Erecinska M, Storey B T
Johnson Research Foundation, University of Pennsylvania, Philadelphia, Pennsylvania 19104.
Plant Physiol. 1970 Oct;46(4):618-24. doi: 10.1104/pp.46.4.618.
The oxidation kinetics of the two high potential flavo-proteins, one (Fp(hf)) fluorescent and the other (Fp(ha)) nonfluorescent, in mitochondria from skunk cabbage (Symplocarpus foetidus) spadices have been measured by combined spectrophotometry and fluorimetry. In the absence of respiratory inhibitors, both flavoproteins are oxidized at nearly the same rate with half-times between 120 and 160 milliseconds at 24 C. When slight differences in rate are observed, it is Fp(ha) which consistently has the shorter half-time. The presence of 0.3 millimolar KCN has no perceptible effect on the oxidation rate of either component. Antimycin A (2 nanomoles per milligram of protein) increases the oxidation half-time of Fp(ha) about 3-fold, but it has no effect on the oxidation half-time of Fp(hf). In contrast to these two inhibitors, m-chlorobenzhydroxamic acid-an inhibitor specific to the cyanide insensitive, alternate oxidase pathway in these mitochondria-increases the oxidation half-time of Fp(hf) 10-fold to about 2 seconds, while increasing that of Fp(ha) only some 20%. This result implies that the flavoprotein Fp(hf) mediates electron transport to the alternate oxidase from the region of the mitochondrial respiratory chain encompassing Fp(ha), ubiquinone, and the cytochromes b. The oxidation rate of cytochrome b(557) is unaffected by either m-chlorobenzhydroxamic acid or cyanide but is strongly inhibited by antimycin A. This result implies that cytochrome b(557) plays no direct role in the respiratory pathway to the alternate oxidase and is different from cytochrome b(7) found in mitochondria from the spadices of Arum maculatum.
通过联合分光光度法和荧光测定法,测量了来自臭菘(Symplocarpus foetidus)佛焰花序线粒体中两种高电位黄素蛋白的氧化动力学,其中一种(Fp(hf))具有荧光,另一种(Fp(ha))无荧光。在没有呼吸抑制剂的情况下,两种黄素蛋白以几乎相同的速率被氧化,在24℃时半衰期在120至160毫秒之间。当观察到速率有细微差异时,始终是Fp(ha)的半衰期较短。0.3毫摩尔的KCN对任何一种组分的氧化速率都没有明显影响。抗霉素A(每毫克蛋白质2纳摩尔)使Fp(ha)的氧化半衰期增加约3倍,但对Fp(hf)的氧化半衰期没有影响。与这两种抑制剂不同,间氯苯甲酰羟肟酸——这些线粒体中对氰化物不敏感的交替氧化酶途径的特异性抑制剂——使Fp(hf)的氧化半衰期增加10倍至约2秒,而仅使Fp(ha)的氧化半衰期增加约20%。这一结果表明,黄素蛋白Fp(hf)从线粒体呼吸链中包含Fp(ha)、泛醌和细胞色素b的区域介导电子传递至交替氧化酶。细胞色素b(557)的氧化速率不受间氯苯甲酰羟肟酸或氰化物的影响,但受到抗霉素A的强烈抑制。这一结果表明,细胞色素b(557)在通向交替氧化酶的呼吸途径中不发挥直接作用,并且与来自黄斑海芋佛焰花序线粒体中的细胞色素b(7)不同。