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Isolation and partial characterisation of acid phosphatase isozymes from dormant oilseed of Corylus avellana L.

机译:榛子休眠油籽中酸性磷酸酶同工酶的分离和部分鉴定

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The acid phosphatase (orthophosphoric-monoester phosphohydrolase, EC 3.1.3.2) complement from dormant hazel (Corylus avellana L.) seeds was found to exhibit significant electrophoretic heterogeneity partially attributable to the presence of distinct molecular forms. In axiferous tissue, total acid phosphatase activity increased in a biphasic fashion during chilling, a treatment necessary to alleviate seed dormancy. Three acid phosphatase isozymes were isolated from cotyledons of dormant hazel seeds by successive ammonium sulphate precipitation, size-exclusion, Concanavalin A affinity, cation- and anion-exchange chromatographies resulting in 75-, 389- and 191-fold purification (APase1, APase2, APase3, respectively). The three glycosylated isoforms were isolated to catalytic homogeneity as determined by electrophoretic, kinetic and heat-inactivation studies. The native acid phosphatase complement of hazel seeds had an apparent M r of 81.5±3.5 kDa as estimated by size-exclusion chromatography, while the determined pI values were 5.1 (APase1), 6.9 (APase2) and 7.3 (APase3). The optimum pH for p-nitrophenyl phosphate hydrolysis was pH 3 (APase1), pH 5.6 (APase2) and pH 6 (APase3). The hazel isozymes hydrolysed a variety of phosphorylated substrates in a non-specific manner, exhibiting low K m and the highest specificity constant (V max/K m) for pyrophosphate. They were not primary phytases since they could not initiate phytic acid hydrolysis, while APase2 and APase3 had significant phospho-tyrosine phosphatase activity. Inorganic phosphate was a competitive inhibitor, while activity was significantly impaired in the presence of vanadate and fluoride.
机译:发现来自休眠榛树(Corylus avellana L.)种子的酸性磷酸酶(正磷酸单酯磷酸水解酶,EC 3.1.3.2)补体显示出显着的电泳异质性,部分归因于不同分子形式的存在。在腋生组织中,在冷却过程中,总酸性磷酸酶活性以双相方式增加,这是缓解种子休眠所必需的处理。通过连续硫酸铵沉淀,尺寸排阻,伴刀豆球蛋白A亲和力,阳离子和阴离子交换色谱法从休眠的榛子种子的子叶中分离出三种酸性磷酸酶同工酶,从而得到75、389和191倍的纯化(APase1,APase2, APase3)。通过电泳,动力学和热灭活研究确定,将三种糖基化的同工型分离到催化均一性。通过大小排阻色谱法估计,榛子种子的天然酸性磷酸酶补体的表观M rsub为81.5±3.5 kDa,而测定的pI值为5.1(APase1),6.9(APase2)和7.3(APase3) 。对硝基苯基磷酸酯水解的最佳p​​H为pH 3(APase1),pH 5.6(APase2)和pH 6(APase3)。淡褐色的同工酶以非特异性的方式水解了多种磷酸化的底物,表现出低的K m 和最高的焦磷酸特异性常数(V max / K m )。它们不是主要的植酸酶,因为它们无法引发植酸水解,而APase2和APase3具有明显的磷酸酪氨酸磷酸酶活性。无机磷酸盐是一种竞争性抑制剂,而在钒酸盐和氟化物的存在下活性明显受损。

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