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Science. 1984 Mar 30;223(4643):1433-5. doi: 10.1126/science.223.4643.1433.
2
Polyamine Biosynthesis and Effect of Dicyclohexylamine during the Cell Cycle of Helianthus tuberosus Tuber.多胺生物合成和二环己胺在块茎向日葵细胞周期中的作用。
Plant Physiol. 1987 May;84(1):148-52. doi: 10.1104/pp.84.1.148.
3
Separation and quantitation of polyamines in plant tissue by high performance liquid chromatography of their dansyl derivatives.用荧光素衍生试剂高效液相色谱法分离和定量植物组织中的多胺。
Plant Physiol. 1985 May;78(1):89-91. doi: 10.1104/pp.78.1.89.
4
Physiological control of arginine decarboxylase activity in k-deficient oat shoots.缺钾燕麦苗中天冬氨酸脱羧酶活性的生理调控。
Plant Physiol. 1984 Oct;76(2):331-5. doi: 10.1104/pp.76.2.331.
5
Polyamine Biosynthetic Enzymes in the Cell Cycle of Chlorella: Correlation between Ornithine Decarboxylase and DNA Synthesis at Different Light Intensities.小球藻细胞周期中的多胺生物合成酶:精氨酸脱羧酶与不同光照强度下 DNA 合成的关系。
Plant Physiol. 1984 Feb;74(2):385-8. doi: 10.1104/pp.74.2.385.
6
Ornithine decarboxylase and arginine decarboxylase activities in meristematic tissues of tomato and potato plants.番茄和马铃薯植株分生组织中鸟氨酸脱羧酶和精氨酸脱羧酶的活性
Plant Physiol. 1982 Aug;70(2):544-6. doi: 10.1104/pp.70.2.544.
7
Participation of ornithine decarboxylase in early stages of tomato fruit development.鸟氨酸脱羧酶参与番茄果实早期发育。
Plant Physiol. 1982 Aug;70(2):540-3. doi: 10.1104/pp.70.2.540.
8
Arginine and ornithine decarboxylases, the polyamine biosynthetic enzymes of mung bean seedlings.精氨酸和鸟氨酸脱羧酶,绿豆幼苗的多胺生物合成酶。
Plant Physiol. 1982 Apr;69(4):876-9. doi: 10.1104/pp.69.4.876.
9
Relation of polyamine biosynthesis to the initiation of sprouting in potato tubers.多胺生物合成与马铃薯块茎发芽起始的关系。
Plant Physiol. 1982 Feb;69(2):411-5. doi: 10.1104/pp.69.2.411.
10
Polyamine Metabolism in Embryogenic Cells of Daucus carota: II. Changes in Arginine Decarboxylase Activity.胡萝卜胚性细胞中的多胺代谢:II. 精氨酸脱羧酶活性的变化
Plant Physiol. 1979 Feb;63(2):341-5. doi: 10.1104/pp.63.2.341.

多胺与培养中海长春花细胞的细胞周期。

Polyamines and the Cell Cycle of Catharanthus roseus Cells in Culture.

机构信息

Biological Institute, Faculty of Science, Tohoku University, Sendai, 980, Japan.

出版信息

Plant Physiol. 1991 Aug;96(4):1008-13. doi: 10.1104/pp.96.4.1008.

DOI:10.1104/pp.96.4.1008
PMID:16668290
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1080885/
Abstract

Investigation was made on the effect of partial depletion of polyamines (PAs), induced by treatment with inhibitors of the biosynthesis of PAs, on the distribution of cells at each phase of the cell cycle in Catharanthus roseus (L.) G. Don. cells in suspension cultures, using flow cytometry. More cells treated with inhibitors of arginine decarboxylase (ADC) and ornithine decarboxylase (ODC) were accumulated in the G(1) phase than those in the control, while the treatment with an inhibitor of spermidine (SPD) synthase showed no effect on the distribution of cells. The endogenous levels of the PAs, putrescine (PUT), SPD, and spermine (SPM), were determined during the cell cycle in synchronous cultures of C. roseus. Two peaks of endogenous level of PAs, in particular, of PUT and SPD, were observed during the cell cycle. Levels of PAs increased markedly prior to synthesis of DNA in the S phase and prior to cytokinesis. Activities of ADC and ODC were also assayed during the cell cycle. Activities of ADC was much higher than that of ODC throughout the cell cycle, but both activities of ODC and ADC changed in concert with changes in levels of PAs. Therefore, it is suggested that these enzymes may regulate PA levels during the cell cycle. These results indicate that inhibitors of PUT biosynthesis caused the suppression of cell proliferation by prevention of the progression of the cell cycle, probably from the G(1) to the S phase, and PUT may play more important roles in the progression of the cell cycle than other PAs.

摘要

用流式细胞术研究了用多胺(PAs)生物合成抑制剂处理,部分耗尽多胺(PAs)对长春花(L.)悬浮培养细胞周期各时相细胞分布的影响。用精氨酸脱羧酶(ADC)和鸟氨酸脱羧酶(ODC)抑制剂处理的细胞比对照细胞更多地积累在 G1 期,而用 spermidine(SPD)合酶抑制剂处理则对细胞分布没有影响。在长春花同步培养物中,测定了细胞周期中多胺(PAs)、腐胺(PUT)、SPD 和精胺(SPM)的内源性水平。在细胞周期中观察到两个多胺内源性水平的峰值,特别是 PUT 和 SPD。PA 的水平在 S 期合成 DNA 之前和细胞分裂之前显著增加。在细胞周期中还测定了 ADC 和 ODC 的活性。整个细胞周期中 ADC 的活性远高于 ODC,但 ODC 和 ADC 的活性均随 PA 水平的变化而变化。因此,这些酶可能在细胞周期中调节 PA 水平。这些结果表明,PUT 生物合成抑制剂通过阻止细胞周期从 G1 期向 S 期的进展,从而抑制细胞增殖,PUT 在细胞周期的进展中可能比其他 PA 发挥更重要的作用。