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Starch Degradation in Spinach Leaves: ISOLATION AND CHARACTERIZATION OF THE AMYLASES AND R-ENZYME OF SPINACH LEAVES 1

机译:菠菜叶片中的淀粉降解:菠菜淀粉和R-酶的分离与鉴定1

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摘要

The properties of two amylase activities which differ in their substrate specificity and subcellular location as well as a chloroplast-associated R-enzyme (debranching activity) are reported. An extrachloroplastic amylase is resolved by gel filtration chromatography into two activities of 80,000 and 40,000 daltons. Both extrachloroplastic activities hydrolyze amylopectin and shellfish glycogen and only slowly hydrolyze rabbit liver glycogen, β-limit amylopectin, and amylose. In contrast, the major chloroplastic amylase attacks all of these glucans at comparable rates. Glucan hydrolysis by both the extrachloroplastic and chloroplastic amylase generates not only maltose but appreciable amounts of other oligosaccharides, whereas maltotetraose hydrolysis produces glucose, maltose, and maltotriose. The action patterns displayed by the amylase activities indicate that both are endoamylases, although they lack the typical Ca2+ requirement or heat stability of seed endosperm α-amylases. Dithiothreitol, glutathione (oxidized or reduced), ascorbate, dehydroascorbate, and dithiothreitol plus thioredoxin have no effect on either the chloroplastic or extrachloroplastic amylase activities.
机译:据报道,两种淀粉酶活性的特性在底物特异性和亚细胞位置以及叶绿体相关的R-酶(脱支活性)上不同。通过凝胶过滤色谱法将一种超塑性的淀粉酶分解为两种活性,分别为80,000和40,000道尔顿。叶绿体外活性均水解支链淀粉和贝类糖原,并且仅缓慢水解兔肝糖原,β-极限支链淀粉和直链淀粉。相反,主要的叶绿素淀粉酶以可比的速率攻击所有这些葡聚糖。葡聚糖通过叶绿体和叶绿体淀粉酶的水解不仅产生麦芽糖,而且产生大量其他寡糖,而麦芽四糖水解产生葡萄糖,麦芽糖和麦芽三糖。淀粉酶活性显示的作用模式表明它们都是内淀粉酶,尽管它们缺乏典型的Ca2 +需求或种子胚乳α-淀粉酶的热稳定性。二硫苏糖醇,谷胱甘肽(氧化或还原),抗坏血酸盐,脱氢抗坏血酸盐和二硫苏糖醇加硫氧还蛋白对叶绿素或叶绿素淀粉酶的活性均无影响。

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