黑色素:皮肤色素及更多——类型、结构模型、生物功能和形成途径

F. Solano
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引用次数: 397

摘要

本文综述了所有类型生物中所有类型黑色素的一般观点。黑色素通常被认为只是一种动物皮肤色素,与类似的真菌或细菌色素分开处理。讨论了苯酚前体的相似之处和形成路线上的共同模式。所有黑色素都是在酶控制的第一个阶段形成的,通常是酚酶,第二阶段是氧化中间体的不受控制的聚合。在第二阶段,苯酚氧化产生的醌起着至关重要的作用。就功能而言,所有黑色素都表现出一个共同的特征,即保护作用,但它们不仅仅是抵御紫外线的光保护色素。在病原微生物中,黑色素化成为一种毒力因子,因为黑色素在被感染宿主中保护微生物细胞免受防御机制的侵害。反过来,一些黑色素是在没有阳光辐射潜在威胁的组织中形成的。因此,它们的氧化还原、金属螯合或自由基清除性能比光吸收能力更重要。这些色素有时就像一把双刃剑,在不同的细胞中抑制黑色素形成是可取的。从皮肤病学、生物医学、化妆品、微生物学以及水果技术的角度来看,黑色素生物化学是一个活跃的研究领域。
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Melanins: Skin Pigments and Much More—Types, Structural Models, Biological Functions, and Formation Routes
This review presents a general view of all types of melanin in all types of organisms. Melanin is frequently considered just an animal cutaneous pigment and is treated separately from similar fungal or bacterial pigments. Similarities concerning the phenol precursors and common patterns in the formation routes are discussed. All melanins are formed in a first enzymatically-controlled phase, generally a phenolase, and a second phase characterized by an uncontrolled polymerization of the oxidized intermediates. In that second phase, quinones derived from phenol oxidation play a crucial role. Concerning functions, all melanins show a common feature, a protective role, but they are not merely photoprotective pigments against UV sunlight. In pathogenic microorganisms, melanization becomes a virulence factor since melanin protects microbial cells from defense mechanisms in the infected host. In turn, some melanins are formed in tissues where sunlight radiation is not a potential threat. Then, their redox, metal chelating, or free radical scavenging properties are more important than light absorption capacity. These pigments sometimes behave as a double-edged sword, and inhibition of melanogenesis is desirable in different cells. Melanin biochemistry is an active field of research from dermatological, biomedical, cosmetical, and microbiological points of view, as well as fruit technology.
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