Riethman H C, Sherman L A
University of Missouri-Columbia, Division of Biological Sciences 65211.
Biochim Biophys Acta. 1988 Sep 14;935(2):141-51. doi: 10.1016/0005-2728(88)90211-3.
An Anacystis nidulans R2 chlorophyll-protein associated with Photosystem II in iron-stressed cells (Pakrasi, H.B., Riethmann, H.C. and Sherman, L.A. (1985) Proc. Natl. Acad. Sci. USA 82, 6903-6907) has been biochemically purified and characterized. Anion exchange chromatography of dodecyl-beta-D-maltoside-solubilized membranes from iron-deficient cells was used to recover this chlorophyll-protein (termed CPVI-4) in high yield and in a relatively native state. CPVI-4 has a room temperature absorption maximum at 671 nm, a 77 K chlorophyll fluorescence peak at 681 nm, and contains polypeptides of 36, 34 and 12 kDa. The 36 and 34 kDa polypeptides are associated with chlorophyll on mildly denaturing acrylamide gels of purified CPVI-4, although only the 34 kDa protein is immunoreactive with antisera elicited against the gel-purified chlorophyll-protein. Immunoblotting experiments with dodecyl-beta-D-maltoside-solubilized membrane fractions and purified CPVI-4 indicate that CPVI-4 does not contain previously identified Photosystem II core proteins. CPVI-4 likely functions as a light-harvesting antenna complex in iron-starved cells (where phycobilisomes are absent or diminished) and, in addition, may contribute chlorophyll to the reaction center complexes during their assembly in the early stages of recovery from iron stress.
与铁胁迫细胞中光系统II相关的集胞藻6803 R2叶绿素蛋白(帕克拉斯,H.B.,里特曼,H.C.和谢尔曼,L.A.(1985年)《美国国家科学院院刊》82,6903 - 6907)已通过生化方法纯化并进行了表征。利用十二烷基-β-D-麦芽糖苷增溶的缺铁细胞的膜进行阴离子交换色谱,以高产量和相对天然的状态回收这种叶绿素蛋白(称为CPVI - 4)。CPVI - 4在室温下的最大吸收峰位于671 nm,在77 K时叶绿素荧光峰位于681 nm,并且含有36 kDa、34 kDa和12 kDa的多肽。在纯化的CPVI - 4的轻度变性丙烯酰胺凝胶上,36 kDa和34 kDa的多肽与叶绿素相关,尽管只有34 kDa的蛋白与针对凝胶纯化的叶绿素蛋白产生的抗血清发生免疫反应。用十二烷基-β-D-麦芽糖苷增溶的膜组分和纯化的CPVI - 4进行的免疫印迹实验表明,CPVI - 4不包含先前鉴定的光系统II核心蛋白。CPVI - 4可能在缺铁细胞(藻胆体缺失或减少)中作为光捕获天线复合物发挥作用,此外,在从铁胁迫恢复的早期阶段,其组装过程中可能为反应中心复合物提供叶绿素。