Gorman D S, Levine R P
The Biological Laboratories, Harvard University, Cambridge, Massachusetts 02138.
Plant Physiol. 1966 Dec;41(10):1637-42. doi: 10.1104/pp.41.10.1637.
The copper protein plastocyanin has been found to be an essential component of the photosynthetic electron transport chain of Chlamydomonas reinhardi, and in this paper we describe a method for its isolation and purification from the wild-type strain. In addition, we describe some of its properties and compare them with those reported for spinach plastocyanin.The plastocyanin was extracted from acetone powders prepared from intact cells, and it was purified by ion exchange chromatography on DEAE cellulose and gel filtration on Sephadex G-75. The yield of the purified protein ranged from plastocyanin equivalent to 2.0 to 2.5 mug atoms copper per 1000 mumoles chlorophyll. In general the absorption spectrum of plastocyanin from C. reinhardi resembled that of the plastocyanin from spinach. Some spectral differences were found in the ultraviolet region where, in contrast to spinach plastocyanin, that of C. reinhardi had a greater absorbance (relative to peaks in the visible) and less evidence for phenylalanine fine structure. The normal oxidation-reduction potential of C. reinhardi plastocyanin was found to be + 0.37 volts, the same as reported for spinach plastocyanin. The molecular weight of C. reinhardi plastocyanin has been estimated to be 13,000 +/- 2000. In contrast, the value for spinach plastocyanin has been found to be 21,000.
铜蛋白质体蓝素已被发现是莱茵衣藻光合电子传递链的重要组成部分,在本文中我们描述了一种从野生型菌株中分离和纯化它的方法。此外,我们描述了它的一些性质,并将其与菠菜质体蓝素的性质进行比较。质体蓝素是从完整细胞制备的丙酮粉中提取的,并通过在DEAE纤维素上的离子交换色谱和在Sephadex G - 75上的凝胶过滤进行纯化。纯化蛋白的产量范围为每1000微摩尔叶绿素相当于2.0至2.5微克原子铜的质体蓝素。一般来说,莱茵衣藻质体蓝素的吸收光谱与菠菜质体蓝素的相似。在紫外区域发现了一些光谱差异,与菠菜质体蓝素不同,莱茵衣藻的质体蓝素在该区域具有更高的吸光度(相对于可见光中的峰值),并且苯丙氨酸精细结构的证据较少。莱茵衣藻质体蓝素的正常氧化还原电位为 + 0.37伏,与菠菜质体蓝素的报道相同。莱茵衣藻质体蓝素的分子量估计为13,000 ± 2000。相比之下,菠菜质体蓝素的分子量为21,000。