Aurora kinase inhibitors delay regeneration in Stentor coeruleus at an intermediate step.

Matters select Pub Date : 2020-01-01 Epub Date: 2020-04-06
Athena Lin, Diana Summers, Sarah B Reiff, Aaron R Tipton, Sindy K Tang, Wallace F Marshall
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Abstract

The giant unicellular ciliate Stentor coeruleus can be cut into pieces and each piece will regenerate into a healthy, full-sized individual. The molecular mechanism for how Stentor regenerates is a complete mystery, however, the process of regeneration shows striking similarities to the process of cell division. On a morphological level, the process of creating a second mouth in division or a new oral apparatus in regeneration have the same steps and occur in the same order. On the transcriptional level, genes encoding elements of the cell division and cell cycle regulatory machinery, including Aurora kinases, are differentially expressed during regeneration. This suggests that there may be some common regulatory mechanisms involved in both regeneration and cell division. If the cell cycle machinery really does play a role in regeneration, then inhibition of proteins that regulate the timing of cell division may also affect the timing of regeneration in Stentor. Here we show that two well-characterized Aurora kinase A+B inhibitors that affect the timing of regeneration. ZM447439 slows down regeneration by at least one hour. PF03814735 completely suppresses regeneration until the drug is removed. Here we provide the first direct experimental evidence that Stentor may harness the cell division machinery to regulate the sequential process of regeneration.

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极光激酶抑制剂在中间阶段延缓了蓝突的再生。
巨大的单细胞纤毛虫可以被切成碎片,每一块都会再生成一个健康的、完整大小的个体。Stentor再生的分子机制是一个完全的谜,然而,再生过程与细胞分裂过程有着惊人的相似之处。在形态学水平上,在分裂中产生第二个口腔或在再生中产生一个新的口腔器官的过程具有相同的步骤和顺序。在转录水平上,编码细胞分裂和细胞周期调控机制元件的基因,包括极光激酶,在再生过程中差异表达。这表明在再生和细胞分裂中可能存在一些共同的调节机制。如果细胞周期机制确实在再生中发挥作用,那么抑制调节细胞分裂时间的蛋白质也可能影响Stentor的再生时间。在这里,我们展示了两种表征良好的极光激酶A+B抑制剂,它们影响再生的时间。ZM447439使再生减慢至少一小时。PF03814735完全抑制再生,直到药物被移除。在这里,我们提供了第一个直接的实验证据,表明Stentor可以利用细胞分裂机制来调节再生的顺序过程。
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