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高等植物环核苷酸磷酸二酯酶。马铃薯块茎中三种磷酸二酯酶的分离、部分纯化及性质

Higher-plant cyclic nucleotide phosphodiesterases. Resolution, partial purification and properties of three phosphodiesterases from potato tuber.

作者信息

Ashton A R, Polya G M

出版信息

Biochem J. 1975 Aug;149(2):329-39. doi: 10.1042/bj1490329.

Abstract
  1. Three phosphodiesterases that are capable of hydrolysing 3':5'-cyclic nucleotides were purified from potato tubers. 2. The phosphodiesterases were fractionated by (NH4)2SO4 precipitation and CM-cellulose chromatography. The phosphodiesterases were resolved from each other and further purified by gel filtration in high- and low-ionic-strength conditions. 3. All three enzymes lacked significant nucleotidase activity. 4. Enzymes I and II had mol. wts. 240,000 and 80,000 respectively, determined by gel filtration, whereas enzyme III showed anomalous behaviour on gel filtration, behaving as a high- or low-molecular-weight protein in high- or low-ionic-strength buffers respectively. 5. All enzymes hydrolysed 2':3'-cyclic nucleotides as well as 3':5'-cyclic nucleotides. The enzymes also had nucleotide pyrophosphatase activity, hydrolysing NAD+ and UDP-glucose to various extents. Enzymes I and II hydrolyse cyclic nucleotides at a greater rate than NAD+, whereas enzyme III hydrolyses NAD+ at a much greater rate than cyclic nucleotides. All three enzymes hydrolysed the artificial substrate bis-(p-nitro-phenyl) phosphate. 6. The enzymes do not require the addition of bivalent cations for activity. 7. Both enzymes I and II have optimum activity at pH6 with 3':5'-cyclic AMP and bis-(p-nitrophenyl) phosphate as substrates. The products of 3':5'-cyclic AMP hydrolysis were 3'-AMP and 5'-AMP, the ratio of the two products being different for each enzyme and varying with pH. 8. Theophylline inhibits enzymes I and II slightly, but other methyl xanthines have little effect. Enzymes I and II were competitively inhibited by many nucleotides containing phosphomonoester and phosphodiester bonds, as well as by Pi. 9. The possible significance of these phosphodiesterases in cyclic nucleotide metabolism in higher plants is discussed.
摘要
  1. 从马铃薯块茎中纯化出了三种能够水解3':5'-环核苷酸的磷酸二酯酶。2. 通过硫酸铵沉淀和CM-纤维素色谱对磷酸二酯酶进行分级分离。这些磷酸二酯酶彼此分离,并在高离子强度和低离子强度条件下通过凝胶过滤进一步纯化。3. 所有三种酶均缺乏显著的核苷酸酶活性。4. 通过凝胶过滤测定,酶I和酶II的分子量分别为240,000和80,000,而酶III在凝胶过滤中表现出异常行为,在高离子强度或低离子强度缓冲液中分别表现为高分子量或低分子量蛋白质。5. 所有酶都能水解2':3'-环核苷酸以及3':5'-环核苷酸。这些酶还具有核苷酸焦磷酸酶活性,能不同程度地水解NAD+和UDP-葡萄糖。酶I和酶II水解环核苷酸的速率比NAD+快,而酶III水解NAD+的速率比环核苷酸快得多。所有三种酶都能水解人工底物双(对硝基苯基)磷酸酯。6. 这些酶的活性不需要添加二价阳离子。7. 酶I和酶II以3':5'-环磷酸腺苷和双(对硝基苯基)磷酸酯为底物时,在pH6时具有最佳活性。3':5'-环磷酸腺苷水解的产物是3'-AMP和5'-AMP,两种产物的比例因每种酶而异,并随pH变化。8. 茶碱对酶I和酶II有轻微抑制作用,但其他甲基黄嘌呤的影响很小。酶I和酶II受到许多含有磷酸单酯和磷酸二酯键的核苷酸以及无机磷酸的竞争性抑制。9. 讨论了这些磷酸二酯酶在高等植物环核苷酸代谢中的可能意义。

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