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Differential Subcellular Localization and Expression of ATP Sulfurylase and 5′-Adenylylsulfate Reductase during Ontogenesis of Arabidopsis Leaves Indicates That Cytosolic and Plastid Forms of ATP Sulfurylase May Have Specialized Functions

机译:拟南芥叶片成虫过程中亚磷酸亚砜和5-腺苷酸还原酶的亚细胞定位和表达差异表明ATP亚硫酸盐酶的胞质和质体形式可能具有专门的功能

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摘要

ATP sulfurylase and 5′-adenylylsulfate (APS) reductase catalyze two reactions in the sulfate assimilation pathway. Cell fractionation of Arabidopsis leaves revealed that ATP sulfurylase isoenzymes exist in the chloroplast and the cytosol, whereas APS reductase is localized exclusively in chloroplasts. During development of Arabidopsis plants the total activity of ATP sulfurylase and APS reductase declines by 3-fold in leaves. The decline in APS reductase can be attributed to a reduction of enzyme during aging of individual leaves, the highest activity occurring in the youngest leaves and the lowest in fully expanded leaves. By contrast, total ATP sulfurylase activity declines proportionally in all the leaves. The distinct behavior of ATP sulfurylase can be attributed to reciprocal expression of the chloroplast and cytosolic isoenzymes. The chloroplast form, representing the more abundant isoenzyme, declines in parallel with APS reductase during aging; however, the cytosolic form increases over the same period. In total, the results suggest that cytosolic ATP sulfurylase plays a specialized function that is probably unrelated to sulfate reduction. A plausible function could be in generating APS for sulfation reactions.
机译:ATP硫酸化酶和5'-腺苷酸硫酸盐(APS)还原酶催化硫酸盐同化途径中的两个反应。拟南芥叶片的细胞分级分离显示,ATP氧化酶同工酶存在于叶绿体和胞质溶胶中,而APS还原酶仅位于叶绿体中。在拟南芥植物的发育过程中,叶片中ATP硫化酶和APS还原酶的总活性下降了3倍。 APS还原酶的下降可归因于各个叶片衰老过程中酶的减少,活性最高的发生在最年轻的叶片中,而活性最低的发生在完全膨胀的叶片中。相比之下,所有叶片中的总ATP硫化酶活性均成比例下降。 ATP硫酸化酶的独特行为可以归因于叶绿体和胞浆同工酶的相互表达。在老化过程中,代表更丰富的同工酶的叶绿体形式与APS还原酶平行下降。然而,胞浆形式在同一时期增加。总的来说,这些结果表明胞质ATP硫化酶起着特殊的作用,可能与硫酸盐的还原无关。可能的功能可能是为硫酸化反应生成APS。

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