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首页> 外文期刊>Indian Journal of Science and Technology >Sequence and Structural Analysis of FtsZ Homologs and Comparison of Bacterial FTsZ with Eukaryotic Tubulins
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Sequence and Structural Analysis of FtsZ Homologs and Comparison of Bacterial FTsZ with Eukaryotic Tubulins

机译:FtsZ同系物的序列和结构分析以及细菌FTsZ与真核微管蛋白的比较

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FtsZ, a bacterial cell division protein is a homolog of eukaryotic tubulins. It was postulated that FtsZ of different bacterial species might have specific signature sequences, based on which various FtsZ protein sequences were classified, mined and analyzed. Multiple sequence alignment of the sequences resulted in the highly specific signatures at the C-terminal end of gram-negative bacterial FtsZ. Interestingly, a few organisms belonging to the phylum Bacteroidetes were found to contain 600-650 amino acid-FtsZ sequences having an extra long spacer residues of about 300-350 amino acids. Sequentially, the spacer showed the presence of coils throughout using secondary structure prediction methods. Structurally over a span of 133 residues, a match was found in T7 DNA ligase, suggesting the presence of viral origin of the extra residues. Eukaryotic α-tubulins were also mined and aligned giving rise to high percentage identity even among highly diverged species such as the zebra fish and humans. This suggests the reason behind the high divergence seen between the eukaryotes and the prokaryotes sequentially, though structurally they share 98% similarity. The main focus of the present work was to understand evolution of the bacterial and eukaryotic cytoskeleton proteins.
机译:FtsZ,一种细菌细胞分裂蛋白,是真核微管蛋白的同源物。据推测,不同细菌种类的FtsZ可能具有特定的特征序列,在此基础上对各种FtsZ蛋白序列进行分类,挖掘和分析。序列的多个序列比对导致在革兰氏阴性细菌FtsZ的C末端具有高度特异性的签名。有趣的是,发现属于拟杆菌门的一些生物包含600-650个氨基酸-FtsZ序列,其具有约300-350个氨基酸的超长间隔残基。顺序地,在使用二级结构预测方法的过程中,垫片始终显示出线圈的存在。在结构上跨越133个残基的跨度,在T7 DNA连接酶中发现了一个匹配,表明存在额外残基的病毒来源。真核生物的α-微管蛋白也被开采和排列,即使在高度分离的物种(如斑马鱼和人类)中也具有很高的同一性。这表明了在真核生物和原核生物之间顺序出现高度差异的原因,尽管在结构上它们具有98%的相似性。目前工作的主要重点是了解细菌和真核细胞骨架蛋白的进化。

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