Loidl P, Gröbner P, Csordas A, Puschendorf B
J Cell Sci. 1982 Dec;58:303-11. doi: 10.1242/jcs.58.1.303.
Sodium-n-butyrate affects the length of the mitotic cycle of Physarum polycephalum. Application during S- or early G2-period results in a delay of the subsequent mitosis, whereas application later in the cycle has no delaying effect. Interestingly, the second mitotic cycle after application is considerably shortened when butyrate has been administered during S- or early G2-period of the preceding cycle. In comparison, other homologous short-chain fatty acids were tested; the retarding effect on mitosis increases with the number of carbon atoms, although only butyrate can shorten the second mitotic cycle. It is shown that butyrate causes an immediate depression of synthesis of DNA, RNA and protein. After a certain time-interval the plasmodium overcomes the butyrate block. DNA synthesis is fully recovered and the inhibition of RNA and protein synthesis is even overcompensated until the next mitosis, as reflected by elevated levels of RNA and protein.
丁酸钠会影响多头绒泡菌有丝分裂周期的时长。在S期或G2期早期施用会导致随后的有丝分裂延迟,而在周期后期施用则没有延迟作用。有趣的是,当在前一个周期的S期或G2期早期施用丁酸盐时,施用后的第二个有丝分裂周期会显著缩短。相比之下,对其他同源短链脂肪酸进行了测试;对有丝分裂的延迟作用随着碳原子数量的增加而增强,不过只有丁酸盐能够缩短第二个有丝分裂周期。结果表明,丁酸盐会立即抑制DNA、RNA和蛋白质的合成。经过一定时间间隔后,原质团会克服丁酸盐的阻滞作用。DNA合成完全恢复,RNA和蛋白质合成的抑制作用甚至会得到过度补偿,直到下一次有丝分裂,这表现为RNA和蛋白质水平升高。