Plant Cell Biology, Lund University, Box 7007, S-220 07, Lund, Sweden.
Photosynth Res. 1995 Jun;44(3):277-85. doi: 10.1007/BF00048601.
Thylakoid membranes of pea were used to study competition between extra-membrane fragments and their parental membrane-bound proteins. Phosphorylated and unphosphorylated fragments of light harvesting complex II (LHC II) from higher plants were used to compete with LHC II for interactions with itself and with other thylakoid protein complexes. Effects of these peptide fragments of LHC II and of control peptides were followed by 80 K chlorophyll fluorescence spectroscopy of isolated thylakoids. The phosphorylated LHC II fragment competes with membrane-bound phosphoproteins in the phosphatase reaction. The same fragment accelerates the process of dark-to-light adaptation and decreases the rate of the light-to-dark adaptation when these are followed by fluorescence spectroscopy. In contrast, the non-phosphorylated LHC II peptide does not affect the rate of adaptation but produces results consistent with inhibition of formation of a quenching complex. In this quenching complex we propose that LHC II remains inaccessible to the LHC II kinase, explaining an observed decrease in LHC II phosphorylation in the later stages of the time-course of phosphorylation. The most conspicuous protein which is steadily phosphorylated during the time-course of phosphorylation is the 9 kDa (psbH) protein. The participation of the phosphorylated form of psbH in the quenching complex, where it is inaccessible to the phosphatase, may explain its anomalously slow dephosphorylation. The significance of the proposed complex of LHC II with phospho-psbH is discussed.
我们利用豌豆的类囊体膜研究了膜外片段与其亲代膜结合蛋白之间的竞争。我们用高等植物的光捕获复合物 II(LHC II)的磷酸化和非磷酸化片段与 LHC II 本身及其它类囊体蛋白复合物竞争相互作用。通过对分离的类囊体进行 80 K 叶绿素荧光光谱分析,跟踪这些 LHC II 肽片段和对照肽的作用。磷酸化的 LHC II 片段在磷酸酶反应中与膜结合的磷酸化蛋白竞争。当用荧光光谱法跟踪暗适应和光适应过程时,相同的片段会加速这两个过程,并且降低光适应的速度。相反,非磷酸化的 LHC II 肽不会影响适应速度,但产生的结果与抑制猝灭复合物的形成一致。在这种猝灭复合物中,我们提出 LHC II 仍然不能被 LHC II 激酶识别,这解释了在磷酸化时间过程的后期 LHC II 磷酸化减少的现象。在磷酸化时间过程中最明显的持续磷酸化的蛋白质是 9 kDa(psbH)蛋白。磷酸化的 psbH 参与到猝灭复合物中,在这种复合物中它不能被磷酸酶作用,这可能解释了它异常缓慢的去磷酸化。我们讨论了所提出的 LHC II 与磷酸化 psbH 形成复合物的意义。