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ALGAE

机译:海藻

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摘要

High mobility group (HMG) proteins of the HMGB family are chromatin-associated proteins that act as architectural factors in nucleoprotein structures, which regulate DNA-dependent processes including transcription. Members of the HMGB family have been characterised from various mono-and dicot plants, but not from lower plant species. Here, we have identified three candidate HMGB proteins encoded in the genome of the moss Physcomitrella patens. The structurally similar HMGB2 and HMGB3 proteins display the typical overall structure of higher plant HMGB proteins consisting of a central HMG-box DNA-binding domain that is flanked by a basic N-terminal and an acidic C-terminal domain. The HMGB1 protein differs from higher plant HMGB proteins by having a very extensive N-terminal domain and by lacking the acidic C-terminal domain. Like higher plant HMGB proteins, HMGB3 localises to the cell nucleus, but HMGB1 is targeted to plastids. Analysis of the HMG-box domains of HMGB1 and HMGB3 by CD revealed that HMGB1box and the HMGB3box have an α-helical structure. While the HMGB3box interacts with DNA comparable to typical higher plant counterparts, the HMGB1box has only a low affinity for DNA. Cotransformation assays in Physcomitrella protoplasts demonstrated that expression of HMGB3 resulted in repression of reporter gene expression. In summary, our data show that functional HMGB-type proteins occur in Physcomitrella and most likely in other lower plant species.
机译:HMGB家族的高迁移率族(HMG)蛋白是与染色质相关的蛋白,可作为核蛋白结构中的建筑因子,可调节包括转录在内的DNA依赖性过程。 HMGB家族的成员已经从各种单子叶植物和双子叶植物中鉴定出来,但是没有从低等植物中鉴定出来。在这里,我们确定了苔藓小立碗藓基因组中编码的三种候选HMGB蛋白。结构相似的HMGB2和HMGB3蛋白显示出高等植物HMGB蛋白的典型总体结构,该蛋白由中央HMG-box DNA结合结构域组成,该结构域侧接碱性N末端和酸性C末端结构域。 HMGB1蛋白与高等植物HMGB蛋白的不同之处在于其N端结构域非常广泛,并且缺少酸性C端结构域。像高等植物的HMGB蛋白一样,HMGB3定位于细胞核,但HMGB1定位于质体。通过CD分析HMGB1和HMGB3的HMG-box域,发现HMGB1box和HMGB3box具有α螺旋结构。 HMGB3box与DNA的相互作用与典型的高等植物相当,而HMGB1box对DNA的亲和力却很低。 Physcomitrella原生质体中的共转化分析表明,HMGB3的表达导致报告基因表达的抑制。总而言之,我们的数据表明功能性HMGB型蛋白存在于小肠衣原体中,最有可能出现在其他低等植物中。

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