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1.
Prep Biochem Biotechnol ; 46(6): 552-8, 2016 Aug 17.
Artículo en Inglés | MEDLINE | ID: mdl-26460683

RESUMEN

Spider dragline silk is a remarkably strong fiber with impressive mechanical properties, which were thought to result from the specific structures of the underlying proteins and their molecular size. In this study, silk protein 11R26 from the dragline silk protein of Nephila clavipes was used to analyze the potential effects of the special amino acids on the function of 11R26. Three protein derivatives, ZF4, ZF5, and ZF6, were obtained by site-directed mutagenesis, based on the sequence of 11R26, and among these derivatives, serine was replaced with cysteine, isoleucine, and arginine, respectively. After these were expressed and purified, the mechanical performance of the fibers derived from the four proteins was tested. Both hardness and average elastic modulus of ZF4 fiber increased 2.2 times compared with those of 11R26. The number of disulfide bonds in ZF4 protein was 4.67 times that of 11R26, which implied that disulfide bonds outside the poly-Ala region affect the mechanical properties of spider silk more efficiently. The results indicated that the mechanical performances of spider silk proteins with small molecular size can be enhanced by modification of the amino acids residues. Our research not only has shown the feasibility of large-scale production of spider silk proteins but also provides valuable information for protein rational design.


Asunto(s)
Aminoácidos/química , Proteínas de Insectos/biosíntesis , Ensayo de Materiales , Seda/metabolismo , Secuencia de Aminoácidos , Animales , Disulfuros/química , Elasticidad , Fermentación , Proteínas de Insectos/química , Proteínas de Insectos/metabolismo , Microscopía Electrónica , Arañas
2.
BMC Biotechnol ; 14: 30, 2014 Apr 25.
Artículo en Inglés | MEDLINE | ID: mdl-24766677

RESUMEN

BACKGROUND: 2-phenylethanl (2-PE) and its derivatives are important chemicals, which are widely used in food materials and fine chemical industries and polymers and it's also a potentially valuable alcohol for next-generation biofuel. However, the biosynthesis of 2-PE are mainly biotransformed from phenylalanine, the price of which barred the production. Therefore, it is necessary to seek more sustainable technologies for 2-PE production. RESULTS: A new strain which produces 2-PE through the phenylpyruvate pathway was isolated and identified as Enterobacter sp. CGMCC 5087. The strain is able to use renewable monosaccharide as the carbon source and NH4Cl as the nitrogen source to produce 2-PE. Two genes of rate-limiting enzymes, chorismate mutase p-prephenate dehydratase (PheA) and 3-deoxy-d-arabino-heptulosonic acid 7-phosphate synthase (DAHP), were cloned from Escherichia coli and overexpressed in E. sp. CGMCC 5087. The engineered E. sp. CGMCC 5087 produces 334.9 mg L⁻¹ 2-PE in 12 h, which is 3.26 times as high as the wild strain. CONCLUSIONS: The phenylpyruvate pathway and the substrate specificity of 2-keto-acid decarboxylase towards phenylpyruvate were found in E. sp. CGMCC 5087. Combined with the low-cost monosaccharide as the substrate, the finding provides a novel and potential way for 2-PE production.


Asunto(s)
Enterobacter/metabolismo , Alcohol Feniletílico/metabolismo , 3-Desoxi-7-Fosfoheptulonato Sintasa/genética , 3-Desoxi-7-Fosfoheptulonato Sintasa/metabolismo , Cloruro de Amonio/metabolismo , Cromatografía de Gases , Escherichia coli/enzimología , Monosacáridos/metabolismo , Alcohol Feniletílico/análisis , Prefenato Deshidrogenasa/genética , Prefenato Deshidrogenasa/metabolismo , Especificidad por Sustrato
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