Department of Plant Sciences, University of Arizona, Tucson, Arizona 85721.
Plant Physiol. 1981 Mar;67(3):594-6. doi: 10.1104/pp.67.3.594.
Enriched mitochondrial fractions isolated from durum wheat seedlings via differential centrifugation exhibited classical cyanide- or antimycin A-insensitive O(2) uptake which was inhibited by either salicylhydroxamic acid or propyl gallate. Further purification of this fraction using Percoll density gradients resulted in two discrete bands which were essentially homogeneous mitochondrial populations, as verified by electron microscopy. Respiratory O(2) uptake in these two fractions was completely inhibited by cyanide or antimycin A. Addition of linoleic acid to a third-step gradient band, which was shown to contain virtually no mitochondria, resulted in demonstrable cyanide-insensitive O(2) uptake. This O(2) consumption was completely inhibited by propyl gallate or salicylhydroxamic acid, two known lipoxygenase inhibitors. In contrast, addition of linoleic acid to the two purified mitochondrial fractions did not stimulate O(2) uptake. These data indicate that lipoxygenase oxygenation, the enzyme physically separable from the mitochondria, is responsible for the cyanide-insensitive component of O(2) uptake that was observed in subcellular fractions isolated from etiolated wheat seedlings.
通过差速离心从硬质小麦幼苗中分离得到富含线粒体的级分,表现出典型的氰化物或抗霉素 A 不敏感的 O(2)摄取,这种摄取被水杨羟肟酸或没食子酸丙酯抑制。使用 Percoll 密度梯度进一步纯化该级分,得到两个离散的带,这些带基本上都是同质的线粒体群体,通过电子显微镜得到验证。这两个级分中的呼吸 O(2)摄取完全被氰化物或抗霉素 A 抑制。向第三级带(几乎不含线粒体)中添加亚油酸,导致可检测到氰化物不敏感的 O(2)摄取。这种 O(2)消耗被丙基没食子酸或水杨羟肟酸完全抑制,这两种物质是已知的脂氧合酶抑制剂。相比之下,向两个纯化的线粒体级分中添加亚油酸不会刺激 O(2)摄取。这些数据表明,脂氧合酶的氧化作用,这种酶与线粒体在物理上是可分离的,负责从黄化小麦幼苗中分离的亚细胞级分中观察到的氰化物不敏感的 O(2)摄取的组成部分。