Adams P B
Plant Physiol. 1970 Apr;45(4):500-3. doi: 10.1104/pp.45.4.500.
Incubation of freshly cut carrot tissue in Na(3)ADP and Na(3)ATP promotes a marked intracellular increase in both ADP and ATP. The rapid increase in ATP during an ADP incubation and in ADP during an ATP incubation results from the activity of cytoplasmic enzyme systems upon the nucleotide absorbed into the cell from the incubation medium. There is a crossover at the pyruvate kinase reaction, but not at phosphofructokinase, when either ADP or ATP is added to freshly cut tissue. In tissue slices washed in distilled water, pyruvate kinase exhibits a negative crossover in the first 2 hours and a positive crossover between 2 and 10 hours after cutting. Cutting induces large changes in levels of nucleotides and glycolytic intermediates. There is an immediate depletion of these compounds upon cutting, so that nucleotides are added to a system where respiration rate is limited by endogenous nucleotide level. Variation in respiratory values for fresh cut tissue can be explained in terms of a range of endogenous ADP levels in different tissue batches. Nucleotide incubation experiments are discussed in relation to the provision of ADP to rate-limiting pyruvate kinase during the first phase in development of the induced respiration.
将刚切下的胡萝卜组织置于Na₃ADP和Na₃ATP中孵育,会促使细胞内ADP和ATP显著增加。在ADP孵育期间ATP的快速增加以及在ATP孵育期间ADP的快速增加,是由于细胞质酶系统对从孵育培养基吸收到细胞内的核苷酸起作用的结果。当将ADP或ATP添加到刚切下的组织中时,在丙酮酸激酶反应处存在交叉现象,但在磷酸果糖激酶处不存在。在蒸馏水中洗涤过的组织切片中,丙酮酸激酶在切割后的最初2小时内呈现负交叉,在2至10小时之间呈现正交叉。切割会引起核苷酸和糖酵解中间产物水平的大幅变化。切割后这些化合物会立即耗尽,因此将核苷酸添加到一个呼吸速率受内源性核苷酸水平限制的系统中。新鲜切割组织呼吸值的变化可以用不同组织批次中一系列内源性ADP水平来解释。核苷酸孵育实验是针对在诱导呼吸发展的第一阶段向限速丙酮酸激酶提供ADP进行讨论的。