Raman Nitya Meenakshi, Ramasamy Suganthi
Department of Biotechnology, Dr. G. R. Damodaran College of Science, Bharathiar University, Coimbatore 641014, India.
Biochem Biophys Rep. 2017 Aug 19;12:98-107. doi: 10.1016/j.bbrep.2017.08.008. eCollection 2017 Dec.
Accurate characterization of melanin using analytical methodologies has proved to be difficult due to its heterogeneity, insolubility in wide pH and broad range of solvents. The present study was undertaken to characterize melanin extracted from an environmental AFGRD105 by studying its genes, chemical properties and spectral data. A gene based approach to confirm the type of melanin carried out indicated the extracted melanin to be of the dihydroxynaphthalene type. On comparison with synthetic melanin, UV-Vis and IR spectra of the extracted melanin revealed characteristic peaks that can be further used for confirmation of DHN-melanin extracted from any source. Solid state C NMR spectroscopy established the presence of the hydroxyl-naphthalene moiety and validated the results obtained by genetic analysis. The correct assignment of the observed spectral frequency characteristic of functional groups can be further adapted in future works that deal with binding capacities and biomolecule systems involving melanin.
由于黑色素具有异质性、在广泛的pH值范围内不溶且在多种溶剂中不溶,因此使用分析方法对其进行准确表征一直很困难。本研究旨在通过研究从环境AFGRD105中提取的黑色素的基因、化学性质和光谱数据来对其进行表征。一种基于基因的方法来确认所携带的黑色素类型,结果表明提取的黑色素为二羟基萘型。与合成黑色素相比,提取的黑色素的紫外可见光谱和红外光谱显示出特征峰,这些特征峰可进一步用于确认从任何来源提取的二羟基萘黑色素。固态碳核磁共振光谱确定了羟基萘部分的存在,并验证了遗传分析获得的结果。在未来涉及黑色素的结合能力和生物分子系统的工作中,可以进一步采用对观察到的官能团光谱频率特征的正确归属。