Influence of KF, DCMU and removal of Ca+ on the high-spin EPR signal of the cytochrome b-559 heme Fe(III) ligated by OH- in chloroplasts.

Biochimica et biophysica acta Pub Date : 1996-11-12
R J Hulsebosch, A J Hoff, V A Shuvalov
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Abstract

An EPR signal at g = 6.8 attributed to the cytochrome (Cyt) b-559 heme Fe(III) ligated by OH- (Fiege, R., Schrieber, U., Lubitz, W., Renger, G. and Shuvalov, V.A. (1995) FEBS Lett. 377, 325-329) was studied. This signal is observed in intact chloroplasts when oxidized by 10 mM 2,3-dicyano,5,6-dichloro-p-benzoquinone (DDQ), but not when 5 mM p-benzoquinone is added. Addition of KF (100 mM) or removal of Ca 21 for blocking the water-oxidizing complex considerably decreases the heme Fe(III)-OH- EPR signal. In contrast, DCMU does not decrease this signal and does not influence its photochemical changes at 140 K. Thus, the EPR spectrum of Cyt b-559 Fe(III) ligated by OH- is not affected by changes at the acceptor side of Photosystem 11, and its photochemical decrease is probably not due to reduction via the acceptor side. Comparison of the effect of KF on the model heme Fe(III) in myoglobin (Mb) at pH 10.5 shows that F- replaces OH- as a ligand at the sixth coordination position of the heme Fe(III) in both Mb and chloroplasts Cyt b-559. This replacement is accompanied by changes of the symmetry of the molecular field causing a disappearance of the EPR signals at g = 6.8 and 5.0. Our results provide further evidence for a possible participation of the Cyt b-559 heme Fe ligated by OH- in photosynthetic water oxidation.

KF、DCMU和去除Ca+对叶绿体中OH-连接的细胞色素b-559血红素Fe(III)高自旋EPR信号的影响
研究了OH-连接的细胞色素(Cyt) b-559血红素Fe(III)在g = 6.8时的EPR信号(Fiege, R., Schrieber, U., Lubitz, W., Renger, g . and Shuvalov, va .(1995)中国生物医学工程学报,377,325-329)。在完整的叶绿体中,当被10 mM的2,3-二氰,5,6-二氯-对苯醌(DDQ)氧化时,可以观察到这种信号,但当添加5 mM的对苯醌时,则没有这种信号。添加KF (100 mM)或去除Ca 21以阻断水氧化配合物可显著降低血红素Fe(III)- oh - EPR信号。相比之下,DCMU不降低该信号,也不影响其在140 K下的光化学变化。因此,OH-连接的Cyt b-559 Fe(III)的EPR谱不受光系统11受体侧变化的影响,其光化学减少可能不是由于受体侧的减少。比较pH 10.5下KF对肌红蛋白(Mb)模型血红素Fe(III)的影响表明,在Mb和叶绿体Cyt b-559中,F-取代OH-成为血红素Fe(III)的第六个配位的配体。这种替换伴随着分子场对称性的改变,导致EPR信号在g = 6.8和5.0时消失。我们的结果进一步证明了OH-连接的Cyt b-559血红素Fe可能参与光合水氧化。
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