Laboratory of General and Comparative Biochemistry, National Institute of Mental Health, Building 32, Room 101, 9000 Rockville Pike, Bethesda, Maryland 20892.
Plant Physiol. 1986 Jun;81(2):577-83. doi: 10.1104/pp.81.2.577.
Inorganic phosphate (Pi) inhibits threonine synthase of Lemna, and cystathionine gamma-synthase less strongly. AMP is an extremely potent and structurally specific inhibitor of threonine synthase. Each inhibition progressively decreases with increasing concentrations of O-phosphohomoserine (OPH). To study the in vivo effects of these inhibitions, Lemna was grown with a range of Pi concentrations. A 25,000-fold increase in Pi concentration in the culture medium caused an increase of only 6-fold in total phosphorus of the plants. This is explained by the fact that a high affinity Pi uptake system is selectively down-regulated during growth with high concentrations of Pi. Pi and AMP in plants grown with various Pi concentrations were determined, and concentrations estimated for chloroplasts, the organelle containing threonine synthase and cystathionine gamma-synthase. Calculations indicated that for growth at standard external Pi (0.4 millimolar) or above, if total OPH were uniformly distributed within the plants, activities of the two enzymes in question would be severely inhibited, and each would fall two orders of magnitude below the amount required to provide threonine (plus isoleucine) or methionine adequate for growth. If OPH were restricted to chloroplasts, these inhibitions would be much less severe, resulting in enzyme activities approaching the required physiological amounts. Evidence is presented that even up to 50 millimolar external Pi, this ion does not limit production of threonine or methionine sufficiently to retard growth, consistent with the postulated localization of OPH within chloroplasts.
无机磷酸盐 (Pi) 抑制浮萍的苏氨酸合酶,对胱硫醚 γ-合酶的抑制作用较弱。AMP 是苏氨酸合酶的一种极其有效和结构特异性的抑制剂。随着 O-磷酸高丝氨酸 (OPH) 浓度的增加,每种抑制作用逐渐降低。为了研究这些抑制作用的体内效应,用一系列 Pi 浓度培养浮萍。培养基中 Pi 浓度增加 25,000 倍,仅使植物总磷增加 6 倍。这是因为在高浓度 Pi 生长过程中,高亲和力 Pi 摄取系统被选择性地下调。测定了在各种 Pi 浓度下生长的植物中的 Pi 和 AMP,并估计了含苏氨酸合酶和胱硫醚 γ-合酶的细胞器叶绿体中的浓度。计算表明,对于在标准外部 Pi(0.4 毫摩尔)或更高浓度下的生长,如果总 OPH 在植物体内均匀分布,那么所讨论的两种酶的活性将受到严重抑制,每种酶的活性将下降两个数量级,低于提供苏氨酸(加异亮氨酸)或蛋氨酸以满足生长所需的量。如果 OPH 仅限于叶绿体,那么这些抑制作用就不那么严重,导致酶活性接近所需的生理量。有证据表明,即使外部 Pi 高达 50 毫摩尔,这种离子也不会严重限制苏氨酸或蛋氨酸的产生,从而阻碍生长,这与 OPH 定位于叶绿体中的假设一致。