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Stromal Free Calcium Concentration and Light-Mediated Activation of Chloroplast Fructose-16-Bisphosphatase

机译:基质金属中钙的游离浓度和光介导的叶绿素-16-双磷酸酶的活化

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摘要

Light-mediated activation of fructose-1,6-bisphosphatase (EC 3.1.3.11) in intact spinach chloroplasts (Spinacia oleracea L.) is enhanced in the presence of 10−5 molar external free Ca2+. The most pronounced effect is observed during the first minutes of illumination. Ruthenium red, an inhibitor of light-induced Ca2+ influx, inhibits this Ca2+ stimulated activation. In isolated stromal preparations, the activation of fructose-1,6-bisphosphatase is already enhanced by 2 minutes of exposure to elevated Ca2+ concentrations in the presence of physiological concentrations of Mg2+ and fructose-1,6-bisphosphate. Maximal activation of the enzyme is achieved between 0.34 and 0.51 millimolar Ca2+. The Ca2+ mediated activation decreases with increasing fructose-1,6-bisphosphate concentration and with increasing pH. The data are consistent with the proposal that the illumination of chloroplasts leads to a transient increase of free stromal Ca2+. In dark-kept chloroplasts the steady-state concentration of free stromal Ca2+ is 2.4 to 6.3 micromolar as determined by null point titration. These observations support our previous proposal that light-induced Ca2+ influx into chloroplasts does not only influence the cytosolic concentration of free Ca2+ but also regulates enzymatic processes inside the chloroplast.
机译:在存在10 -5 摩尔外部游离Ca 2 + 。在照明的最初几分钟内观察到最明显的效果。钌红是光诱导的Ca 2 + 流入的抑制剂,它抑制了Ca 2 + 刺激的激活。在分离的基质制剂中,当存在生理浓度的Mg 2+ <2时,暴露于升高的Ca 2 + 浓度2分钟,果糖-1,6-双磷酸酶的活化作用已经增强。 / sup>和果糖1,6-双磷酸酯。在0.34至0.51毫摩尔Ca 2 + 之间可实现酶的最大活化。 Ca 2 + 介导的活化作用随着果糖1,,6-二磷酸酯浓度的增加和pH值的增加而降低。数据与叶绿体照亮导致游离基质Ca 2 + 瞬时增加的建议一致。通过零点滴定法测定,在黑暗保存的叶绿体中,游离基质Ca 2 + 的稳态浓度为2.4至6.3微摩尔。这些观察结果支持我们先前的提议,即光诱导的Ca 2 + 流入叶绿体不仅影响游离Ca 2 + 的胞浆浓度,而且还调节叶绿体内部的酶促过程。 。

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