Cole J S, Aleem M I
Proc Natl Acad Sci U S A. 1973 Dec;70(12):3571-5. doi: 10.1073/pnas.70.12.3571.
The apparently soluble electron-transport system, that does not sediment when centrifuged at 144,000 x g or 300,000 x g for 3 hr, catalyzes oxidative phosphorylation with an efficiency comparable to that of an intact mitochondrial system. While the proton-induced phosphorylation occurs in whole cells, crude cell-free extracts, and supernatants from low-speed centrifugation, it does not occur in either the 144,000 or 300,000 x g supernatant fractions. The data show that oxidative energy can be conserved as ATP under conditions that are incompatible with the basic postulate of the chemiosmotic hypothesis.
这种明显可溶的电子传递系统,在144,000×g或300,000×g离心3小时后不会沉淀,其催化氧化磷酸化的效率与完整的线粒体系统相当。虽然质子诱导的磷酸化发生在完整细胞、粗制无细胞提取物和低速离心的上清液中,但在144,000或300,000×g的上清液组分中均未发生。数据表明,在与化学渗透假说的基本假设不相符的条件下,氧化能可以以ATP的形式保存下来。