Barrero José María, González-Bayón Rebeca, del Pozo Juan Carlos, Ponce María Rosa, Micol José Luis
División de Genética and Instituto de Bioingeniería, Universidad Miguel Hernández, 03202 Elche, Alicante, Spain.
Plant Cell. 2007 Sep;19(9):2822-38. doi: 10.1105/tpc.107.054130. Epub 2007 Sep 14.
Cell type-specific gene expression patterns are maintained by the stable inheritance of transcriptional states through mitosis, requiring the action of multiprotein complexes that remodel chromatin structure. Genetic and molecular interactions between chromatin remodeling factors and components of the DNA replication machinery have been identified in Schizosaccharomyces pombe, indicating that some epigenetic marks are replicated simultaneously to DNA with the participation of the DNA replication complexes. This model of epigenetic inheritance might be extended to the plant kingdom, as we report here with the positional cloning and characterization of INCURVATA2 (ICU2), which encodes the putative catalytic subunit of the DNA polymerase alpha of Arabidopsis thaliana. The strong icu2-2 and icu2-3 insertional alleles caused fully penetrant zygotic lethality when homozygous and incompletely penetrant gametophytic lethality, probably because of loss of DNA polymerase activity. The weak icu2-1 allele carried a point mutation and caused early flowering, leaf incurvature, and homeotic transformations of sepals into carpels and of petals into stamens. Further genetic analyses indicated that ICU2 interacts with TERMINAL FLOWER2, the ortholog of HETEROCHROMATIN PROTEIN1 of animals and yeasts, and with the Polycomb group (PcG) gene CURLY LEAF. Another PcG gene, EMBRYONIC FLOWER2, was found to be epistatic to ICU2. Quantitative RT-PCR analyses indicated that a number of regulatory genes were derepressed in the icu2-1 mutant, including genes associated with flowering time, floral meristem, and floral organ identity.
细胞类型特异性基因表达模式通过有丝分裂时转录状态的稳定遗传得以维持,这需要重塑染色质结构的多蛋白复合物发挥作用。在粟酒裂殖酵母中已鉴定出染色质重塑因子与DNA复制机制成分之间的遗传和分子相互作用,这表明一些表观遗传标记在DNA复制复合物的参与下与DNA同时复制。这种表观遗传继承模型可能扩展到植物界,正如我们在此报告的拟南芥DNA聚合酶α假定催化亚基编码基因INCURVATA2(ICU2)的定位克隆和特征分析。纯合时,强插入等位基因icu2 - 2和icu2 - 3会导致完全显性的合子致死以及不完全显性的配子体致死,这可能是由于DNA聚合酶活性丧失所致。弱等位基因icu2 - 1携带一个点突变,导致早花、叶片弯曲以及萼片向心皮、花瓣向雄蕊的同源异型转变。进一步的遗传分析表明,ICU2与动物和酵母中异染色质蛋白1的直系同源物TERMINAL FLOWER2以及多梳蛋白组(PcG)基因CURLY LEAF相互作用。另一个PcG基因EMBRYONIC FLOWER2被发现对ICU2具有上位性。定量RT - PCR分析表明,在icu2 - 1突变体中一些调控基因的表达被解除抑制,包括与开花时间、花分生组织和花器官特征相关的基因。