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Bacterial Tubulin Distinct Loop Sequences and Primitive Assembly Properties Support Its Origin from a Eukaryotic Tubulin Ancestor

机译:细菌微管蛋白独特的环序列和原始装配属性支持其起源于真核微管蛋白祖先。

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摘要

The structure of the unique bacterial tubulin BtubA/B from Prosthecobacter is very similar to eukaryotic αβ-tubulin but, strikingly, BtubA/B fold without eukaryotic chaperones. Our sequence comparisons indicate that BtubA and BtubB do not really correspond to either α- or β-tubulin but have mosaic sequences with intertwining features from both. Their nucleotide-binding loops are more conserved, and their more divergent sequences correspond to discrete surface zones of tubulin involved in microtubule assembly and binding to eukaryotic cytosolic chaperonin, which is absent from the Prosthecobacter dejongeii draft genome. BtubA/B cooperatively assembles over a wider range of conditions than αβ-tubulin, forming pairs of protofilaments that coalesce into bundles instead of microtubules, and it lacks the ability to differentially interact with divalent cations and bind typical tubulin drugs. Assembled BtubA/B contain close to one bound GTP and GDP. Both BtubA and BtubB subunits hydrolyze GTP, leading to disassembly. The mutant BtubA/B-S144G in the tubulin signature motif GGG(T/S)G(S/T)G has strongly inhibited GTPase, but BtubA-T147G/B does not, suggesting that BtubB is a more active GTPase, like β-tubulin. BtubA/B chimera bearing the β-tubulin loops M, H1-S2, and S9-S10 in BtubB fold, assemble, and have reduced GTPase activity. However, introduction of the α-tubulin loop S9-S10 with its unique eight-residue insertion impaired folding. From the sequence analyses, its primitive assembly features, and the properties of the chimeras, we propose that BtubA/B were acquired shortly after duplication of a spontaneously folding α- and β-tubulin ancestor, possibly by horizontal gene transfer from a primitive eukaryotic cell, followed by divergent evolution.
机译:前列腺杆菌的独特细菌微管蛋白BtubA / B的结构与真核αβ-微管蛋白非常相似,但引人注目的是,BtubA / B折叠而没有真核伴侣。我们的序列比较表明,BtubA和BtubB并不真正对应于α-或β-微管蛋白,但具有两个序列相互交织的镶嵌序列。它们的核苷酸结合环更保守,它们的序列更趋异,对应于微管蛋白组装中涉及的微管蛋白离散表面区域,并与真核假单胞菌草案基因组中不存在的真核细胞溶质伴侣蛋白结合。 BtubA / B在比αβ-微管蛋白更广泛的条件下协同组装,形成成对的原丝,这些原丝聚结成束而不是微管,并且缺乏与二价阳离子差异相互作用并结合典型微管蛋白药物的能力。组装好的BtubA / B包含接近一个约束的GTP和GDP。 BtubA和BtubB亚基都水解GTP,导致拆卸。微管蛋白签名基序GGG(T / S)G(S / T)G中的突变体BtubA / B-S144G具有强烈抑制GTPase的作用,但BtubA-T147G / B却没有,这表明BtubB是一种更具活性的GTPase,如β -微管蛋白。 BtubB中带有β-微管蛋白环M,H1-S2和S9-S10的BtubA / B嵌合体折叠,组装并降低了GTPase活性。然而,引入α-微管蛋白环S9-S10及其独特的八残基插入会削弱折叠性。通过序列分析,其原始装配特征和嵌合体的性质,我们建议在自发折叠的α-和β-微管蛋白祖先重复后不久,可能通过从原始真核细胞的水平基因转移获得BtubA / B。 ,然后是发散进化。

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