O'Carra P, Murphy R F, Killilea S D
Biochem J. 1980 May 1;187(2):303-9. doi: 10.1042/bj1870303.
Pigments released from phycoerythrins and phycocyanins by treatment with hot methanol are currently regarded as equivalent to the native chromophores phycoerythrobilin and phycocyanobilin. However, evidence presented here confirms the original view of O'Carra & O'hEocha [(1966 Phytochemistry 5, 993-997] that these methanol-released pigments are artefacts differing in their chromophoric conjugated systems from the native protein-bound prosthetic groups. By contrast, the native spectral properties are retained in pigments released by careful acid treatment of the biliproteins and these acid-released phycobilins, rather than the methanol-released pigments, are therefore regarded as the protein-free forms of the native chromophores. The conclusion reached by Chapman, Cole & Siegelman [(1968) J. Am. Chem. Soc. 89, 3643-3645], that all the algal biliproteins contain only phycoerythrobilin and phycocyanobilin, is shown to be incorrect. The identification of a urobilinoid chromophore, phycourobilin, accompanying phycoerythrobilin in B- and R- phycoerythrins is confirmed and supported by more extensive evidence. The cryptomonad phycocyanins are shown to contain a phycobilin chromophore accompanying phycocyanobilin. This further phycobilin has the spectral properties of the class of bilins known as violins and the provisional name "cryptoviolin" is proposed pending elucidation of its structure.
用热甲醇处理藻红蛋白和藻蓝蛋白释放出的色素,目前被认为等同于天然发色团藻红胆素和藻蓝胆素。然而,本文提供的证据证实了奥卡拉和奥赫奥查最初的观点【(1966)《植物化学》5, 993 - 997】,即这些甲醇释放的色素是人工产物,其发色团共轭体系与天然蛋白质结合的辅基不同。相比之下,通过对胆色素蛋白进行仔细的酸处理释放出的色素保留了天然光谱特性,因此这些酸释放的藻胆素,而非甲醇释放的色素,被视为天然发色团的无蛋白形式。查普曼、科尔和西格尔曼【(1968)《美国化学会志》89, 3643 - 3645】得出的所有藻类胆色素蛋白仅含有藻红胆素和藻蓝胆素的结论被证明是错误的。在B - 藻红蛋白和R - 藻红蛋白中,与藻红胆素相伴的尿胆素类发色团藻尿胆素的鉴定得到了更广泛证据的证实和支持。隐甲藻藻蓝蛋白被证明含有一种与藻蓝胆素相伴的藻胆素发色团。这种另外的藻胆素具有被称为紫红素类的胆素的光谱特性,在其结构阐明之前,建议暂定名为“隐甲藻紫红素”。