Datko A H, Mudd S H
Laboratory of General and Comparative Biochemistry, National Institute of Mental Health, Bethesda, Maryland 20892.
Plant Physiol. 1986 May;81(1):285-8. doi: 10.1104/pp.81.1.285.
Lemna paucicostata Hegelm. 6746 possesses specific systems for uptake of choline and ethanolamine. Each is distinct from the six other systems for uptake of organic compounds so far identified in this plant. Both systems show biphasic kinetics, so that uptake by them can be described as the composite result of two Michaelis-Menten processes. Inhibitor studies are reported which indicate the very strict structural specificity of each system. The kinetic constants of choline uptake are such that, at an external concentration of 0.65 micromolar, the total requirement of the plant for this compound would be met, 41% via the high affinity system and 59% via the lower. At an external concentration of 2.4 micromolar ethanolamine, an amount of this compound sufficient to form the total choline of the plant would be supplied, 59% via the high affinity system and 41% via the lower. These, and other observations, strongly support the physiological importance of these systems under natural conditions.
少脉浮萍Lemna paucicostata Hegelm. 6746具有摄取胆碱和乙醇胺的特定系统。这两个系统与该植物中迄今已鉴定出的其他六种有机化合物摄取系统都不同。这两个系统均呈现双相动力学,因此它们的摄取可描述为两个米氏过程的复合结果。本文报道的抑制剂研究表明每个系统具有非常严格的结构特异性。胆碱摄取的动力学常数表明,在外部浓度为0.65微摩尔时,植物对该化合物的总需求将得到满足,其中41%通过高亲和力系统摄取,59%通过低亲和力系统摄取。在外部乙醇胺浓度为2.4微摩尔时,该化合物的供应量足以形成植物中的总胆碱,其中59%通过高亲和力系统摄取,41%通过低亲和力系统摄取。这些以及其他观察结果有力地支持了这些系统在自然条件下的生理重要性。