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转甲基化抑制剂可降低盘基网柄菌的趋化敏感性并延迟细胞聚集。

Transmethylation inhibitors decrease chemotactic sensitivity and delay cell aggregation in Dictyostelium discoideum.

作者信息

van Waarde A, van Haastert P J

出版信息

J Bacteriol. 1984 Feb;157(2):368-74. doi: 10.1128/jb.157.2.368-374.1984.

Abstract

In Dictyostelium discoideum, extracellular cyclic AMP (cAMP) induces chemotaxis and cell aggregation. Suspensions of cAMP-sensitive cells respond to a cAMP pulse with a rapid, transient increase of protein carboxyl methylation. The transmethylation inhibitors cycloleucine, L-homocysteine thiolactone, and coformycin decrease chemotactic sensitivity and delay cell aggregation when administered in concentrations which do not influence cAMP binding to cell surface receptors or the activity of total phosphodiesterase. The ability of the drugs to inhibit chemotaxis could be correlated with their capacity to convert the initial transient positive response of carboxyl methylation to cAMP into a negative one. This suggests that both protein O-methyltransferase and protein methylesterase are activated after stimulation of aggregative cells with cAMP, the net effect being a transient, positive response of methylation. In the presence of a sufficiently large dose of inhibitor, methyltransferase is inhibited, whereas methylesterase activity is much less affected, so that a transient negative response of methylation to cAMP is observed. The slow, positive response of carboxyl methylation to cAMP which occurs ca. 2.5 to 5 min after stimulus administration is not affected by inhibitors of transmethylation. These results suggest that methylation reactions are involved in the chemotactic response of D. discoideum cells to cAMP.

摘要

在盘基网柄菌中,细胞外环磷酸腺苷(cAMP)可诱导趋化性和细胞聚集。对cAMP敏感的细胞悬液对cAMP脉冲的反应是蛋白质羧基甲基化迅速短暂增加。当以不影响cAMP与细胞表面受体结合或总磷酸二酯酶活性的浓度施用转甲基化抑制剂环亮氨酸、L-高半胱氨酸硫内酯和助间型霉素时,会降低趋化敏感性并延迟细胞聚集。药物抑制趋化性的能力与其将羧基甲基化对cAMP的初始短暂阳性反应转变为阴性反应的能力相关。这表明在用cAMP刺激聚集细胞后,蛋白质O-甲基转移酶和蛋白质甲酯酶均被激活,净效应是甲基化的短暂阳性反应。在存在足够大剂量抑制剂的情况下,甲基转移酶受到抑制,而甲酯酶活性受影响较小,因此观察到甲基化对cAMP的短暂阴性反应。在给予刺激后约2.5至5分钟出现的羧基甲基化对cAMP的缓慢阳性反应不受转甲基化抑制剂的影响。这些结果表明甲基化反应参与了盘基网柄菌细胞对cAMP的趋化反应。

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Protein methylesterase and leukocyte chemotaxis.蛋白质甲基酯酶与白细胞趋化性。
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