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首页> 外文期刊>Molecular Biology and Evolution >Molecular Cloning and Characterization of a Moss (Ceratodon purpureus) Nonsymbiotic Hemoglobin Provides Insight into the Early Evolution of Plant Nonsymbiotic Hemoglobins
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Molecular Cloning and Characterization of a Moss (Ceratodon purpureus) Nonsymbiotic Hemoglobin Provides Insight into the Early Evolution of Plant Nonsymbiotic Hemoglobins

机译:苔藓(Ceratodon purpureus)非共生血红蛋白的分子克隆和表征提供了对植物非共生血红蛋白早期进化的见识。

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Nonsymbiotic hemoglobins (nsHbs) are widespread in plants including bryophytes. Bryophytes (such as mosses) are among the oldest land plants, thus an analysis of a bryophyte nsHb is of interest from an evolutionary perspective. However, very little is known about bryophyte nsHbs. Here, we report the cloning and characterization of an nshb gene (cerhb) from the moss Ceratodon purpureus. Sequence analysis showed that cerhb is interrupted by 3 introns in identical position as all known plant nshb genes, which suggests that the ancestral nshb gene was interrupted by 3 introns. Expression analysis showed that cerhb expresses in protonemas and gametophytes growing in normal conditions and that it overexpresses in protonemas subjected to osmotic (sucrose), heat-shock, cold-, and nitrate-stress conditions. Also, modeling of the Ceratodon nsHb (CerHb) tertiary structure suggests that CerHb is hexacoordinate and that it binds O2 with high affinity. Comparative analysis of the predicted CerHb with native rice Hb1 and soybean leghemoglobin a structures revealed that the major evolutionary changes that probably occurred during the evolution of plant Hbs were 1) a hexacoordinate to pentacoordinate transition at the heme prosthetic group, 2) a length decrease at the CD-loop and N- and C-termini regions, and 3) the compaction of the protein into a globular structure.
机译:非共生血红蛋白(nsHbs)广泛存在于包括苔藓植物在内的植物中。苔藓植物(例如苔藓)是最古老的陆地植物之一,因此从进化的角度对苔藓植物nsHb的分析很感兴趣。但是,关于苔藓植物nsHb的了解很少。在这里,我们报告从苔藓紫癜的nshb基因(cerhb)的克隆和表征。序列分析表明,cerhb在与所有已知植物nshb基因相同的位置被3个内含子打断,这表明祖先nshb基因被3个内含子打断。表达分析表明,cerhb在正常条件下生长的原虫和配子体中表达,并且在渗透(蔗糖),热休克,冷和硝酸盐胁迫条件下的原虫中过表达。此外,对CerH。ta nsHb(CerHb)三级结构的建模表明,CerHb是六配位的,并且它以高亲和力结合O 2 。将预测的CerHb与天然水稻Hb1和大豆豆血红蛋白a结构进行比较分析,发现植物Hbs进化过程中可能发生的主要进化变化是1)血红素假体组的六坐标至五坐标过渡,2)长度降低。 CD环,N和C末端区域,以及3)将蛋白质压实成球形结构。

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