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连接蛋白的异位表达揭示了其在生长锥导向和突触形成过程中的排斥功能。

Ectopic expression of connectin reveals a repulsive function during growth cone guidance and synapse formation.

作者信息

Nose A, Takeichi M, Goodman C S

机构信息

Howard Hughes Medical Institute, Division of Molecular and Cell Biology, University of California, Berkeley 94720.

出版信息

Neuron. 1994 Sep;13(3):525-39. doi: 10.1016/0896-6273(94)90023-x.

Abstract

Connectin, a cell surface protein of the leucine-rich repeat family in Drosophila, is expressed on the surface of a subset of embryonic muscles (primarily lateral muscles), on the growth cones and axons of the motoneurons that innervate these muscles (primarily SNa motoneurons), and on several associated glial cells. When coupled with its ability to mediate homophilic cell adhesion, these results led to the suggestion that Connectin functions as an attractive signal for SNa pathfinding and targeting. In the present study, we ectopically expressed Connectin on ventral muscles normally innervated by SNb motoneurons. The SNb growth cones change both their morphology and their trajectory when they encounter ectopic Connectin-positive ventral muscles, displaying "bypass," "detour," and "stall" phenotypes. Moreover, SNb synapse formation is prevented by Connectin expression on ventral muscles. These results reveal a repulsive function for Connectin during motoneuron growth cone guidance and synapse formation.

摘要

连接蛋白是果蝇中富含亮氨酸重复序列家族的一种细胞表面蛋白,在一部分胚胎肌肉(主要是侧肌)表面、支配这些肌肉的运动神经元(主要是SNa运动神经元)的生长锥和轴突以及一些相关的神经胶质细胞上表达。结合其介导同源性细胞黏附的能力,这些结果表明连接蛋白作为SNa神经元路径寻找和靶向的一种吸引信号发挥作用。在本研究中,我们在通常由SNb运动神经元支配的腹侧肌肉上异位表达连接蛋白。当SNb生长锥遇到异位的连接蛋白阳性腹侧肌肉时,它们的形态和轨迹都会发生变化,表现出“绕过”“迂回”和“停滞”表型。此外,腹侧肌肉上连接蛋白的表达会阻止SNb突触的形成。这些结果揭示了连接蛋白在运动神经元生长锥导向和突触形成过程中的排斥功能。

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