Takabe T, Ishikawa H, Niwa S, Tanaka Y
J Biochem. 1984 Aug;96(2):385-93. doi: 10.1093/oxfordjournals.jbchem.a134849.
Chemically modified spinach plastocyanin, in which negatively charged carboxyl residues are replaced with positively charged amino residues, has been prepared. Four distinct species of chemically modified plastocyanin, having 1 to 4 mol of modified carboxyl residue per mol of plastocyanin, could be separated by ion-exchange chromatography on DEAE-Sephacel. The rate of electron transfer from reduced cytochrome f to oxidized singly substituted plastocyanin was 30% of that of the native unmodified plastocyanin, and the reaction rate decreased further with increasing number of modified carboxyl residues. These results indicate the importance of electrostatic interactions between the negative charges on plastocyanin and the positive charges on cytochrome f in this reaction. Since the overall net charge of cytochrome f is negative at neutral pH, the positive charges on cytochrome f involved in the reaction should be localized ones. On the other hand, the rates of electron transfer from reduced singly and doubly substituted plastocyanin to photooxidized P700 in the P700-chlorophyll alpha protein complex were similar to that of native plastocyanin, which suggests that these carboxyl residues have only a minor role in the electron transfer to P700. Although divalent cation is essential for the electron transfer from native plastocyanin to P700 at neutral pH, the triply substituted plastocyanin could donate electrons to P700 even without MgCl2, and the rate of this reaction reached the maximum at a low concentration of MgCl2 (less than 2.5 mM). The modification of four carboxyl residues per plastocyanin molecule activated this reaction to the maximum level without MgCl2.(ABSTRACT TRUNCATED AT 250 WORDS)
已制备出化学修饰的菠菜质体蓝素,其中带负电荷的羧基残基被带正电荷的氨基残基取代。通过在DEAE - 琼脂糖凝胶上进行离子交换色谱法,可以分离出四种不同的化学修饰质体蓝素,每摩尔质体蓝素含有1至4摩尔修饰的羧基残基。从还原型细胞色素f到氧化型单取代质体蓝素的电子转移速率是天然未修饰质体蓝素的30%,并且随着修饰羧基残基数量的增加,反应速率进一步降低。这些结果表明在该反应中质体蓝素上的负电荷与细胞色素f上的正电荷之间静电相互作用的重要性。由于细胞色素f在中性pH下的整体净电荷为负,参与反应的细胞色素f上的正电荷应该是局部的。另一方面,从还原型单取代和双取代质体蓝素到P700 - 叶绿素α蛋白复合物中光氧化的P700的电子转移速率与天然质体蓝素相似,这表明这些羧基残基在向P700的电子转移中仅起次要作用。虽然二价阳离子对于在中性pH下从天然质体蓝素向P700的电子转移至关重要,但三取代质体蓝素即使在没有MgCl2的情况下也能将电子提供给P700,并且该反应的速率在低浓度的MgCl2(小于2.5 mM)时达到最大值。每个质体蓝素分子修饰四个羧基残基可在没有MgCl2的情况下将该反应激活到最大水平。(摘要截短于250字)