Harrington H M, Henke R R
The University of Tennessee/United States Department of Energy, Comparative Animal Research Laboratory, Oak Ridge, Tennessee 37830.
Plant Physiol. 1981 Feb;67(2):373-8. doi: 10.1104/pp.67.2.373.
Lysine transport into suspension-cultured Wisconsin-38 tobacco cells was observed. Uptake was linear (up to 90 minutes) with respect to time and amount of tissue only after 4 to 6 hours preincubation in calcium-containing medium. The observed cellular accumulation of lysine was against a concentration gradient and not due to exchange diffusion. Transport was stimulated by low pH and characterized by a biphasic uptake isotherm with two K(m) values for lysine. System I (K(m) approximately 5 x 10(-6) molar; V(max) approximately 180 nanomoles per gram fresh weight per hour) and system II (K(m) approximately 10(-4) molar; V(max) approximately 1900 nanomoles per gram fresh weight per hour) were inhibited by N-ethylmaleimide and a variety of respiratory inhibitors. This inhibition was not due to increased efflux. In antagonism experiments, system I was inhibited most effectively by basic amino acids, followed by the sulfur amino acids. System I was only slightly inhibited by the neutral and aromatic amino acids and was not inhibited by the acidic amino acids aspartic and glutamic acids. Transport by system II was inhibited by all of the tested amino acids (including aspartic and glutamic acids) and analogs; however, this system was not inhibited by d-arginine. Neither system was strongly inhibited by d-lysine or the lysine analog S-2-aminoethyl-l-cysteine. Arginine was shown to be a competitive inhibitor of both systems with values for K(i) similar to the respective K(m) values.These studies suggest the presence of at least two amino acid permeases in W-38 tobacco cells.
观察到赖氨酸转运进入悬浮培养的Wisconsin-38烟草细胞。只有在含钙培养基中预孵育4至6小时后,摄取量才与时间和组织量呈线性关系(长达90分钟)。观察到的细胞内赖氨酸积累是逆浓度梯度的,并非由于交换扩散。转运受到低pH的刺激,其特征是赖氨酸的双相摄取等温线有两个K(m)值。系统I(K(m)约为5×10(-6)摩尔;V(max)约为每克鲜重每小时180纳摩尔)和系统II(K(m)约为10(-4)摩尔;V(max)约为每克鲜重每小时1900纳摩尔)受到N-乙基马来酰亚胺和多种呼吸抑制剂的抑制。这种抑制不是由于外排增加。在拮抗实验中,系统I最有效地受到碱性氨基酸的抑制,其次是含硫氨基酸。系统I仅受到中性和芳香族氨基酸的轻微抑制,不受酸性氨基酸天冬氨酸和谷氨酸的抑制。系统II的转运受到所有测试氨基酸(包括天冬氨酸和谷氨酸)及其类似物的抑制;然而,该系统不受d-精氨酸的抑制。d-赖氨酸或赖氨酸类似物S-2-氨基乙基-l-半胱氨酸对这两个系统均无强烈抑制作用。精氨酸被证明是这两个系统的竞争性抑制剂,其K(i)值与各自的K(m)值相似。这些研究表明W-38烟草细胞中至少存在两种氨基酸通透酶。