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Structural and functional studies of Sepia and human melanins.

机译:棕褐色和人黑色素的结构和功能研究。

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Initial investigations were focused on defining a source of human melanin that is of sufficient quantity and quality to facilitate structural and functional studies of the pigment. By carrying out a detailed investigation of human hair eumelanin, we find that enzymatic extraction techniques yield a melanin that is biologically relevant and is used in the following studies. Using this well-defined human melanin and the accepted animal model melanin from Sepia officinalis, a new technique was developed to chemically label and solubilize these melanins. Covalent modification is an attractive route to access the structure of these pigments since the reactivity of the label allows rationalization of starting material structure.; A commonly mentioned property of melanin is the ability to bind a diversity of metal cations. As this is believed to be of biological importance, a detailed investigation of the capacity and strength of the interaction was warranted. A method was developed to remove the metal cations present in Sepia melanin and replace them with increasing amounts of a metal of interest. Competitive experiments suggest that Fe3+ occupies a different binding site than Ca2+ and Mg2+ ions, which can displace each other. The interaction of Ca2+ with melanin was investigated further due to the importance of that ion's level in controlling keratinocyte fate and the implication that melanin participates in Ca2+ regulation.
机译:最初的研究集中在确定人黑色素的来源,该来源的数量和质量足以促进色素的结构和功能研究。通过对人发真木聚糖的详细研究,我们发现酶提取技术可产生与生物学相关的黑色素,并将其用于以下研究。使用这种定义明确的人黑色素和棕褐色的公认的动物模型黑色素,开发了一种化学标记和溶解这些黑色素的新技术。共价修饰是获取这些颜料结构的一种有吸引力的途径,因为标记的反应性可以使原料结构合理化。黑色素通常提到的性质是结合多种金属阳离子的能力。由于这被认为具有生物学重要性,因此有必要对相互作用的能力和强度进行详细研究。开发了一种方法来去除棕褐色黑色素中存在的金属阳离子,并用越来越多的目标金属代替它们。竞争性实验表明,Fe3 +与Ca2 +和Mg2 +离子具有不同的结合位点,后者可以彼此置换。由于该离子水平在控制角质形成细胞命运中的重要性以及黑色素参与Ca2 +调节的含义,因此进一步研究了Ca2 +与黑色素的相互作用。

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