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研究神经元中微管运输的策略。

Strategies for studying microtubule transport in the neuron.

作者信息

Baas P W

机构信息

Department of Anatomy, The University of Wisconsin Medical School, Madison, Wisconsin 53706, USA.

出版信息

Microsc Res Tech. 2000 Jan 15;48(2):75-84. doi: 10.1002/(SICI)1097-0029(20000115)48:2<75::AID-JEMT3>3.0.CO;2-U.

Abstract

Microtubules are prominent cytoskeletal elements within the neuron. They are essential for the differentiation, growth, and maintenance of axons and dendrites. The microtubules within each type of process have a distinct pattern of organization, and these distinct patterns result in many of the morphological and structural features that distinguish axons and dendrites from one another. There are a number of challenges that must be met in order for the neuron to establish the microtubule arrays of axons and dendrites. One attractive model invokes the active transport of microtubules from the cell body of the neuron into and down these processes. In support of this model, specific motor proteins have now been identified within neurons that have the necessary properties to transport microtubules into developing axons and dendrites with the appropriate orientation for each type of process. An important goal is to develop microscopic methods that permit the visualization of microtubule transport within different regions of the neuron. To date, achieving this goal has met with mixed success, probably as a result of the geometry of the neuron and the inherent complexity of the neuronal microtubule arrays. While some approaches have failed to reveal microtubule transport, other more recent approaches have proven successful. These approaches provide strong visual support for a model based on microtubule transport, and provide hope that future approaches can provide even clearer demonstrations of this transport.

摘要

微管是神经元内突出的细胞骨架成分。它们对于轴突和树突的分化、生长及维持至关重要。每种突起内的微管都有独特的组织模式,这些独特模式导致了许多区分轴突和树突的形态和结构特征。为了使神经元建立轴突和树突的微管阵列,必须应对一些挑战。一个有吸引力的模型认为微管从神经元的细胞体被主动运输到这些突起并沿着突起向下运输。支持这一模型的是,现已在神经元内鉴定出特定的运动蛋白,这些蛋白具有将微管以适合每种突起类型的方向运输到发育中的轴突和树突的必要特性。一个重要目标是开发能够使神经元不同区域内微管运输可视化的显微方法。迄今为止,实现这一目标的结果喜忧参半,这可能是由于神经元的几何形状以及神经元微管阵列固有的复杂性所致。虽然一些方法未能揭示微管运输,但其他一些更新的方法已被证明是成功的。这些方法为基于微管运输的模型提供了有力的视觉支持,并让人希望未来的方法能够更清晰地展示这种运输。

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