White M J, Green B R
Eur J Biochem. 1987 Mar 16;163(3):545-51. doi: 10.1111/j.1432-1033.1987.tb10902.x.
A chlorophyll (a + b)--protein complex associated with photosystem I (PSI) was isolated from a larger PSI complex (CPIa) produced by electrophoresis of barley thylakoids solubilized with 300 mM octyl glucoside. It had an apparent Mr of 35,000-43,000 on 7.5% and 10% acrylamide gels respectively, and a chlorophyll a/b ratio of 2.5 +/- 1.5. Denaturation released four polypeptides migrating between 21-24 kDa. They were well separated from the polypeptides of the two photosystem II chlorophyll a + b antenna complexes: LHCII (25-27 kDa) and CP29 (28-29 kDa). In order to study the PSI antenna complex, antibodies were raised against highly purified CPIa. The antigen appeared to be pure when electrophoresed, blotted and reacted with its antiserum, i.e. anti-CPIa detected only the 64-66-kDa CPI apoprotein and the four 21-24 kDa antenna polypeptides. However, when blotted against the whole spectrum of thylakoid proteins, it cross-reacted with both LHCII and CP29 apoproteins. Removal of anti-CPI activity from the anti-CPIa did not affect these cross-reactions, showing that they were not due to antibodies directed against CPI. To show that the same antibody population was reacting with both the photosystem I and photosystem II antenna polypeptides, anti-CPIa was adsorbed onto highly purified CPIa on nitrocellulose. The bound antibody was eluted and used again in a Western blot against whole thylakoid proteins. This selected antibody population showed the same relative strength of reaction with photosystem I and photosystem II antenna polypeptides as the original antibody population had. Similar observations have been made with antibodies to the two photosystem II antenna complexes. We therefore conclude that there are antigenic determinants in common among the chlorophyll a + b binding polypeptides, and predict that there could be amino acid sequence similarities.
从用300 mM辛基葡糖苷溶解的大麦类囊体经电泳产生的较大的光系统I(PSI)复合物(CPIa)中分离出一种与光系统I(PSI)相关的叶绿素(a + b)-蛋白质复合物。在7.5%和10%的丙烯酰胺凝胶上,其表观分子量分别为35,000 - 43,000,叶绿素a/b比值为2.5±1.5。变性后释放出4种迁移率在21 - 24 kDa之间的多肽。它们与两个光系统II叶绿素a + b天线复合物:LHCII(25 - 27 kDa)和CP29(28 - 29 kDa)的多肽能很好地分离。为了研究PSI天线复合物,制备了针对高度纯化的CPIa的抗体。当抗原进行电泳、印迹并与抗血清反应时,抗原似乎是纯的,即抗CPIa仅检测到64 - 66 kDa的CPI脱辅基蛋白和4种21 - 24 kDa的天线多肽。然而,当与类囊体蛋白的全谱进行印迹时,它与LHCII和CP29脱辅基蛋白都发生了交叉反应。从抗CPIa中去除抗CPI活性并不影响这些交叉反应,表明它们不是由针对CPI的抗体引起的。为了表明同一抗体群体与光系统I和光系统II天线多肽都发生反应,将抗CPIa吸附到硝酸纤维素上的高度纯化的CPIa上。洗脱结合的抗体,并再次用于对全类囊体蛋白的蛋白质印迹分析。这种选择的抗体群体与光系统I和光系统II天线多肽反应的相对强度与原始抗体群体相同。对两个光系统II天线复合物的抗体也有类似的观察结果。因此,我们得出结论,叶绿素a + b结合多肽之间存在共同的抗原决定簇,并预测可能存在氨基酸序列相似性。