Hutchison R S, Betts S D, Yocum C F, Barry B A
Department of Biochemistry, College of Biological Sciences, University of Minnesota, St. Paul 55108, USA.
Biochemistry. 1998 Apr 21;37(16):5643-53. doi: 10.1021/bi9724467.
Photosystem II catalyzes the light-driven oxidation of water and reduction of plastoquinone in oxygenic photosynthesis. The manganese stabilizing protein (MSP) of photosystem II is an extrinsic subunit that plays an important role in catalytic activity. This subunit can be extracted and re-bound to the photosystem II reaction center. Extraction is associated with decreased stability of manganese binding by the enzyme and by loss in high rates of oxygen evolution activity; reconstitution reverses these phenomena. Since little is known about the assembly of complex membrane proteins, we have employed isotope editing and vibrational spectroscopy to obtain information about any changes in secondary structure that occur in MSP upon functional reconstitution to photosystem II. The spectroscopic data obtained are consistent with substantial changes in conformation when MSP binds to photosystem II; approximately 30-40% of the peptide backbone undergoes a change in secondary structure. These conclusions were reached by comparing different aliquots, before and after binding, of the same 13[C]MSP sample. Analysis of amide I band line shapes through Fourier deconvolution and nonlinear regression suggests that binding of MSP to photosystem II is associated with a decrease in random structure and an increase in beta-sheet content. We conclude that binding of MSP to the reaction center can induce folding of MSP. Our results also indicate that, in solution, MSP can sample a variety of conformational states, which differ in hydrogen bonding of the peptide backbone.
在光合放氧过程中,光系统II催化水的光驱动氧化和质体醌的还原。光系统II的锰稳定蛋白(MSP)是一种外在亚基,在催化活性中起重要作用。该亚基可以被提取并重新结合到光系统II反应中心。提取会导致酶对锰的结合稳定性降低以及氧释放活性的高速率丧失;重新组装可逆转这些现象。由于对复杂膜蛋白的组装了解甚少,我们采用了同位素编辑和振动光谱来获取有关MSP在功能上重新组装到光系统II时二级结构发生的任何变化的信息。获得的光谱数据与MSP与光系统II结合时构象的实质性变化一致;大约30 - 40%的肽主链二级结构发生了变化。这些结论是通过比较同一13[C]MSP样品结合前后的不同等分试样得出的。通过傅里叶反卷积和非线性回归对酰胺I带线形的分析表明,MSP与光系统II的结合与随机结构的减少和β - 折叠含量的增加有关。我们得出结论,MSP与反应中心的结合可以诱导MSP折叠。我们的结果还表明,在溶液中,MSP可以呈现多种构象状态,这些构象状态在肽主链的氢键作用方面有所不同。