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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Identification of genome-wide targets and DNA recognition sequence of the Arabidopsis HMG-box protein AtHMGB15 during cold stress response
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Identification of genome-wide targets and DNA recognition sequence of the Arabidopsis HMG-box protein AtHMGB15 during cold stress response

机译:在冷应激反应期间鉴定拟南芥HMG-Box蛋白ATHMGB15的基因组目标和DNA识别序列

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摘要

AtHMGB15 belongs to a group of ARID-HMG proteins which are plant specific. The presence of two known DNA binding domains: AT rich interacting domain (ARID) and High Mobility Group (HMG)-box, in one polypeptide, makes this protein intriguing. Although proteins containing individual HMG and ARID domains have been characterized, not much is known about the role of ARID-HMG proteins. Promoter analysis of AtHMGB15 showed the presence of various stress responsive cis regulatory elements along with MADS-box containing transcription factors. Our result shows that the expression of AtHMGB15 increased significantly upon application of cold stress. Using ChIP-chip approach, we have identified 6128 and 4689 significantly enriched loci having AtHMGB15 occupancy under control and cold stressed condition respectively. GO analysis shows genes belonging to abiotic stress response, cold response and root development were AtHMGB15 targets during cold stress. DNA binding and footprinting assays further identified A(A/C)-ATA-(A/T)(A/T) as AtHMGB15 binding motif. The enriched probe distribution in both control and cold condition shows a bias of AtHMGB15 binding towards the transcribed (gene body) region. Further, the expression of cold stress responsive genes decreased in athmgbl5 knockout plants compared to wild-type. Taken together, binding enrichment of AtHMGB15 to the promoter and upstream to stress loci suggest an unexplored role of the protein in stress induced transcription regulation.
机译:ATHMGB15属于一组是植物特异性的ARID-HMG蛋白。存在两种已知的DNA结合结构域:在富含相互作用的结构域(干旱)和高迁移率组(HMG) - 盒中,使得该蛋白质有趣。尽管已经表征了含有单个HMG和干旱结构域的蛋白质,但关于ARID-HMG蛋白的作用,并不多。 ATHMGB15的启动子分析显示出各种应激响应性CIS调节元件以及含有转录因子的疯箱。我们的结果表明,在施加冷应力后,ATHMGB15的表达显着增加。使用芯片芯片方法,我们已识别6128和4689显着富集的基因座,分别在控制和冷应激状况下具有ATHMG15占用。 GO分析显示了属于非生物应激反应的基因,冷应激和根部发育是在冷应激期间的ATHMGB15目标。 DNA结合和脚印测定进一步鉴定为ATHMGB15结合基序的(A / C) - (A / T)(A / T)。对照和冷病症中的富集探针分布显示了朝向转录(基因体)区域的AthMGB15的偏差。此外,与野生型相比,Athmgbl5敲除植物中的冷应激响应基因的表达降低。结合在一起,将AthmGB15的富集与启动子和上游的富集程度表明蛋白质在应激诱导的转录调节中的未探明作用。

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