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F-spondin是一种针对胚胎运动神经元的接触排斥分子。

F-spondin is a contact-repellent molecule for embryonic motor neurons.

作者信息

Tzarfati-Majar V, Burstyn-Cohen T, Klar A

机构信息

Department of Anatomy and Cell Biology, The Hebrew University, Hadassah Medical School, Post Office Box 12272, Jerusalem 91120, Israel.

出版信息

Proc Natl Acad Sci U S A. 2001 Apr 10;98(8):4722-7. doi: 10.1073/pnas.081062398. Epub 2001 Apr 3.

Abstract

The floor plate plays a key role in patterning axonal trajectory in the embryonic spinal cord by providing both long-range and local guidance cues that promote or inhibit axonal growth toward and across the ventral midline of the spinal cord, thus acting as an intermediate target for a number of crossing (commissural) and noncrossing (motor) axons. F-spondin, a secreted adhesion molecule expressed in the embryonic floor plate and the caudal somite of birds, plays a dual role in patterning the nervous system. It promotes adhesion and outgrowth of commissural axons and inhibits adhesion of neural crest cells. In the current study, we demonstrate that outgrowth of embryonic motor axons also is inhibited by F-spondin protein in a contact-repulsion fashion. Three independent lines of evidence support our hypothesis: substrate-attached F-spondin inhibits outgrowth of dissociated motor neurons in an outgrowth assay; F-spondin elicits acute growth cone collapse when applied to cultured motor neurons; and challenging ventral spinal cord explants with aggregates of HEK 293 cells expressing F-spondin, causes contact-repulsion of motor neurites. Structural-functional studies demonstrate that the processed carboxyl-half protein that contains the thrombospondin type 1 repeats is more prominent in inhibiting outgrowth, suggesting that the processing of F-spondin is important for enhancing its inhibitory activity.

摘要

底板在胚胎脊髓轴突轨迹模式形成中发挥关键作用,它提供促进或抑制轴突向脊髓腹侧中线生长及穿过该中线的远程和局部引导信号,因此成为许多交叉(连合)轴突和非交叉(运动)轴突的中间靶点。F-spondin是一种在鸟类胚胎底板和尾侧体节中表达的分泌型黏附分子,在神经系统模式形成中发挥双重作用。它促进连合轴突的黏附和生长,并抑制神经嵴细胞的黏附。在本研究中,我们证明胚胎运动轴突的生长也受到F-spondin蛋白以接触排斥方式的抑制。三条独立的证据支持我们的假设:底物附着的F-spondin在生长实验中抑制解离的运动神经元的生长;将F-spondin应用于培养的运动神经元时会引发急性生长锥塌陷;用表达F-spondin的HEK 293细胞聚集体挑战腹侧脊髓外植体,会导致运动神经突的接触排斥。结构-功能研究表明,含有血小板反应蛋白1型重复序列的加工后的羧基末端半蛋白在抑制生长方面更为突出,这表明F-spondin的加工对于增强其抑制活性很重要。

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