Peters R L, van Kooten O, Vredenberg W J
J Bioenerg Biomembr. 1985 Aug;17(4):207-16. doi: 10.1007/BF00744203.
The effect of dicyclohexylcarbodiimide (DCCD) on the kinetics of the flash-induced P515 response and on the activity of the ATPase was investigated in isolated spinach chloroplasts. It was found that after the addition of 5 X 10(-8)mol DCCD the rate of ATP hydrolysis induced by a period of 60 sec illumination was decreased to less than 5% of its original value. At this concentration, hardly any effect, if at all, could be detected on the kinetics of the flash-induced P515 response, neither in dark-adapted nor in light-activated chloroplasts. It was concluded that the presence of concentrations of DCCD, sufficiently high to affect the ATPase activity, does not affect the kinetics of the flash-induced P515 response. Since DCCD decreases the H+ permeability of the membrane-bound ATPase, it was concluded that this permeability coefficient for protons is not an important factor in the regulation of the flash-induced membrane potential and, therefore, does not affect the kinetics of the flash-induced P515 response.
在分离的菠菜叶绿体中,研究了二环己基碳二亚胺(DCCD)对闪光诱导的P515反应动力学以及ATP酶活性的影响。结果发现,添加5×10⁻⁸mol DCCD后,60秒光照诱导的ATP水解速率降至其初始值的5%以下。在此浓度下,无论是暗适应的还是光激活的叶绿体,闪光诱导的P515反应动力学几乎未检测到任何影响。得出的结论是,存在足以影响ATP酶活性的DCCD浓度时,不会影响闪光诱导的P515反应动力学。由于DCCD降低了膜结合ATP酶的H⁺通透性,因此得出结论,质子的这种通透性系数不是调节闪光诱导膜电位的重要因素,因此不会影响闪光诱导的P515反应动力学。