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藻红蛋白与藻蓝蛋白的关联:紫球藻功能性能量传递藻胆体复合物的体外形成

Association of phycoerythrin and phycocyanin: in vitro formation of a functional energy transferring phycobilisome complex of Porphyridium sordidum.

作者信息

Lipschultz C A, Gantt E

出版信息

Biochemistry. 1981 Jun 9;20(12):3371-6. doi: 10.1021/bi00515a010.

Abstract

Functional in vitro association and dissociation of a phycobiliprotein complex, isolated from phycobilisomes of the red alga Porphyridium sordidum, were studied. The complex contained large bangiophyceaen phycoerythrin and cyanophytan phycocyanin in an equimolar ration and had absorption maxima at 625, 567, and 550 nm and a shoulder at 495 nm. Emission at 655 nm (with excitation at 545 nm) from phycocyanin indicated functional coupling. The complex was stable over a wide buffer concentration range, and, notably, it was maximally stable in low phosphate, less than 0.01 M, unlike the phycobilisomes, which dissociate at this concentration. Its molecular weight was estimated to be ca. 510000, and by electron microscopy it was seen to consist of two units of similar size. The complex in 0.1 M phosphate was separated on a sucrose gradient into a homogeneous phycoerythrin band and a spectrally heterogeneous phycocyanin band. In vitro association of phycoerythrin and phycocyanin resulted in a complex with the same absorbance, emission, sedimentation and molar pigment ratio as those of the native complex. The spectrally heterogeneous phycocyanin fractions from the dissociation gradient varied in the degree of association with phycoerythrin. Phycocyanin fractions absorbing from 622 to 633 nm exhibited high associability (greater than 70%), whereas those with maxima at 617-620 nm had low associability (less than 30%). The presence of a 30000 molecular weight polypeptide accompanied high associability, where it was ca. 2-fold more prominent. It is suggested that this polypeptide is involved in complex formation and could serve either in the stabilization of the conformational state of cyanophytan phycocyanin or as a direct linker between phycobiliproteins.

摘要

对从红藻紫球藻的藻胆体中分离出的藻胆蛋白复合物进行了体外功能关联和解离研究。该复合物含有等摩尔比的大型红毛菜科藻红蛋白和蓝藻藻蓝蛋白,在625、567和550 nm处有吸收最大值,在495 nm处有一个肩峰。藻蓝蛋白在655 nm处的发射(在545 nm处激发)表明存在功能偶联。该复合物在很宽的缓冲液浓度范围内都很稳定,值得注意的是,与藻胆体不同,藻胆体在此浓度下会解离,而该复合物在低磷酸盐(小于0.01 M)中稳定性最高。其分子量估计约为510000,通过电子显微镜观察到它由两个大小相似的单元组成。0.1 M磷酸盐中的复合物在蔗糖梯度上分离成一条均匀的藻红蛋白带和一条光谱异质的藻蓝蛋白带。藻红蛋白和藻蓝蛋白的体外缔合产生了一种与天然复合物具有相同吸光度、发射、沉降和摩尔色素比的复合物。解离梯度中光谱异质的藻蓝蛋白组分与藻红蛋白的缔合程度各不相同。吸收波长在622至633 nm之间的藻蓝蛋白组分表现出高缔合性(大于70%),而最大吸收波长在617 - 620 nm之间的组分缔合性较低(小于30%)。一种分子量为30000的多肽的存在伴随着高缔合性,其含量约为原来的2倍。有人认为这种多肽参与了复合物的形成,可能起到稳定蓝藻藻蓝蛋白构象状态的作用,或者作为藻胆蛋白之间的直接连接物。

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