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Semisynthesis of a segmental isotopically labeled protein splicing precursor: NMR evidence for an unusual peptide bond at the N-extein-intein junction

机译:片段同位素标记的蛋白剪接前体的半合成:NMR证据表明N-蛋白-intein连接处有异常肽键

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摘要

Protein splicing is a posttranslational autocatalytic process in which an intervening sequence, termed an intein, is removed from a host protein, the extein. Although we have a reasonable picture of the basic chemical steps in protein splicing, our knowledge of how these are catalyzed and regulated is less well developed. In the current study, a combination of NMR spectroscopy and segmental isotopic labeling has been used to study the structure of an active protein splicing precursor, corresponding to an N-extein fusion of the We GyrA intein. The (1)J(NC) coupling constant for the (-1) scissile peptide bond at the N-extein-intein junction was found to be approximate to12 Hz, which indicates that this amide is highly polarized, perhaps because of nonplanarity. Additional mutagenesis and NMR studies indicate that conserved box B histidine residue is essential for catalysis of the first step of splicing and for maintaining the (-1) scissile bond in its unusual conformation. Overall, these studies support the "ground-state destabilization" model as part of the mechanism of catalysis.
机译:蛋白质剪接是翻译后的自催化过程,其中从宿主蛋白质(外在蛋白)中去除了称为内含子的中间序列。尽管我们对蛋白质剪接中的基本化学步骤有一个合理的了解,但是我们对如何催化和调节这些化学知识的了解还不够完善。在当前的研究中,已将NMR光谱学和分段同位素标记相结合来研究活性蛋白剪接前体的结构,该结构与We GyrA内含肽的N-外泌素融合体相对应。发现N-extein-intein连接处的(-1)易裂肽键的(1)J(NC)耦合常数约为12 Hz,这表明该酰胺是高度极化的,可能是由于非平面性。额外的诱变和NMR研究表明,保守的框B组氨酸残基对于催化第一步剪接以及将(-1)易裂键保持在其异常构象至关重要。总体而言,这些研究支持“基态失稳”模型作为催化机制的一部分。

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