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首页> 外文期刊>Plant and cell physiology >Chemical synthesis of Arabidopsis CLV3 glycopeptide reveals the impact of hydroxyproline arabinosylation on peptide conformation and activity. (Special Focus Issue: Plant meristems and organogenesis.)
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Chemical synthesis of Arabidopsis CLV3 glycopeptide reveals the impact of hydroxyproline arabinosylation on peptide conformation and activity. (Special Focus Issue: Plant meristems and organogenesis.)

机译:拟南芥CLV3糖肽的化学合成揭示了羟脯氨酸阿拉伯糖基化对肽构象和活性的影响。 (特别焦点问题:植物分生组织和器官发生。)

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摘要

Arabinosylation of hydroxyproline (Hyp) is a post-translational modification often found in secreted peptide signals in plants. The physiological importance of this modification was highlighted by the finding that CLAVATA3 (CLV3), a key peptide signal for regulating the fate of stem cells in the shoot apical meristem in Arabidopsis, contains three L-arabinose residues linked via linear beta -1,2-linkages. However, understanding the functions and properties of arabinosylated peptides has been hindered by difficulties in synthesizing the complex arabinose chain. Here we report the stereoselective total synthesis of beta -1,2-linked triarabinosylated CLV3 peptide ([Ara3]CLV3). Chemically synthesized [Ara3]CLV3 restricted stem cell activity more effectively than did unmodified CLV3 peptide. Comparison of mono-, di- and triarabinosylated CLV3 glycopeptides revealed that the biological activity increased progressively as the arabinose chain length increased. Thus, the arabinose chain length of CLV3 is important for its biological activity. Nuclear magnetic resonance spectroscopy and nuclear Overhauser effect-based structure calculations further revealed the structural impact of the arabinose chain on peptide conformation. The arabinose chain of [Ara3]CLV3 extends toward the C-terminal end of the peptide, and its non-reducing end is positioned proximal to the peptide backbone. Consequently, the arabinose chain causes distinct distortion in the C-terminal half of the peptide in a highly directional manner. The established synthetic route of [Ara3]CLV3 will greatly contribute to our understanding of the biology and biochemistry of arabinosylated peptide signals in plants.
机译:羟脯氨酸(Hyp)的阿拉伯糖基化是一种翻译后修饰,通常在植物分泌的肽信号中发现。通过发现CLAVATA3(CLV3)(一种调节拟南芥芽顶分生组织中干细胞的命运的关键肽信号)包含三个通过线性β-1,2连接的L-阿拉伯糖残基,突显了这种修饰的生理重要性。 -链接。但是,由于难以合成复杂的阿拉伯糖链,所以阻碍了对阿拉伯糖基化肽的功能和特性的理解。在这里,我们报告β-1,2,连接的三阿拉伯糖基化的CLV3肽([Ara 3 ] CLV3)的立体选择性全合成。化学合成的[Ara 3 ] CLV3比未修饰的CLV3肽更有效地限制了干细胞的活性。单,二和三阿拉伯糖基化的CLV3糖肽的比较显示,随着阿拉伯糖链长的增加,生物活性逐渐增加。因此,CLV3的阿拉伯糖链长对其生物学活性很重要。核磁共振波谱和基于核Overhauser效应的结构计算进一步揭示了阿拉伯糖链对肽构象的结构影响。 [Ara 3 ] CLV3的阿拉伯糖链向肽的C端延伸,其非还原端位于肽主链的近端。因此,阿拉伯糖链以高度定向的方式在肽的C末端一半处引起明显的畸变。建立的[Ara 3 ] CLV3的合成途径将大大有助于我们对植物中阿拉伯糖基化肽信号的生物学和生化的理解。

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