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Purification and Characterization of Catalase from Loblolly Pine (Pinus taeda L.) Megagametophytes.

机译:从火炬松(Pinus taeda L.)大型配子体中过氧化氢酶的纯化和表征。

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摘要

Catalase (EC 1.11.1.6) was purified to near homogeneity from isolated megagametophytes of germinated loblolly pine (Pinus taeda L.) seeds, and monospecific antibodies were elicited in rabbits. Following a procedure that involved acetone extraction, (NH4)2SO4 fractionation, and four chromatographic steps (i.e. DE-52 cellulose, Superdex-200, hydroxylapatite, and phenyl-Sepharose CL-4B), catalase was purified about 140-fold to a final specific activity of 2215 mmol min-1 mg-1 of protein. Cotton isocitrate lyase antibodies were used, and protein immunoblots revealed that the resolution on hydroxylapatite and phenyl-Sepharose allowed for the complete separation of catalase from contaminating isocitrate lyase. The molecular masses of the native enzyme and its subunit are 235 and 59 kD, respectively, indicating that the pine holoenzyme is a homotetramer. Loblolly pine catalase exists as multiple isoforms. When megagametophytes taken 7 d after imbibition at 30[deg]C were extracted, subjected to nondenaturing isoelectric focusing, and stained for catalase activity, at least four catalase isoforms were observed, including one dominant form with an isoelectric point of 6.87. Purified pine catalase is not a glycoprotein and has a ratio of absorbance at 208 nm to absorbance at 405 nm of 1.5. When probed with loblolly pine catalase antibodies, protein blots of cell-free extracts from megagametophytes of mature, stratified, and germinated loblolly pine seeds, the megagametophyte glyoxysomal fraction, and purified loblolly pine catalase all revealed one immunoreactive 59-kD polypeptide. This indicates that no detectable change in the enzyme's monomeric molecular mass occurs during seed stratification and germination, early seedling growth, and purification.
机译:从发芽的火炬松(Pinus taeda L.)种子的分离的大型配子体中纯化过氧化氢酶(EC 1.11.1.6)至近乎同质,并在兔中引发单特异性抗体。按照涉及丙酮提取,(NH4)2SO4分馏和四个色谱步骤(即DE-52纤维素,Superdex-200,羟磷灰石和苯基-Sepharose CL-4B)的程序进行,过氧化氢酶的纯化度约为最终产物的140倍比活性为2215 mmol min-1 mg-1的蛋白质。使用了棉花异柠檬酸裂合酶抗体,蛋白质免疫印迹显示,通过对羟基磷灰石和苯基琼脂糖的分离,可以将过氧化氢酶与污染的异柠檬酸裂合酶完全分离。天然酶及其亚基的分子量分别为235和59 kD,表明松树全酶是同四聚体。火炬松过氧化氢酶以多种同工型形式存在。当提取在30℃吸水后7天采集的大型配子体,进行非变性等电聚焦,并对过氧化氢酶活性染色,观察到至少四种过氧化氢酶同工型,包括一种具有6.87等电点的优势形式。纯化的松树过氧化氢酶不是糖蛋白,在208 nm处的吸光度与在405 nm处的吸光度之比为1.5。当用火炬松过氧化氢酶抗体探测时,成熟,分层和发芽的火炬松种子的巨配子体,巨配子乙醛酸体级分和纯化的火炬松过氧化氢酶的无细胞提取物的蛋白质印迹均揭示了一种免疫反应性59 kD多肽。这表明在种子分层和萌发,幼苗早期生长和纯化过程中,酶的单体分子量没有发生可检测的变化。

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