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作为感觉轴突伸长和分支的正向调节因子的哺乳动物Slit蛋白的生化纯化。

Biochemical purification of a mammalian slit protein as a positive regulator of sensory axon elongation and branching.

作者信息

Wang K H, Brose K, Arnott D, Kidd T, Goodman C S, Henzel W, Tessier-Lavigne M

机构信息

Department of Anatomy, Howard Hughes Medical Institute, University of California, San Francisco 94143-0452, USA.

出版信息

Cell. 1999 Mar 19;96(6):771-84. doi: 10.1016/s0092-8674(00)80588-7.

Abstract

Many neurons in both vertebrates and invertebrates innervate multiple targets by sprouting secondary axon collaterals (or branches) from a primary axon shaft. To begin to identify molecular regulators of axon branch initiation or extension, we studied the growth of single sensory axons in an in vitro collagen assay system and identified an activity in extracts of embryonic spinal cord and of postnatal and adult brain that promotes the elongation and formation of extensive branches by these axons. Biochemical purification of the activity from calf brain extracts led to the identification of an amino-terminal fragment of Slit2 as the main active component and to the discovery of a distinct activity that potentiates its effects. These results indicate that Slit proteins may function as positive regulators of axon collateral formation during the establishment or remodeling of neural circuits.

摘要

在脊椎动物和无脊椎动物中,许多神经元通过从初级轴突干上长出次级轴突侧支(或分支)来支配多个靶点。为了开始识别轴突分支起始或延伸的分子调节因子,我们在体外胶原蛋白检测系统中研究了单个感觉轴突的生长,并在胚胎脊髓以及出生后和成年大脑的提取物中鉴定出一种活性物质,该物质可促进这些轴突的伸长和广泛分支的形成。从小牛脑提取物中对该活性物质进行生化纯化,结果鉴定出Slit2的一个氨基末端片段是主要活性成分,并发现了一种能增强其作用的独特活性。这些结果表明,在神经回路的建立或重塑过程中,Slit蛋白可能作为轴突侧支形成的正向调节因子发挥作用。

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