity and salt tolerance. Because of its high therapeutic index, easy synthesis and lower cost, the [Thr2,6,11,15,d-Pro9]-Gm analogue remains the best active Gm-derived AMP developed so far; nevertheless, its elevated instability in human serum may limit its therapeutic potential. Copyright (c) 2012 European Peptide Society and John Wiley & Sons, Ltd.
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Floating-Harbor syndrome (FHS) is a rare condition characterized by short stature, delayed osseous maturation, expressive-language deficits, and a distinctive facial appearance. Occurrence is generally sporadic, although parent-to-child transmission has been reported on occasion. Employing whole-exome sequencing, we identified heterozygous truncating mutations in SRCAP in five unrelated individuals with sporadic MS. Sanger sequencing identified mutations in SRCAP in eight more affected persons. Mutations were de novo in all six instances in which parental DNA was available. SRCAP is an SNF2-related chromatin-remodeling factor that serves as a coactivator for CREB-binding protein (CREBBP, better known as CBP, the major cause of Rubinstein-Taybi syndrome [RTS]). Five SRCAP mutations, two of which are recurrent, were identified; all are tightly clustered within a small (111 codon) region of the final exon. These mutations are predicted to abolish three C-terminal AT-hook DNA-binding motifs while leaving the CBP-binding and ATPase domains intact. Our findings show that SRCAP mutations are the major cause of FHS and offer an explanation for the clinical overlap between FHS and RTS.