Valerio M, Haraux F, Gardeström P, Diolez P
Biosystèmes Membranaires (UPR 39), CNRS, Gif-sur-Yvette, France.
FEBS Lett. 1993 Mar 1;318(2):113-7. doi: 10.1016/0014-5793(93)80003-d.
Pea leaf mitochondria had a high ATP hydrolase activity following the collapse of the membrane potential by addition of valinomycin in state 4. In mitochondria isolated from potato tubers such ATP hydrolase activity was not observed. Pea leaf mitochondria also had a delta pH, in contrast to what was previously found for potato tuber mitochondria. This delta pH could, however, not explain the different results on ATP hydrolysis since this activity was also observed in the presence of nigericin. The results suggest a tissue-specific regulation of ATP hydrolysis in resting organs (potato tubers) as compared to active organs (leaves).
在状态4下,通过添加缬氨霉素使豌豆叶片线粒体的膜电位崩溃后,其ATP水解酶活性较高。而从马铃薯块茎中分离出的线粒体未观察到这种ATP水解酶活性。与之前对马铃薯块茎线粒体的研究结果不同,豌豆叶片线粒体也存在ΔpH。然而,这种ΔpH并不能解释ATP水解的不同结果,因为在尼日利亚菌素存在的情况下也观察到了这种活性。结果表明,与活跃器官(叶片)相比,静止器官(马铃薯块茎)中ATP水解存在组织特异性调节。