首页> 外文期刊>The Plant Cell >Regulation of cell proliferation in the stomatal lineage by the Arabidopsis MYB FOUR LIPS via direct targeting of core cell cycle genes.
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Regulation of cell proliferation in the stomatal lineage by the Arabidopsis MYB FOUR LIPS via direct targeting of core cell cycle genes.

机译:拟南芥MYB FOUR LIPS通过直接靶向核心细胞周期基因来调控气孔谱系中细胞的增殖。

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摘要

Stomata, which are epidermal pores surrounded by two guard cells, develop from a specialized stem cell lineage and function in shoot gas exchange. The Arabidopsis thaliana FOUR LIPS (FLP) and MYB88 genes encode closely related and atypical two-MYB-repeat proteins, which when mutated result in excess divisions and abnormal groups of stomata in contact. Consistent with a role in transcription, we show here that FLP and MYB88 are nuclear proteins with DNA binding preferences distinct from other known MYBs. To identify possible FLP/MYB88 transcriptional targets, we used chromatin immunoprecitation (ChIP) followed by hybridization to Arabidopsis whole genome tiling arrays. These ChIP-chip data indicate that FLP/MYB88 target the upstream regions especially of cell cycle genes, including cyclins, cyclin-dependent kinases (CDKs), and components of the prereplication complex. In particular, we show that FLP represses the expression of the mitosis-inducing factor CDKB1;1, which, along with CDKB1;2, is specifically required both for the last division in the stomatal pathway and for cell overproliferation in flp mutants. We propose that FLP and MYB88 together integrate patterning with the control of cell cycle progression and terminal differentiation through multiple and direct cell cycle targets. FLP recognizes a distinct cis-regulatory element that overlaps with that of the cell cycle activator E2F-DP in the CDKB1;1 promoter, suggesting that these MYBs may also modulate E2F-DP pathways.
机译:气孔是被两个保卫细胞包围的表皮孔,由专门的干细胞谱系形成,并在芽气交换中起作用。 拟南芥FOUR LIPS ( FLP )和 MYB88 基因编码紧密相关且非典型的两次MYB重复蛋白,这些蛋白突变后会导致过量接触孔的分裂和异常群体。与转录中的作用一致,我们在这里显示FLP和MYB88是核蛋白,其DNA结合偏好不同于其他已知的MYB。为了确定可能的FLP / MYB88转录靶标,我们使用了染色质免疫沉淀(ChIP),然后与拟南芥(Arabidopsis)全基因组切片阵列杂交。这些ChIP芯片数据表明FLP / MYB88特别是针对细胞周期基因的上游区域,包括细胞周期蛋白,细胞周期蛋白依赖性激酶(CDK)和复制前复合物的成分。特别是,我们表明FLP抑制有丝分裂诱导因子 CDKB1; 1 的表达,后者与 CDKB1; 2 一起是最后一个分裂所特有的在气孔途径中的表达以及 flp 突变体中细胞的过度增殖。我们建议FLP和MYB88一起将模式与通过多个和直接的细胞周期靶标控制细胞周期进程和最终分化相结合。 FLP在 CDKB1; 1 启动子中识别与细胞周期激活剂E2F-DP重叠的独特的 cis 调控元件,表明这些MYB也可能调节E2F- DP途径。

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