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首页> 外文期刊>Chemistry: A European journal >Total Synthesis of O-GalNAcylated Antifreeze Glycoprotein using the Switchable Reactivity of Peptidyl-N-pivaloylguanidine
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Total Synthesis of O-GalNAcylated Antifreeze Glycoprotein using the Switchable Reactivity of Peptidyl-N-pivaloylguanidine

机译:使用肽基-N-戊酰基的可切换反应性全氟丙基化糖蛋白的总合成

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摘要

Antifreeze glycoprotein (AFGP) is an O-glycoprotein that displays antifreeze activity through depression of the freezing point of water. GalNAc is a core sugar structure of AFGP, and contributes to induce antifreeze activity of this glycoprotein. However, the general functional role that this sugar plays at the molecular level is still unknown. To elucidate this, it is essential to determine the relationship between structure and activity of O-GalNAcylated AFGP using homogeneous glycoproteins. Thus, the total synthesis of homogeneous O-GalNAcylated AFGP was conducted by using a unique peptide derivative: peptidyl-N-pivaloylguanidine. It was found that peptidyl-N-pivaloylguanidine is an "unreactive" peptide in peptide coupling reactions but is interconvertible with a "reactive" peptide-a-thioester by means of a simple treatment under buffer condition at pH=7 to 8. The unique switchable reactivity of peptidyl-N-pivaloylguanidine enabled an efficient sequential peptide coupling strategy. By using this strategy, various lengths of homogeneous O-GalNAcylated AFGP were synthesized, including one that was 120 amino acids in length, with 40 O-GalNAcylation sites. The structural analysis by circular dichroism spectroscopy and evaluation of the antifreeze activity of the synthetic AFGP(Gal-NAc)s revealed that the simple O-glycosylation with GalNAc is essential for both structural and functional basis of AFGP to exhibit antifreeze activity.
机译:防冻糖蛋白(AFGP)是一种o-糖蛋白,其通过抑制水的凹陷显示防冻活性。 Galnac是AFGP的核糖结构,有助于诱导该糖蛋白的防冻活性。然而,这种糖在分子水平上发挥的一般功能作用仍然未知。为了阐明这一点,必须使用均相糖蛋白确定O-加仑酰基化AFGP的结构和活性之间的关系。因此,通过使用独特的肽衍生物:肽基-N-戊酰基,对均相O-环酰化AFGP的总合成。发现肽基-N-戊酰酰胍是肽偶联反应中的“不反应的”肽,但通过在pH = 7至8的缓冲条件下的简单处理,与“反应性”肽-A-硫酯相互易互相。独特的肽基-N-戊酰基的可切换反应性使能有效的序列肽偶联策略。通过使用该策略,合成了各种长度的均匀O-加仑丙烯酰化AFGP,包括将120个氨基酸的长度为120℃。通过圆形二色性光谱和合成AFGP(GAL-NAC)的抗冻活性评价的结构分析显示,随着AFGP的结构和功能基础,具有Galnac的简单O-糖基化对于表现出抗冻活动至关重要。

著录项

  • 来源
    《Chemistry: A European journal 》 |2017年第39期| 共5页
  • 作者单位

    Department of Chemistry Graduate School of Science Osaka University 1-1 Toyonaka Osaka 5600043 (Japan);

    Department of Chemistry Graduate School of Science Osaka University 1-1 Toyonaka Osaka 5600043 (Japan);

    Transdisciplinary Life Science Course Graduate School of Life Science Hokkaido University and Bioproduction Research Institute National Institute of Advanced Industrial Science and Technology (AIST) 2-17-2-1 Tsukisamu-Higashi Toyohira Sapporo Hokkaid;

    Transdisciplinary Life Science Course Graduate School of Life Science Hokkaido University and Bioproduction Research Institute National Institute of Advanced Industrial Science and Technology (AIST) 2-17-2-1 Tsukisamu-Higashi Toyohira Sapporo Hokkaid;

    Department of Chemistry Graduate School of Science Osaka University 1-1 Toyonaka Osaka 5600043 (Japan);

    Department of Chemistry Graduate School of Science Osaka University 1-1 Toyonaka Osaka 5600043 (Japan);

    Department of Chemistry Graduate School of Science Osaka University 1-1 Toyonaka Osaka 5600043 (Japan);

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用化学 ;
  • 关键词

    AFGP; GalNAc; glycoprotein; Npivaloylguanidine; total synthesis;

    机译:AFGP;Galnac;糖蛋白;Npivaloylguanidine;总合成;

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