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首页> 外文期刊>Organic & biomolecular chemistry >Melanin production by tyrosinase activity on a tyrosine-rich peptide fragment and pH-dependent self-assembly of its lipidated analogue
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Melanin production by tyrosinase activity on a tyrosine-rich peptide fragment and pH-dependent self-assembly of its lipidated analogue

机译:通过富含酪氨酸的肽片段上的酪氨酸酶活性和其脂质化类似物的pH依赖自组装来产生黑色素

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摘要

We investigate the self-assembly of a palmitoylated (C16-chain at the N terminus) peptide fragment in comparison to the unlipidated peptide EELNRYY, a fragment of the gut hormone peptide PYY3-36. The lipopeptide C16-EELNRYY shows remarkable pH-dependent self-assembly above measured critical aggregation concentrations, forming fibrils at pH 7, but micelles at pH 10. The parent peptide does not show self-assembly behaviour. The lipopeptide forms hydrogels at sufficiently high concentration at pH 7, the dynamic mechanical properties of which were measured. We also show that the tyrosine functionality at the C terminus of EELNRYY can be used to enzymatically produce the pigment melanin. The enzyme tyrosinase oxidises tyrosine into 3,4-dihydroxyphenylalanine (DOPA), DOPA-quinone and further products, eventually forming eumelanin. This is a mechanism of photo-protection in the skin, for this reason controlling tyrosinase activity is a major target for skin care applications and EELNRYY has potential to be developed for such uses.
机译:我们调查了与未脂化的肽EELNRYY(肠道激素肽PYY3-36的一个片段)相比,棕榈酰化(在N端的C16链)肽片段的自组装。脂肽C16-EELNRYY在高于测量的临界聚集浓度时显示出显着的pH依赖性自组装,在pH 7时形成原纤维,但在pH 10时形成胶束。亲本肽未显示自组装行为。脂肽在pH 7时以足够高的浓度形成水凝胶,并对其动态力学性能进行了测量。我们还显示EELNRYY C末端的酪氨酸功能可用于酶促产生色素黑色素。酪氨酸酶将酪氨酸氧化为3,4-二羟基苯丙氨酸(DOPA),DOPA醌和其他产物,最终形成真木兰。这是皮肤中的光保护机制,因此,控制酪氨酸酶活性是皮肤护理应用的主要目标,并且EELNRYY具有开发用于此类用途的潜力。

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  • 来源
    《Organic & biomolecular chemistry 》 |2019年第18期| 4543-4553| 共11页
  • 作者单位

    Univ Reading, Sch Chem Pharm & Food Biosci, Reading RG6 6AD, Berks, England;

    Univ Reading, Sch Chem Pharm & Food Biosci, Reading RG6 6AD, Berks, England;

    Univ Reading, Sch Chem Pharm & Food Biosci, Reading RG6 6AD, Berks, England;

    Univ Reading, Sch Chem Pharm & Food Biosci, Reading RG6 6AD, Berks, England;

    Univ Reading, Sch Chem Pharm & Food Biosci, Reading RG6 6AD, Berks, England;

    Univ Reading, Sch Chem Pharm & Food Biosci, Reading RG6 6AD, Berks, England;

    Univ Reading, Sch Chem Pharm & Food Biosci, Reading RG6 6AD, Berks, England;

    Aalto Univ, Sch Sci, Dept Appl Phys, POB 15100, FI-00076 Aalto, Finland;

    Aalto Univ, Sch Sci, Dept Appl Phys, POB 15100, FI-00076 Aalto, Finland;

    Diamond Light Source, Didcot OX11 0DE, Oxon, England;

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