Roche Institute of Molecular Biology, Nutley, New Jersey 07110.
Plant Physiol. 1992 May;99(1):239-46. doi: 10.1104/pp.99.1.239.
Photosystem I contains several peripheral membrane proteins that are located on either positive (luminal) or negative (stromal or cytoplasmic) sides of thylakoid membranes of chloroplasts or cyanobacteria. Incorporation of two peripheral subunits into photosystem I of the cyanobacterium Synechocystis species PCC 6803 was studied using a reconstitution system in which radiolabeled subunits II (PsaD) and IV (PsaE) were synthesized in vitro and incubated with the isolated thylakoid membranes. After such incubation, the subunits were found in the membranes and were resistant to digestion with proteases and removal by 2 molar NaBr. All of the radioactive proteins incorporated in the membrane were found in the photosystem I complex. The subunit II was assembled specifically into cyanobacterial thylakoid membranes and not into Escherichia coli cell membranes or thylakoid membranes isolated from spinach. The assembly process did not require ATP or proton motive force, and it was not stimulated by ATP. The assembly of subunits II and IV into thylakoid membranes isolated from the strain AEK2, which lacks the gene psaE, was increased two- to threefold. The incorporation of subunit II was 15 to 17 times higher in the thylakoids obtained from the strain ADK3 in which the gene psaD has been inactivated. However, assembly of subunit IV in the same thylakoids was reduced by 65%, demonstrating that the presence of subunit II is required for the stable assembly of subunit IV. Large deletions in subunit II prevented its incorporation into thylakoids and assembly into photosystem I, suggesting that the overall conformation of the protein rather than a specific targeting sequence is required for its assembly into photosystem I.
光系统 I 包含几个位于叶绿体或蓝藻类囊体膜的正(腔)或负(基质或细胞质)侧的外周膜蛋白。使用体外合成放射性标记的亚基 II(PsaD)和 IV(PsaE)并与分离的类囊体膜孵育的重组系统研究了将两个外周亚基掺入蓝藻聚球藻 PCC 6803 的光系统 I 中。孵育后,发现这些亚基位于膜中并且对蛋白酶的消化和 2 摩尔 NaBr 的去除具有抗性。在膜中掺入的所有放射性蛋白都存在于光系统 I 复合物中。亚基 II 特异性组装到蓝藻类囊体膜中,而不是组装到大肠杆菌细胞膜或菠菜分离的类囊体膜中。组装过程不需要 ATP 或质子动力势,并且不受 ATP 刺激。亚基 II 和 IV 组装到缺乏 psaE 基因的菌株 AEK2 分离的类囊体膜中增加了两到三倍。在 psaD 基因失活的 ADK3 菌株中获得的类囊体中,亚基 II 的掺入增加了 15 到 17 倍。然而,同一类囊体中亚基 IV 的组装减少了 65%,表明亚基 II 的存在是亚基 IV 稳定组装所必需的。亚基 II 中的大片段缺失阻止其掺入类囊体并组装到光系统 I 中,表明该蛋白的整体构象而不是特定的靶向序列是其组装到光系统 I 中所必需的。