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Chloroplast Integrity and ATP-Dependent CO2 Fixation in Spinacia oleracea

机译:菠菜叶绿体完整性和ATP依赖性CO2固定

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摘要

Washed whole chloroplasts of Spinacia oleracea isolated and assayed in a tris (hydroxymethyl aminomethane)-HCl buffered sucrose solution exhibited low dark CO2 fixing activity, whereas washed whole chloroplasts isolated in the same buffer but assayed in that buffer without sucrose exhibited much greater dark CO2 fixing activity. The lowered activity could be attributed to the impermeability of the chloroplast membrane to ribose-5-phosphate or adenosine triphosphate. The preservation of the integrity of the chloroplast membrane, as reflected by its impermeability to either or both of the abovementioned compounds, was measured by the fixation of 14CO2 into acid-stable products in the presence of ribose-5-phosphate and adenosine triphosphate by the whole chloroplast as compared with fixation by the chloroplast extract. An effect (i.e., apparent resistance to the passage of ribose-5-phosphate or adenosine-5-triphosphate into the chloroplast) similar to, but less pronounced than, that produced by the presence of sucrose in the isolation medium was observed upon the addition of MnCl2 or CaCl2 to the buffered sucrose isolation medium. The addition of KCl enhanced slightly the effect produced by addition of sucrose alone to the isolation medium. The presence of MgCl2 in the isolation medium, however, either caused the chloroplasts to become leaky or more fragile since more of the activity of the carboxylative phase enzymes appeared in the cytoplasm. When a mixture of all of the metal ions was added to the buffered sucrose suspending medium, the chloroplasts exhibited the same response observed with MgCl2 alone. The addition of ethylene diaminetetraacetate or dithiothreitol appeared to alter the permeability of the chloroplast membrane nonspecifically when the assay was conducted in the absence of sucrose. Specific activities (μmoles CO2 fixed/mg chlorophyll × hr) as high as 329.6 have been observed for dark fixation by chloroplasts. The phosphoenolpyruvate carboxylase activity in the chloroplasts was only one-seventh that of ribulose diphosphate carboxylase. The phosphoenolpyruvate carboxylase activity in the cytoplasm was 5 times that of the chloroplasts.
机译:分离并在三(羟甲基氨基甲烷)-HCl缓冲蔗糖溶液中测定的菠菜的洗涤过的全叶绿体显示出较低的深色CO2固定活性,而在相同缓冲液中分离出但在无蔗糖的缓冲液中测定出的洗涤过的完整叶绿体显示出了更高的深色CO2固定性活动。活性降低归因于叶绿体膜对5-磷酸核糖或三磷酸腺苷的不渗透性。通过将 14 CO2固定在酸稳定的产物中,并在存在核糖的情况下,可以测定叶绿体膜对上述任一化合物或两种化合物的不渗透性,从而保持了叶绿体膜的完整性。与通过叶绿体提取物固定相比,整个叶绿体中的5磷酸和腺苷三磷酸。添加后,观察到的效果(即,对核糖-5-磷酸或5-磷酸三磷酸腺苷通过叶绿体的明显阻力)与分离培养基中存在蔗糖时产生的效果相似,但不明显。 MnCl2或CaCl2加入缓冲的蔗糖分离培养基中。氯化钾的添加略微增强了将蔗糖单独添加至分离培养基所产生的效果。但是,在分离培养基中存在MgCl2会导致叶绿体渗漏或变得更脆弱,因为羧化酶的更多活性出现在细胞质中。当将所有金属离子的混合物添加到缓冲的蔗糖悬浮介质中时,叶绿体显示出与单独的MgCl2相同的响应。当在不存在蔗糖的情况下进行测定时,添加乙二胺四乙酸盐或二硫苏糖醇似乎非特异性地改变叶绿体膜的渗透性。对于叶绿体的暗固色,观察到了高达329.6的比活度(固定的微摩尔CO2 / mg叶绿素×hr)。叶绿体中的磷酸烯醇丙酮酸羧化酶活性仅为核糖二磷酸羧化酶的七分之一。细胞质中磷酸烯醇丙酮酸羧化酶活性是叶绿体的5倍。

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