Ma Jinfang, Peng Lianwei, Guo Jinkui, Lu Qingtao, Lu Congming, Zhang Lixin
Photosynthesis Research Center, Key Laboratory of Photosynthesis and Environmental Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing, China.
Plant Cell. 2007 Jun;19(6):1980-93. doi: 10.1105/tpc.107.050526. Epub 2007 Jun 29.
To elucidate the molecular mechanism of photosystem II (PSII) assembly, we characterized the low psii accumulation2 (lpa2) mutant of Arabidopsis thaliana, which is defective in the accumulation of PSII supercomplexes. The levels and processing patterns of the RNAs encoding the PSII subunits are unaltered in the mutant. In vivo protein-labeling experiments showed that the synthesis of CP43 (for chlorophyll a binding protein) was greatly reduced, but CP47, D1, and D2 were synthesized at normal rates in the lpa2-1 mutant. The newly synthesized CP43 was rapidly degraded in lpa2-1, and the turnover rates of D1 and D2 were higher in lpa2-1 than in wild-type plants. The newly synthesized PSII proteins were assembled into PSII complexes, but the assembly of PSII was less efficient in the mutant than in wild-type plants. LPA2 encodes an intrinsic thylakoid membrane protein, which is not an integral subunit of PSII. Yeast two-hybrid assays indicated that LPA2 interacts with the PSII core protein CP43 but not with the PSII reaction center proteins D1 and D2. Moreover, direct interactions of LPA2 with Albino3 (Alb3), which is involved in thylakoid membrane biogenesis and cell division, were also detected. Thus, the results suggest that LPA2, which appears to form a complex with Alb3, is involved in assisting CP43 assembly within PSII.
为阐明光系统II(PSII)组装的分子机制,我们对拟南芥的低PSII积累2(lpa2)突变体进行了表征,该突变体在PSII超复合物的积累方面存在缺陷。编码PSII亚基的RNA水平和加工模式在该突变体中未发生改变。体内蛋白质标记实验表明,在lpa2 - 1突变体中,CP43(叶绿素a结合蛋白)的合成大幅减少,但CP47、D1和D2以正常速率合成。新合成的CP43在lpa2 - 1中迅速降解,lpa2 - 1中D1和D2的周转速率高于野生型植物。新合成的PSII蛋白组装成了PSII复合物,但该突变体中PSII的组装效率低于野生型植物。LPA2编码一种内在类囊体膜蛋白,它不是PSII的组成亚基。酵母双杂交实验表明,LPA2与PSII核心蛋白CP43相互作用,但不与PSII反应中心蛋白D1和D2相互作用。此外,还检测到LPA2与参与类囊体膜生物发生和细胞分裂的白化病3(Alb3)之间存在直接相互作用。因此,结果表明,似乎与Alb3形成复合物的LPA2参与协助PSII内CP43的组装。