Briskin D P, Thornley W R, Wyse R E
Plant Biochemistry and Bioregulation Laboratory, United States Department of Agriculture, Agricultural Research Service, Utah State University, Logan, Utah 84322.
Plant Physiol. 1985 Aug;78(4):871-5. doi: 10.1104/pp.78.4.871.
The process of sucrose transport was investigated in sealed putative tonoplast vesicles isolated from sugarbeet (Beta vulgaris L.) taproot. If the vesicles were allowed to develop a steady state pH gradient by the associated transport ATPase and 10 millimolar sucrose was added, a transient flux of protons out of the vesicles was observed. The presence of an ATPase produced pH gradient allowed [(14)C]sucrose transport into the vesicles to occur at a rate 10-fold higher than the rate observed in the absence of an imposed pH gradient. Labeled sucrose accumulated into the sealed vesicles could be released back to the external medium if the pH gradient was dissipated with carbonylcyanide-m-chlorophenyl hydrazone (CCCP). When the kinetics of ATP dependent [(14)C]sucrose uptake were examined, the kinetic profile followed the simple Michaelis-Menten relationship and a Michaelis constant of 12.1 millimolar was found. When a transient, inwardly directed sucrose gradient was imposed on the vesicles in the absence of charge compensating ions, a transient interior negative membrane potential was observed. This membrane potential could be prevented by the addition of CCCP prior to sucrose or dissipated by the addition of CCCP after sucrose was added. These results suggest that an electrogenic H(+)/sucrose antiport may be operating on the vesicle membrane.
在从甜菜(Beta vulgaris L.)主根分离的密封假定液泡膜囊泡中研究了蔗糖转运过程。如果通过相关的转运ATP酶使囊泡形成稳定状态的pH梯度,并添加10毫摩尔的蔗糖,会观察到质子从囊泡中短暂流出。ATP酶产生的pH梯度的存在使[¹⁴C]蔗糖以比在没有施加pH梯度时观察到的速率高10倍的速率转运到囊泡中。如果用羰基氰化物间氯苯腙(CCCP)消除pH梯度,积累在密封囊泡中的标记蔗糖可以释放回外部介质。当研究ATP依赖性[¹⁴C]蔗糖摄取的动力学时,动力学曲线遵循简单的米氏关系,并且发现米氏常数为12.1毫摩尔。当在没有电荷补偿离子的情况下对囊泡施加短暂的内向蔗糖梯度时,观察到短暂的内部负膜电位。在添加蔗糖之前添加CCCP可以防止这种膜电位,或者在添加蔗糖之后添加CCCP可以消除这种膜电位。这些结果表明,一种生电的H⁺/蔗糖反向转运体可能在囊泡膜上起作用。