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硫酸软骨素蛋白聚糖与层粘连蛋白-1的结合特性,以及在标准组织培养选择试验中的相关神经突生长行为。

Binding characteristics of chondroitin sulfate proteoglycans and laminin-1, and correlative neurite outgrowth behaviors in a standard tissue culture choice assay.

作者信息

Snow Diane M, Smith Jeffrey D, Gurwell Julie A

机构信息

University of Kentucky, Department of Anatomy and Neurobiology, Chandler Medical Center, Lexington 40536-0298, USA.

出版信息

J Neurobiol. 2002 Jun 15;51(4):285-301. doi: 10.1002/neu.10060.

Abstract

Neuronal growth cones are capable of sophisticated discrimination of environmental cues, on cell surfaces and in the extracellular matrix, to accomplish navigation during development (generation) and following nervous system injury (regeneration). Choices made by growth cones are commonly examined using tissue culture paradigms in which molecules of interest are purified and substratum-bound. From observations of growth cone behaviors using these paradigms, assertions are made about choices neuronal growth cones may make in vivo. However, in many cases, the binding, interactions, and conformations of these molecules have not been determined. In the present study, we investigated the binding characteristics of two commonly studied outgrowth regulatory molecules: chondroitin sulfate proteoglycans (CSPGs), which are typically inhibitory to neurite outgrowth during development and following nervous system injury, and laminin, which is typically outgrowth promoting for many neuronal types. Using a novel combination of radiolabeling and quantitative fluorescence, we determined the precise concentrations of CSPGs and laminin-1 that were bound separately and together in a variety of choice assays. For identically prepared cultures, we correlated neurite outgrowth behaviors with binding characteristics. The data support-our working hypothesis that neuronal growth cones are guided by the ratio of outgrowth-promoting to outgrowth-inhibiting influences in their environment, i.e., they summate local molecular cues. The response of growth cones to these molecular combinations is most likely mediated by integrins and subsequent activation of signal transduction cascades in growth cones.

摘要

神经元生长锥能够精确区分细胞表面和细胞外基质中的环境线索,以在发育(生成)过程中以及神经系统损伤后(再生)完成导航。生长锥做出的选择通常使用组织培养范式进行研究,在这些范式中,感兴趣的分子被纯化并与底物结合。通过使用这些范式观察生长锥的行为,人们对神经元生长锥在体内可能做出的选择进行了断言。然而,在许多情况下,这些分子的结合、相互作用和构象尚未确定。在本研究中,我们研究了两种常用的生长调节分子的结合特性:硫酸软骨素蛋白聚糖(CSPGs),其在发育过程中和神经系统损伤后通常对神经突生长具有抑制作用;层粘连蛋白,其通常对许多神经元类型的生长具有促进作用。使用放射性标记和定量荧光的新组合,我们确定了在各种选择试验中分别和一起结合的CSPGs和层粘连蛋白-1的精确浓度。对于相同制备的培养物,我们将神经突生长行为与结合特性相关联。数据支持我们的工作假设,即神经元生长锥由其环境中促进生长与抑制生长影响的比例引导,即它们整合局部分子线索。生长锥对这些分子组合的反应很可能由整合素介导,并随后激活生长锥中的信号转导级联反应。

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