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无菌黑麦草胚乳细胞培养物中的环磷酸腺苷3':5'-单磷酸

Cyclic adenosine 3':5'-monophosphate in axenic rye grass endosperm cell cultures.

作者信息

Ashton A R, Polya G M

机构信息

Department of Biochemistry, La Trobe University, Bundoora, Victoria, 3083, Australia.

出版信息

Plant Physiol. 1978 May;61(5):718-22. doi: 10.1104/pp.61.5.718.

Abstract

Cyclic adenosine 3':5'-monophosphate (cAMP) was extensively purified from rye grass (Lolium multiflorum) endosperm cells grown in axenic suspension culture. The cAMP was purified by neutral alumina and anion and cation exchange chromatography. The cAMP was quantitated by means of a radiochemical saturation assay using a beef heart cAMP-binding protein and also by an assay involving activation of beef heart protein kinase. The cAMP levels found (corrected for recovery of tracer cyclic 3',5'-[8-(3)H]AMP included from the point of sample extraction) ranged from 2 to 12 pmol/g fresh weight. The material purified from rye grass cultures was indistinguishable from authentic cAMP with respect to chromatography in two cellulose thin layer systems, behavior on dilution in both the saturation and protein kinase activation assays, and rates of degradation by a mammalian cAMP phosphodiesterase. The cAMP from rye grass cultures was completely degraded by a mammalian cAMP phosphodiesterase, and 1-methyl-3-isobutylxanthine inhibited such degradation. The protein kinase activation and saturation assays gave essentially the same values for the cAMP content of axenic rye grass culture extracts. Material satisfying the above criteria for identity with cAMP was also isolated from the culture medium. The increase observed in medium cAMP levels during culture growth provides evidence for the synthesis and secretion of cAMP by rye grass endosperm cells in suspension culture.

摘要

环腺苷酸(cAMP)是从无菌悬浮培养的黑麦草(多花黑麦草)胚乳细胞中大量纯化得到的。cAMP通过中性氧化铝以及阴离子和阳离子交换色谱法进行纯化。cAMP通过使用牛心cAMP结合蛋白的放射化学饱和分析法以及涉及激活牛心蛋白激酶的分析法进行定量。所测得的cAMP水平(校正了从样品提取点加入的示踪环3',5'-[8-(3)H]AMP的回收率)范围为2至12皮摩尔/克鲜重。从黑麦草培养物中纯化得到的物质在两种纤维素薄层层析系统中的色谱行为、在饱和分析和蛋白激酶激活分析中的稀释行为以及被哺乳动物cAMP磷酸二酯酶降解的速率方面,与 authentic cAMP没有区别。来自黑麦草培养物的cAMP被哺乳动物cAMP磷酸二酯酶完全降解,并且1-甲基-3-异丁基黄嘌呤抑制这种降解。蛋白激酶激活分析和饱和分析对于无菌黑麦草培养物提取物中cAMP含量给出的结果基本相同。符合上述与cAMP相同标准的物质也从培养基中分离得到。在培养生长过程中培养基中cAMP水平的增加为悬浮培养的黑麦草胚乳细胞合成并分泌cAMP提供了证据。

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