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对白化小鼠眼睛和皮肤中黑色素代谢的超微结构、组织化学及生物化学研究。

Ultrastructural, histochemical, and biochemical studies of the melanin metabolism in eye and skin of pallid mice.

作者信息

Ito M, Hashimoto K, Organisciak D T

出版信息

J Invest Dermatol. 1982 May;78(5):414-24. doi: 10.1111/1523-1747.ep12507677.

Abstract

The hair follicles and the eyes of pallid mice (C57/6J-Pa/Pa) and those of black mice (C57/6J-+/Pa) were examined ultrastructurally, histochemically, and biochemically to determine the cause of pigment dilution. The pigment cells in the hair follicles and the eyes of pallid mice have less mature melanosomes than those of black mice. In the hair follicles the pallid melanosomes were transferred into keratinocytes and became aggregated. In the eyes they were already aggregated within the pigment cells and were digested in acid phosphatase-positive lysosomes. The activity of acid phosphatase, a marker of lysosomal enzymes was significantly higher in pallid hair follicles and eyes than in black hair follicles and eyes. Dopa reactions at light and electron microscopical level indicated that the pigment cells in each tissue produced a large amount of Dopa oxidase when compared with those in each black counterpart. However, the rate of hydroxylation of L-tyrosine-3,5-3H was significantly lower in the pallid eyes than in black eyes, while this rate was significantly higher in pallid hair follicles than in black hair follicles. Immediate digestion of melanosomes within the pigment cells, i.e., autophagocytosis, seemed to explain the low activity in the pallid eyes. The diluted coat and eye colors of pallid mice are, therefore, not related to low Dopa oxidase activity but to immaturity of melanosomes and high activities of lysosomal enzymes; these enzymes seem to digest many of these immature melanosomes and contribute to the diluted coat and eye colors of pallid mice.

摘要

对苍白小鼠(C57/6J-Pa/Pa)和黑色小鼠(C57/6J-+/Pa)的毛囊和眼睛进行了超微结构、组织化学和生物化学检查,以确定色素稀释的原因。与黑色小鼠相比,苍白小鼠毛囊和眼睛中的色素细胞具有不太成熟的黑素小体。在毛囊中,苍白的黑素小体转移到角质形成细胞中并聚集。在眼睛中,它们已经在色素细胞内聚集,并在酸性磷酸酶阳性的溶酶体中被消化。酸性磷酸酶作为溶酶体酶的标志物,其活性在苍白小鼠的毛囊和眼睛中显著高于黑色小鼠的毛囊和眼睛。光镜和电镜水平的多巴反应表明,与各黑色对应组织相比,每个组织中的色素细胞产生大量的多巴氧化酶。然而,苍白小鼠眼睛中L-酪氨酸-3,5-3H的羟化率显著低于黑色小鼠眼睛,而在苍白小鼠毛囊中该率显著高于黑色小鼠毛囊。色素细胞内黑素小体的立即消化,即自噬作用,似乎可以解释苍白小鼠眼睛中活性较低的原因。因此,苍白小鼠被稀释的皮毛和眼睛颜色并非与多巴氧化酶活性低有关,而是与黑素小体的不成熟以及溶酶体酶的高活性有关;这些酶似乎消化了许多这些不成熟的黑素小体,并导致了苍白小鼠皮毛和眼睛颜色的稀释。

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