Maxwell P C, Biggins J
Biochemistry. 1976 Sep 7;15(18):3975-81. doi: 10.1021/bi00663a011.
The light-induced turnover of P700 was measured spectrophotometrically in a wide variety of algae and some photosynthetic mutants. Analysis of the postillumination recovery of P700+ revealed that the apparent first-order rate constant for reduction via the cyclic pathway was much lower that that via the noncyclic pathway. After activation of photosystems 1 and 2 the half-time for reduction of P700+ was 5-20 ms, whereas after activation of primarily photosystem 1 a longer half-time of ca. 150 ms was observed. The extent of the photooxidation of P700 was the same in both regimes of illumination. The longer half-time was also noted after inhibition of photosystem 2 by 3-(3,4-dichlorophenyl)-1,1-dimethylurea or mild heat shock and in mutant algae known to lack a functional photosystem 2. No signal was observed in mutants lacking P700 itself but those strains lacking either plastocyanin or cytochrome f were capable of a very slow turnover (reduction t 1/2 greater than 500 ms at room temperature). This very slow turnover was not affected by carbonyl cyanide m-chlorophenylhydrazone or the plastoquinone antagonist, 2,5-dibromo-3-methyl-6-isopropyl-p-benzoquinone, indicating that the pathway for reduction of P700+ in these mutants is not energy linked and does not utilize the intersystem electron transport chain. The slow, 150 ms, reduction of P700+ due to cyclic flow was not observed when cells were engaged in photosynthesis at high-light intensities. The data are interpreted as evidence for the involvement of the total functional pool of P700 in both electron transport pathways, and we suggest that cyclic electron transport does not contribute to photosynthesis in oxygen-evolving autotrophs.
采用分光光度法在多种藻类和一些光合突变体中测定了光诱导的P700周转情况。对P700 +光照后恢复情况的分析表明,通过循环途径还原的表观一级速率常数远低于通过非循环途径还原的速率常数。光系统1和2激活后,P700 +还原的半衰期为5 - 20毫秒,而主要光系统1激活后,观察到较长的半衰期,约为150毫秒。在两种光照条件下,P700的光氧化程度相同。在用3-(3,4 -二氯苯基)-1,1 -二甲基脲抑制光系统2或轻度热激后,以及在已知缺乏功能性光系统2的突变藻类中,也观察到了较长的半衰期。在缺乏P700本身的突变体中未观察到信号,但那些缺乏质体蓝素或细胞色素f的菌株能够进行非常缓慢的周转(室温下还原半衰期大于500毫秒)。这种非常缓慢的周转不受羰基氰化物间氯苯腙或质体醌拮抗剂2,5 -二溴-3 -甲基-6 -异丙基对苯醌的影响,表明这些突变体中P700 +的还原途径与能量无关,且不利用系统间电子传递链。当细胞在高光强度下进行光合作用时,未观察到因循环流动导致的P700 +的150毫秒缓慢还原现象。这些数据被解释为P700的整个功能库参与两种电子传递途径的证据,并且我们认为循环电子传递对放氧自养生物的光合作用没有贡献。