Carnal N W, Black C C
Department of Botany and Department of Biochemistry, University of Georgia, Athens, Georgia 30601.
Plant Physiol. 1983 Jan;71(1):150-5. doi: 10.1104/pp.71.1.150.
A pyrophosphate-dependent phosphofructokinase (PPi-PFK) activity is detectable in extracts of a wide variety of primitive and advanced plants, the Charalean algae, and in the photosynthetic bacterium, Rhodospirillum rubrum. Angiosperms with extractable PPi-PFK activities 4- to 70-fold higher than the respective ATP-PFK activities tend to be succulent and to exhibit CAM. Even though PPi-PFK activity is not detected in crude extracts of some well known CAM plants, e.g. plants in the Crassulaceae, gel filtration of the extract and/or inclusion of the PPi-PFK activator, fructose 2,6-bisphosphate, in the assay reveals that a PPi-PFK activity is present in these species. Fructose 2,6-bisphosphate likewise activates PPi-PFK activities in extracts of C(3) and C(4) plants. C(3) and C(4) plant PPi-PFK activities are roughly equivalent to ATP-PFK activities in the same species. PPi-PFK activity is also detected in some bryophytes, lower vascular plants, ferns, and gymnosperms. The Charophytes, advanced algae presumed to be similar to species ancestral to vascular plants, exhibit at least 4-fold higher PPi-PFK than ATP-PFK activities. R. rubrum also exhibits a much higher PPi-PFK activity than ATP-PFK activity. These data indicate that PPi-PFK may serve as an alternate enzyme to ATP-PFK in glycolysis in a wide range of photosynthetic organisms.
在多种原始和高等植物、轮藻以及光合细菌红螺菌的提取物中可检测到焦磷酸依赖性磷酸果糖激酶(PPi - PFK)活性。具有可提取的PPi - PFK活性且比各自的ATP - PFK活性高4至70倍的被子植物往往肉质化并表现出景天酸代谢(CAM)。尽管在一些著名的CAM植物(如景天科植物)的粗提物中未检测到PPi - PFK活性,但对提取物进行凝胶过滤和/或在测定中加入PPi - PFK激活剂果糖2,6 - 二磷酸后发现,这些物种中存在PPi - PFK活性。果糖2,6 - 二磷酸同样能激活C3和C4植物提取物中的PPi - PFK活性。C3和C4植物的PPi - PFK活性大致等同于同一物种中的ATP - PFK活性。在一些苔藓植物、低等维管植物、蕨类植物和裸子植物中也检测到了PPi - PFK活性。轮藻,被认为与维管植物祖先物种相似的高等藻类,其PPi - PFK活性比ATP - PFK活性至少高4倍。红螺菌也表现出比ATP - PFK活性高得多的PPi - PFK活性。这些数据表明,在广泛的光合生物中,PPi - PFK可能在糖酵解中作为ATP - PFK的替代酶发挥作用。