Warren P V, Parrett K G, Warden J T, Golbeck J H
Department of Chemistry, Portland State University, Oregon 97207.
Biochemistry. 1990 Jul 17;29(28):6545-50. doi: 10.1021/bi00480a001.
A new photosystem I core has been isolated that is devoid of the bound iron-sulfur clusters but preserves electron flow from P700 to the intermediate electron acceptor A1. The particle is prepared by incubation of a Synechococcus sp. PCC 6301 photosystem I core protein (which contains electron acceptors A0, A1, and FX) with 3 M urea and 5 mM K3Fe(CN)6 to oxidatively denature the FX iron-sulfur cluster to the level of zero-valence sulfur. In this apo-FX preparation, over 90% of the flash-induced absorption change at 820 nm decays with a 10-microseconds half-time characteristic of the decay of the P700 triplet state formed from the backreaction of P700+ with an acceptor earlier than FX. Chemical reduction at high pH values with aminoiminomethanesulfinic acid results in kinetics identical with those seen in the P700 chlorophyll a protein prepared with sodium dodecyl sulfate (SDS-CP1, which contains only electron acceptor A0); the flash-induced absorption change decays primarily with a 25-ns half-time characteristic of the backreaction between P700+ and A0-, and the magnitude of the total absorption change is larger than can be accounted for by the P700 content alone. Addition of oxygen results in a reversion to the 10-microseconds kinetic decay component attributed to the decay of the P700 triplet state. At 77 K, the optical transient in the apo-FX preparation decays with a 200-microseconds half-time characteristic of the backreaction between P700+ and A1-.(ABSTRACT TRUNCATED AT 250 WORDS)
一种新的光系统I核心已被分离出来,它不含结合的铁硫簇,但保留了从P700到中间电子受体A1的电子流动。该颗粒是通过将聚球藻属PCC 6301光系统I核心蛋白(其包含电子受体A0、A1和FX)与3 M尿素和5 mM铁氰化钾孵育来制备的,以使FX铁硫簇氧化变性至零价硫水平。在这种脱辅基FX制剂中,820 nm处闪光诱导的吸收变化超过90%以10微秒的半衰期衰减,这是由P700+与早于FX的受体的反向反应形成的P700三重态衰减的特征。在高pH值下用氨基亚氨基甲烷亚磺酸进行化学还原,其动力学与用十二烷基硫酸钠制备的P700叶绿素a蛋白(SDS-CP1,其仅包含电子受体A0)中观察到的动力学相同;闪光诱导的吸收变化主要以P700+与A0-之间反向反应的25纳秒半衰期衰减,并且总吸收变化的幅度大于仅由P700含量所解释的幅度。添加氧气会导致恢复到归因于P700三重态衰减的10微秒动力学衰减成分。在77 K时,脱辅基FX制剂中的光学瞬态以P700+与A1-之间反向反应的200微秒半衰期衰减。(摘要截断于250字)