超泛素侧链的原子修饰影响 E2 介导的超泛素链形成

IF 1.5 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Haewon Song, Toshiki Mikami, Sohei Majima, Jeffrey W. Bode
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引用次数: 0

摘要

泛素(Ub)是一种小型、高度保守的蛋白质,对真核生物至关重要,其独特之处在于通过与七个赖氨酸侧链之一共轭形成多泛素链。在这里,我们报告了 Ub 侧链的原子定制--即插入、删除或替换特定原子--对由 E2 连接酶介导的异肽键形成的 Ub 寡聚体的酶连接产生了意想不到的重大影响。这些研究采用化学合成和连接方法制备了大量专门定制的多毫克级 Ub 单体。虽然包括 N 端酰化和蛋氨酸置换在内的一些修饰不会影响蛋白质折叠或与 Ube2K 形成 Ub 链,但其他修饰对与 Ubc13/Mms2 的低聚作用有明显影响。我们观察到,Ala46Hse 突变使该 Ub 单体在 Ubc13 介导的连接中失去了在 Lys63 处接受另一个 Ub 的能力。用较短的替代物 Orn、Dab 或 Dap 完全取代所有七个赖氨酸基本上会阻止 Ub 链的形成,而在 Dap 的情况下,会阻止 Ub 蛋白的正常折叠。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Atomic Tailoring of Ubiquitin Side Chains Influences E2-Mediated Ubiquitin Chain Formation

Ubiquitin (Ub) is a small, highly conserved protein essential for eukaryotic biology, and is unique in its formation of polyubiquitin chains by conjugation to one of its seven lysine side chains. Here we report that atomic tailoring of Ub side chains – i. e. the insertion, deletion, or replacement of specific atoms – has significant and unexpected consequences on the enzymatic conjugation of Ub oligomers by isopeptide bond formation mediated by E2 conjugating enzymes. These studies employed chemical synthesis and ligation methods to prepare numerous specifically tailored Ub monomers on multi-milligram scales. While some modifications including N-terminal acylation and methionine replacement did not affect protein folding or Ub chain formation with Ube2 K, other modifications had a pronounced effect of oligomerization with Ubc13/Mms2. We observed that Ala46Hse mutation obliterates the ability of this Ub monomer to accept another Ub at Lys63 in Ubc13-mediated conjugations. Exhaustive replacement of all seven lysines with shorter surrogates Orn, Dab, or Dap essentially blocks Ub chain formation, and in the case of Dap, precludes proper folding of the Ub protein.

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来源期刊
Helvetica Chimica Acta
Helvetica Chimica Acta 化学-化学综合
CiteScore
3.00
自引率
0.00%
发文量
60
审稿时长
2.3 months
期刊介绍: Helvetica Chimica Acta, founded by the Swiss Chemical Society in 1917, is a monthly multidisciplinary journal dedicated to the dissemination of knowledge in all disciplines of chemistry (organic, inorganic, physical, technical, theoretical and analytical chemistry) as well as research at the interface with other sciences, where molecular aspects are key to the findings. Helvetica Chimica Acta is committed to the publication of original, high quality papers at the frontier of scientific research. All contributions will be peer reviewed with the highest possible standards and published within 3 months of receipt, with no restriction on the length of the papers and in full color.
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