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首页> 外文期刊>European Journal of Phycology >Effect of inhibitors of protein synthesis and DNA replication on theinduction of proteolytic activities, caspase-like activities and celldeath in the unicellular chlorophyte Dunaliella tertiolecta
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Effect of inhibitors of protein synthesis and DNA replication on theinduction of proteolytic activities, caspase-like activities and celldeath in the unicellular chlorophyte Dunaliella tertiolecta

机译:蛋白质合成和DNA复制抑制剂对单细胞绿藻杜氏杜氏藻蛋白水解活性,半胱天冬酶样活性和细胞死亡的影响

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摘要

When the chlorophyte alga Dunaliella tertiolecta is placed in darkness, a form of programmed cell death with many similarities to apoptosis (including the induction of caspase-like proteases) is induced. Many uncertainties about this process remain, two of which are whether it requires protein synthesis and whether there is potential viral involvement. In order to examine the relationship between the induction and/or activation of proteolytic activities and the cell death event, we used inhibitors of cytoplasmic protein synthesis (cycloheximide, CHX), organellar protein synthesis (chloramphenicol, CAP) and DNA synthesis (mitomycin C, MMC). Use of MMC also allowed us to examine whether temperate viruses were present in the D. tertiolecta isolate, since MMC treatment has been shown to induce lytic cycles. Addition of protein synthesis inhibitors (100? mu M CHX or 1500? mu M CAP applied singly or both inhibitors added together) did not prevent cell death from occurring when cultures were placed in the dark. There were no differences in caseinolytic activities visualized using zymograms, or in caspase 1, 3, 8 and 9 -like activities. Surprisingly, 100? mu M MMC prevented the cell death event. Caseinolytic activities that appeared in darkness in controls did not appear in MMC-treated cultures, and caspase-like activities remained the same as in controls maintained in the light. The lack of effect of CHX and CAP suggests that the cell death programme we observe does not depend on protein synthesis, but rather on post-translational modification of pre-existing proteins. Results for MMC discount the involvement of temperate virus, but are difficult to interpret. MMC affects DNA synthesis and presumably transcription, but since inhibitors of translation did not prevent cell death, it is not clear why inhibiting transcription would. MMC affects cell cycle progression and cell division cycles, thus these processes may play as yet unexplained roles in mediating the cell death process observed.
机译:当将绿藻藻类杜氏杜氏藻置于黑暗中时,会诱导某种形式的程序性细胞死亡,与细胞凋亡有很多相似之处(包括诱导胱天蛋白酶样蛋白酶)。关于该过程的许多不确定性仍然存在,其中两个是它是否需要蛋白质合成以及是否存在潜在的病毒参与。为了检查蛋白水解活性的诱导和/或活化与细胞死亡事件之间的关系,我们使用了胞质蛋白合成(环己酰亚胺,CHX),细胞蛋白合成(氯霉素,CAP)和DNA合成(丝裂霉素C, MMC)。 MMC的使用还使我们能够检查在D. tertiolecta分离物中是否存在温和病毒,因为已显示MMC处理可诱导裂解周期。当在黑暗中培养时,添加蛋白质合成抑制剂(单独使用100μMCHX或1500μMCAP或将两种抑制剂加在一起)都不能防止细胞死亡。使用酶谱图显示的酪蛋白水解活性或半胱天冬酶1、3、8和9样活性没有差异。令人惊讶的是100? M M MMC阻止了细胞死亡事件。对照中在黑暗中出现的酪蛋白水解活性在MMC处理过的培养物中未出现,而胱天蛋白酶样活性与在光照下维持的对照相同。缺乏CHX和CAP的作用表明,我们观察到的细胞死亡程序不依赖于蛋白质合成,而是依赖于现有蛋白质的翻译后修饰。 MMC的结果打消了温带病毒的参与,但难以解释。 MMC影响DNA的合成并可能影响转录,但由于翻译抑制剂无法阻止细胞死亡,因此尚不清楚为什么抑制转录会如此。 MMC影响细胞周期进程和细胞分裂周期,因此这些过程可能在介导观察到的细胞死亡过程中起着无法解释的作用。

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