曲古抑菌素A
生物
组蛋白
组蛋白脱乙酰基酶
老茧
细胞生物学
染色质
拟南芥
乙酰化
组蛋白H2A
表观遗传学
组蛋白甲基化
基因表达
遗传学
基因
DNA甲基化
突变体
作者
Kyounghee Lee,Ok‐Sun Park,Su‐Jin Jung,Pil Joon Seo
标识
DOI:10.1016/j.jplph.2015.12.006
摘要
Chromatin structure determines the accessibility of transcriptional regulators to target DNA and contributes to regulation of gene expression. Posttranslational modifications of core histone proteins underlie the reversible changes in chromatin structure. Epigenetic regulation is closely associated with cellular differentiation. Consistently, we found that histone deacetylation is required for callus formation from leaf explants in Arabidopsis . Treatment with trichostatin A (TSA) led to defective callus formation on callus-inducing medium (CIM). Gene expression profiling revealed that a subset of HDAC genes, including HISTONE DEACETYLASE 9 (HDA9), HD-TUINS PROTEIN 1 (HDT1), HDT2, HDT4, and SIRTUIN 1 (SRT1), was significantly up-regulated in calli. In support of this, genetic mutations of HDA9 or HDT1 showed reduced capability of callus formation, probably owing to their roles in regulating auxin and embryonic and meristematic developmental signaling. Taken together, our findings suggest that histone deacetylation is intimately associated with the leaf-to-callus transition, and multiple signaling pathways are controlled by means of histone modification during cellular dedifferentiation.
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