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黑素细胞:神经元运输和胞吐作用的模型系统?

Melanophores: a model system for neuronal transport and exocytosis?

作者信息

Aspengren Sara, Hedberg Daniel, Wallin Margareta

机构信息

Department of Zoology/Zoophysiology, Göteborg University, Göteborg, Sweden.

出版信息

J Neurosci Res. 2007 Sep;85(12):2591-600. doi: 10.1002/jnr.21132.

Abstract

Black pigment cells, melanophores, from lower vertebrates are specialized in bidirectional and coordinated translocation of pigment granules, melanosomes, in the cytoplasm. Melanophores develop from the neuronal crest and are most abundant in the dermal and epidermal layers of the skin, where the intracellular distribution of the pigment significantly influences the color of the animal. The transport of pigment is dependent on an intact cytoskeleton and motor proteins associated with cytoskeletal components. The easily cultured melanophores have proved to be excellent models for organelle transport because the intracellular movements of pigment can be visualized via light microscopy, and the granules move in response to defined chemical signals. The ease of achieving a combination of morphological and functional transport studies is the advantage of the melanophore system, and studies on pigment cells have revealed new components of the transport machinery, including molecular motors, their adapters, and transfer of vesicles to other cells. Many cellular components are transported with a combination of the actin- and microtubule-based transport systems, and, since all eukaryotic organisms rely on functional intracellular transport and an intact cytoskeleton, studies on melanophores are important for many aspects of cell biology, including axonal transport. In this review, we present an overview of the research on the pigment transport system and the potential use of pigment cells as a model system.

摘要

来自低等脊椎动物的黑色色素细胞,即黑素细胞,专门负责色素颗粒(黑素体)在细胞质中的双向协调转运。黑素细胞起源于神经嵴,在皮肤的真皮层和表皮层中最为丰富,其中色素的细胞内分布显著影响动物的颜色。色素的运输依赖于完整的细胞骨架以及与细胞骨架成分相关的运动蛋白。易于培养的黑素细胞已被证明是研究细胞器运输的优秀模型,因为色素的细胞内运动可以通过光学显微镜观察到,并且颗粒会对特定的化学信号做出反应。黑素细胞系统的优势在于能够轻松地将形态学和功能性运输研究结合起来,对色素细胞的研究揭示了运输机制的新成分,包括分子马达、它们的衔接蛋白以及囊泡向其他细胞的转移。许多细胞成分通过基于肌动蛋白和微管的运输系统组合进行运输,并且由于所有真核生物都依赖于功能性的细胞内运输和完整的细胞骨架,因此对黑素细胞的研究对于细胞生物学的许多方面都很重要,包括轴突运输。在这篇综述中,我们概述了色素运输系统的研究以及色素细胞作为模型系统的潜在用途。

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