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Fostering protein-calixarene interactions: from molecular recognition to sensing

机译:培养蛋白质 - 钙碱相互作用:从分子识别到感应

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摘要

Two isomeric bis-calixarene-carbazole conjugates (CCC-1 and CCC-2) endowed with carboxylic acid functions at their lower rims have been found to display a high sensing ability (KSV up to 6 x 10(7) M-1) and selectivity toward cytochrome c, a multi-functional protein, in an aqueous-based medium. After targeting basic amino acid residues on the protein surface residing near the prosthetic heme group through electrostatic and hydrophobic interactions, a rapid photoinduced electron transfer ensues between the integrated transduction element (aryleneethynylene chromophore) of CCCs and the iron-oxidized heme of cytochrome c, enabling direct detection of the protein at nanomolar levels. Our results show that CCCs are capable of efficiently discriminating heme proteins (cytochrome c vs. myoglobin) and non-heme proteins (lysozyme) in an aqueous medium. Studies performed in two solvent systems (organic and aqueous) strongly suggest that in an organic medium a Forster-type resonance energy transfer is responsible for the observed reduction in CCCs emission upon contact with heme proteins while in an aqueous medium a specific photoinduced electron transfer mechanism prevails.
机译:已经发现,在其下轮辋上赋予含有羧酸官能的两种异构双钙载物 - 咔唑缀合物(CCC-1和CCC-2)显示出高的感测能力(KSV高达6×10(7)m-1)和在基于水性培养基中对细胞色素C的选择性是细胞色素C,多功能蛋白质。在通过静电和疏水相互作用驻留在假体血红素局部附近的蛋白质表面上靶向碱性氨基酸残基后,在CCC的集成转导元件(亚芳基乙烯发色)和细胞色素C的铁氧化血红素之间发生了快速的光抑制电子传递,使能直接检测纳米摩尔水平的蛋白质。我们的结果表明,CCC能够在水性介质中有效地鉴别血红素蛋白(细胞色素C枸杞)和非血红素蛋白(溶菌酶)。在两种溶剂系统(有机和水)中进行的研究强烈表明,在有机培养基中,福利型共振能量转移负责在与血红素蛋白接触时观察到的CCCS发射,而在水性介质中的特定光诱导的电子转移机构占上风。

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  • 来源
    《RSC Advances》 |2016年第2期|共11页
  • 作者单位

    Inst Politecn Lisboa Dept Engn Quim Lab Quim Organ P-1959007 Lisbon Portugal;

    Inst Politecn Lisboa Dept Engn Quim Lab Quim Organ P-1959007 Lisbon Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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