Akulova E A, Roshchipa V V
Biokhimiia. 1976 Oct;41(10):1742-7.
Redox conversions of cytochrome f were studied in intact pea leaves by double wavelength difference spectrophotometry. Using the inhibition of the photosystem II activity by far red light (719 nm) or diurone, it was found that cytochrome f is located between two photosystems on the oxidative side of photosystem I. The inhibitors of phosphorylation, , e.g. antimycin A and phloridzine, as well as the uncoupler, methylamine, strongly decreased electron transport through the carrier. It is concluded that cytochrome f is functioning in the non-cyclic phosphorylation. It is suggested that in vivo cytochrome f is not coupled with cyclic electron transfer.
通过双波长差示分光光度法研究了完整豌豆叶片中细胞色素f的氧化还原转化。利用远红光(719nm)或敌草隆对光系统II活性的抑制作用,发现细胞色素f位于光系统I氧化侧的两个光系统之间。磷酸化抑制剂,如抗霉素A和根皮苷,以及解偶联剂甲胺,强烈降低了通过该载体的电子传递。得出的结论是,细胞色素f在非循环磷酸化中起作用。有人提出,在体内细胞色素f与循环电子传递不偶联。