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The Arabidopsis HOS1 gene negatively regulates cold signal transduction and encodes a RING finger protein that displays cold-regulated nucleo–cytoplasmic partitioning

机译:拟南芥HOS1基因负调控冷信号转导,并编码显示冷调控核-细胞质分配的RING指蛋白

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摘要

Low temperature is one of the most important environmental stimuli that control gene transcription programs and development in plants. In Arabidopsis thaliana, the HOS1 locus is a key negative regulator of low temperature-responsive gene transcription. The recessive hos1 mutation causes enhanced induction of the CBF transcription factors by low temperature as well as of their downstream cold-responsive genes. The hos1 mutant plants flower early, and this correlates with a low level of Flowering Locus C gene expression. The HOS1 gene was isolated through positional cloning. HOS1 encodes a novel protein with a RING finger motif near the amino terminus. HOS1 is ubiquitously expressed in all plant tissues. HOS1–GFP translational fusion studies reveal that HOS1 protein resides in the cytoplasm at normal growth temperatures. However, in response to low temperature treatments, HOS1 accumulates in the nucleus. Ectopic expression of HOS1 in wild-type plants causes cosuppression of HOS1 expression and mimics the hos1 mutant phenotypes.
机译:低温是控制植物中基因转录程序和发育的最重要的环境刺激之一。在拟南芥中,HOS1基因座是低温响应基因转录的关键负调控因子。隐性hos1突变导致低温诱导CBF转录因子及其下游冷应答基因的增强。 hos1突变植物早开花,这与低水平的开花基因座C基因表达有关。通过定位克隆分离出HOS1基因。 HOS1编码一种新型蛋白,在氨基末端附近具有RING手指基序。 HOS1在所有植物组织中普遍表达。 HOS1–GFP的翻译融合研究表明,在正常生长温度下,HOS1蛋白位于细胞质中。但是,响应于低温处理,HOS1积累在细胞核中。 HOS1在野生型植物中的异位表达引起HOS1表达的共抑制,并模拟了hos1突变表型。

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