Tulin Frej, Cross Frederick R
The Rockefeller University, New York, NY.
The Rockefeller University, New York, NY
Plant Cell. 2015 Oct;27(10):2727-42. doi: 10.1105/tpc.15.00400. Epub 2015 Oct 16.
We analyzed global transcriptome changes during synchronized cell division in the green alga Chlamydomonas reinhardtii. The Chlamydomonas cell cycle consists of a long G1 phase, followed by an S/M phase with multiple rapid, alternating rounds of DNA replication and segregation. We found that the S/M period is associated with strong induction of ∼2300 genes, many with conserved roles in DNA replication or cell division. Other genes, including many involved in photosynthesis, are reciprocally downregulated in S/M, suggesting a gene expression split correlating with the temporal separation between G1 and S/M. The Chlamydomonas cell cycle is synchronized by light-dark cycles, so in principle, these transcriptional changes could be directly responsive to light or to metabolic cues. Alternatively, cell-cycle-periodic transcription may be directly regulated by cyclin-dependent kinases. To distinguish between these possibilities, we analyzed transcriptional profiles of mutants in the kinases CDKA and CDKB, as well as other mutants with distinct cell cycle blocks. Initial cell-cycle-periodic expression changes are largely CDK independent, but later regulation (induction and repression) is under differential control by CDKA and CDKB. Deviation from the wild-type transcriptional program in diverse cell cycle mutants will be an informative phenotype for further characterization of the Chlamydomonas cell cycle.
我们分析了莱茵衣藻同步细胞分裂过程中的全基因组转录组变化。衣藻的细胞周期包括一个较长的G1期,随后是一个S/M期,其中有多个快速交替的DNA复制和分离轮次。我们发现,S/M期与约2300个基因的强烈诱导相关,许多基因在DNA复制或细胞分裂中具有保守作用。其他基因,包括许多参与光合作用的基因,在S/M期则被反向下调,这表明基因表达的分化与G1期和S/M期之间的时间分离相关。衣藻的细胞周期由明暗周期同步,因此原则上,这些转录变化可能直接响应光照或代谢信号。或者,细胞周期周期性转录可能直接受细胞周期蛋白依赖性激酶调控。为了区分这些可能性,我们分析了激酶CDKA和CDKB突变体以及其他具有不同细胞周期阻滞的突变体的转录谱。最初的细胞周期周期性表达变化在很大程度上不依赖于CDK,但后期调控(诱导和抑制)受CDKA和CDKB的差异控制。不同细胞周期突变体中与野生型转录程序的偏差将是用于进一步表征衣藻细胞周期的一个有用表型。