Sonoike K, Katoh S
Arch Biochem Biophys. 1986 Jan;244(1):254-60. doi: 10.1016/0003-9861(86)90115-3.
A chlorophyll-protein was isolated from a Synechococcus P700-chlorophyll a-protein complex free from small subunits (CP1-e) by sodium dodecyl sulfate (SDS)-polyacrylamide gel electrophoresis after treatment with 2% 2-mercaptoethanol and 2% SDS. In contrast to CP1-e which, when electrophoresed under denaturating conditions, showed two polypeptide bands of 62 and 60 kDa, the chlorophyll-protein contained only the 60-kDa polypeptide and hence is called CP60. The yield of CP60 was maximal with 1-2% SDS and 2-4% sulfhydryl reagents because the chlorophyll-protein was denatured at higher concentrations of the reagents. The absorption spectrum of CP60, which retained more than half of the chlorophyll alpha molecules originally associated with the 60-kDa subunit of the photosystem I reaction center complex, showed a red band maximum at 672 nm and a small absorption band around 700 nm at liquid nitrogen temperature. CP60 emitted a fluorescence band at 717 to 725 nm at 77 degrees K. The temperature dependence of the far red band of CP60 was essentially the same as that of CP1-e between 77 and 273 degrees K. No photoresponse of P700 was detected in CP60. The results suggest that the two polypeptides resolved by SDS-gel electrophoresis from CP1-e are apoproteins of two distinct chlorophyll-proteins and that CP60 represents a chlorophyll-bearing 60-kDa subunit functioning as an intrinsic antenna protein of the photosystem I reaction center complex. It will also be shown that the temperature dependence of the far red fluorescence band is not related to the photosystem I photochemistry.
用2% 2-巯基乙醇和2%十二烷基硫酸钠(SDS)处理后,通过SDS-聚丙烯酰胺凝胶电泳从不含小亚基(CP1-e)的聚球藻P700-叶绿素a-蛋白复合物中分离出一种叶绿素蛋白。与CP1-e不同,CP1-e在变性条件下电泳时显示出两条分别为62 kDa和60 kDa的多肽带,而该叶绿素蛋白仅含有60 kDa的多肽,因此被称为CP60。CP60的产量在SDS浓度为1-2%和巯基试剂浓度为2-4%时最高,因为在试剂浓度较高时叶绿素蛋白会变性。CP60的吸收光谱保留了最初与光系统I反应中心复合物60 kDa亚基相关的一半以上叶绿素α分子;在液氮温度下,其吸收光谱在672 nm处有一个最大红带,在700 nm左右有一个小吸收带。CP60在77 K时发射出717至725 nm的荧光带。在77至273 K之间,CP60远红带的温度依赖性与CP1-e基本相同。在CP60中未检测到P700的光响应。结果表明,通过SDS-凝胶电泳从CP1-e中分离出的两种多肽是两种不同叶绿素蛋白的脱辅基蛋白,并且CP60代表一种带有叶绿素的60 kDa亚基,作为光系统I反应中心复合物的内在天线蛋白发挥作用。还将表明,远红荧光带的温度依赖性与光系统I光化学无关。