Department of Biology, Technion-Israel Institute of Technology, Haifa, Israel.
Proc Natl Acad Sci U S A. 1983 Mar;80(5):1179-83. doi: 10.1073/pnas.80.5.1179.
Photosystem I reaction center was isolated from the cyanobacterium Mastigocladus laminosus. It contained four different subunits with molecular masses (as determined by sodium dodecyl sulfate gels) of about 70,000 (subunit I), 16,000 (subunit II), 11,000 (subunit III), and 10,000 (subunit IV) daltons. The purified reaction center contained about 100 chlorophyll a molecules per P(700); however, they could be readily depleted down to about 50 chlorophyll a per P(700) without loss in the photochemical activities. The reaction center was active in cytochrome c photooxidation, but the photooxidation of an acidic cytochrome, like the Euglena cytochrome 552, required the presence of cations. The purified reaction center was found to be similar in several respects to the photosystem I reaction centers from higher plants and, especially, to the one isolated from green algae. Subunit I appeared on sodium dodecyl sulfate gels in the same position and possessed the same shape of an apparent double band as the corresponding subunits I of green plants and of algae. Subunits I and II of photosystem I reaction centers from Mastigocladus, higher plants, and green algae showed immunological crossreactivity. This observation might serve as biochemical evidence for the common evolution of the photosystem I reaction centers. In higher plants and green algae subunit II is a product of cytoplasmic ribosomes and therefore, a high degree of homology should have been preserved upon transfer of its gene from the prokaryote to the nucleus of the eukaryotes.
光系统 I 反应中心从蓝藻 Mastigocladus laminosus 中分离得到。它包含四个不同的亚基,分子量(由十二烷基硫酸钠凝胶测定)约为 70000(亚基 I)、16000(亚基 II)、11000(亚基 III)和 10000(亚基 IV)道尔顿。纯化的反应中心每 P(700)含有约 100 个叶绿素 a 分子;然而,它们很容易被消耗到约 50 个叶绿素 a 每 P(700)而不损失光化学活性。反应中心在细胞色素 c 光氧化中是活跃的,但像 Euglena 细胞色素 552 这样的酸性细胞色素的光氧化需要阳离子的存在。纯化的反应中心在几个方面与高等植物的光系统 I 反应中心相似,特别是与从绿藻中分离的反应中心相似。亚基 I 在十二烷基硫酸钠凝胶上出现在相同的位置,并具有与绿藻和藻类的相应亚基 I 相同的表观双带形状。来自 Mastigocladus、高等植物和绿藻的光系统 I 反应中心的亚基 I 和 II 表现出免疫交叉反应性。这一观察结果可能为光系统 I 反应中心的共同进化提供生化证据。在高等植物和绿藻中,亚基 II 是细胞质核糖体的产物,因此,其基因从原核生物转移到真核生物的核中时,应该保持高度的同源性。