Navarro J A, Hervás M, Sun J, De la Cerda B, Chitnis P R, De la Rosa M A
Instituto de Bioquímica Vegetal y Fotosíntesis, Centro Isla de la Cartuja, Américo Vespucio s/n, 41092, Sevilla, Spain.
Photosynth Res. 2000;65(1):63-8. doi: 10.1023/A:1006404621724.
Wild-type plastocyanin from the cyanobacterium Synechocystis sp. PCC 6803 does not form any kinetically detectable transient complex with Photosystem I (PS I) during electron transfer, but the D44R/D47R double mutant of copper protein does [De la Cerda et al. (1997) Biochemistry 36: 10125-10130]. To identify the PS I component that is involved in the complex formation with the D44R/D47R plastocyanin, the kinetic efficiency of several PS I mutants, including a PsaF-PsaJ-less PS I and deletion mutants in the lumenal H and J loops of PsaB, were analyzed by laser flash absorption spectroscopy. The experimental data herein suggest that some of the negative charges at the H loop of PsaB are involved in electrostatic repulsions with mutant plastocyanin. Mutations in the J loop demonstrate that this region of PsaB is also critical. The interaction site of PS I is thus not as defined as first expected but much broader, thereby revealing how complex the evolution of intermolecular electron transfer mechanisms in photosynthesis has been.
来自集胞藻6803(Synechocystis sp. PCC 6803)的野生型质体蓝素在电子传递过程中不会与光系统I(PS I)形成任何动力学上可检测到的瞬时复合物,但铜蛋白的D44R/D47R双突变体却会形成[德拉塞尔达等人(1997年),《生物化学》36卷:10125 - 10130页]。为了确定与D44R/D47R质体蓝素形成复合物所涉及的PS I组分,通过激光闪光吸收光谱法分析了几个PS I突变体的动力学效率,包括不含PsaF - PsaJ的PS I以及PsaB腔面H环和J环的缺失突变体。本文的实验数据表明,PsaB的H环上的一些负电荷参与了与突变体质体蓝素之间的静电排斥。J环中的突变表明PsaB的这个区域也很关键。因此,PS I的相互作用位点不像最初预期的那样明确,而是更广泛,从而揭示了光合作用中分子间电子传递机制的进化是多么复杂。