Laboratorio de Fotofísica y Espectroscopía Molecular, Instituto de Química, Pontificia Universidad Católica de Valparaíso, Av. El Parque Sur S/N, Campus Curauma, Valparaiso, Chile.
Amino Acids. 2012 Jun;42(6):2079-88. doi: 10.1007/s00726-011-0939-6. Epub 2011 May 24.
The role of the titanium dioxide (rutile and anatase) with and without room light on the thermal synthesis of the glycine-L-glutamine (Gly-Gln) polymer is described. The efficiency in percentage of polymerization with room light was increased in 6% in the presence of rutile and in 23% in the presence of anatase. The thermal synthesis in the molten state was carried out in the absence and presence of both oxides. In all cases, the vibrational spectra showed characteristic group frequencies corresponding to a polypeptide structure. No spectral differences were observed by room light effect on the polymer on rutile. However, the polymer obtained in the presence of anatase and room light shows spectral changes associated with the formation of shorter new abundant and conformationally different species compared with the original polymer. The SEM-EDX characterization of the solid phase involved in the thermal synthesis showed that the morphology of the polypeptide is different in the presence of rutile compared to anatase. The SDS-PAGE and GPC results suggest that smaller chains are formed in the presence of both oxides and the distribution of the size and weight of each polymer molecule is completely different when the condensation is performed in the presence of anatase or rutile. Nuclear magnetic resonance analyses confirmed the incorporation of both Gly and Gln residues in the polymers, with a prevalence of Gly. Both possible sequences N-GlyGln-C and N-GlnGly-C were also detected.
描述了金红石和锐钛矿二氧化钛(TiO2)在有无室内光条件下对甘氨酸-L-谷氨酰胺(Gly-Gln)聚合物热合成的作用。在金红石存在下,聚合效率提高了 6%,在锐钛矿存在下提高了 23%。在熔融状态下进行了无和两种氧化物存在下的热合成。在所有情况下,振动光谱均显示出与多肽结构相对应的特征基团频率。在金红石上,室内光对聚合物没有光谱影响。然而,在存在锐钛矿和室内光的情况下获得的聚合物显示出与较短的新丰富和构象不同的物种形成相关的光谱变化,与原始聚合物相比。涉及热合成的固相的 SEM-EDX 表征表明,在金红石存在下,多肽的形态与锐钛矿存在下的形态不同。SDS-PAGE 和 GPC 结果表明,在两种氧化物存在下形成了较小的链,并且当在锐钛矿或金红石存在下进行缩合时,每个聚合物分子的大小和重量分布完全不同。核磁共振分析证实了两种 Gly 和 Gln 残基在聚合物中的掺入,并且 Gly 占优势。还检测到两种可能的序列 N-GlyGln-C 和 N-GlnGly-C。