Heathcote P, Williams-Smith D L, Sihra C K, Evans M C
Biochim Biophys Acta. 1978 Aug 8;503(2):333-42. doi: 10.1016/0005-2728(78)90192-5.
Photosystem I particles prepared from spinach chloroplast using Triton X-100 were frozen in the dark with the bound iron-sulphur Centre A reduced. Illumination at cryogenic temperatures of such samples demonstrated the photoreduction of the second bound iron-sulphur Centre B. Due to electron spin-electron spin interaction between these two bound iron-sulphur centres, it was not possible to quantify amounts of Centre B relative to the other components of the Photosystem I reaction centre by simulating the line-shape of its EPR spectrum. However, by deleting the free radical signal I from the EPR spectra of reduced Centre A alone or both Centres A plus B reduced, it was possible to double integrate these spectra to demonstrate that Centre B is present in the Photosystem I reaction centre in amounts comparable to those of Centre A and thus also signal I (P-700) and X. Oxidation-reduction potential titrations confirmed that Centre A had Em congruent to -550 mV, Centre B had Em congruent to -585 mV. These results, and those presented for the photoreduction of Centre B, place Centre B before Centre A in the sequence of electron transport in Photosystem I particles at cryogenic temperatures. When both A and B are reduced, P-700 photooxidation is reversible at low temperature and coupled to the reduction of the component X. The change from irreversible to reversible P-700 photooxidation and the photoreduction of X showed the same potential dependence as the reduction of Centre B with Em congruent to -585 mV, substantiating the identification of X as the primary electron acceptor of Photosystem I.
用Triton X-100从菠菜叶绿体中制备的光系统I颗粒,在黑暗中冷冻,结合的铁硫中心A处于还原状态。在此类样品的低温下进行光照,结果表明第二个结合的铁硫中心B发生了光还原。由于这两个结合的铁硫中心之间存在电子自旋-电子自旋相互作用,因此无法通过模拟其电子顺磁共振(EPR)谱线形状来定量中心B相对于光系统I反应中心其他组分的量。然而,通过单独从还原的中心A或同时还原的中心A加B的EPR谱中删除自由基信号I,可以对这些谱进行二次积分,以证明中心B在光系统I反应中心中的含量与中心A相当,因此也与信号I(P-700)和X相当。氧化还原电位滴定证实,中心A的Em约为-550 mV,中心B的Em约为-585 mV。这些结果以及中心B光还原的结果表明,在低温下,在光系统I颗粒的电子传递序列中,中心B位于中心A之前。当A和B都被还原时,P-700的光氧化在低温下是可逆的,并与组分X的还原相偶联。从不可逆的P-700光氧化到可逆的P-700光氧化以及X的光还原,显示出与Em约为-585 mV的中心B的还原相同的电位依赖性,证实了将X鉴定为光系统I的初级电子受体。