Jurney William M, Gallo Gianluca, Letourneau Paul C, McLoon Steven C
Department of Neuroscience, University of Minnesota, Minneapolis, Minnesota 55455, USA.
J Neurosci. 2002 Jul 15;22(14):6019-28. doi: 10.1523/JNEUROSCI.22-14-06019.2002.
Negative guidance molecules are important for guiding the growth of axons and ultimately for determining the wiring pattern in the developing nervous system. In tissue culture, growth cones at the tips of growing axons collapse in response to negative guidance molecules, such as ephrin-A2 and semaphorin 3A. The small GTPase Rac1 is involved in growth cone collapse, but the nature of its role is not clear. Rac1 activity assays showed that Rac1 is transiently inactivated after treatment with ephrin-A2. Ephrin-induced growth cone collapse, however, correlated with resumption of Rac1 activity. We demonstrate that Rac1 is required for endocytosis of the growth cone plasma membrane and reorganization of F-actin but not for the depolymerization of F-actin during growth cone collapse in response to ephrin-A2 and semaphorin 3A. Rac1, however, does not regulate constitutive endocytosis in growth cones. These findings show that in response to negative guidance molecules, the function of Rac1 changes from promoting actin polymerization associated with axon growth to driving endocytosis of the plasma membrane, resulting in growth cone collapse. Furthermore, Rac1 antisense injected into the embryonic chick eye in vivo caused the retinotectal projection to develop without normal topography in a manner consistent with Rac1 having an obligatory role in mediating ephrin signaling.
负向导向分子对于引导轴突生长以及最终确定发育中的神经系统的布线模式至关重要。在组织培养中,生长轴突末端的生长锥会对负向导向分子(如ephrin-A2和semaphorin 3A)做出反应而塌陷。小GTP酶Rac1参与生长锥塌陷,但其作用性质尚不清楚。Rac1活性测定表明,用ephrin-A2处理后Rac1会短暂失活。然而,ephrin诱导的生长锥塌陷与Rac1活性的恢复相关。我们证明,在响应ephrin-A2和semaphorin 3A时,生长锥塌陷过程中,Rac1是生长锥质膜内吞作用和F-肌动蛋白重组所必需的,但不是F-肌动蛋白解聚所必需的。然而,Rac1并不调节生长锥中的组成型内吞作用。这些发现表明,在响应负向导向分子时,Rac1的功能从促进与轴突生长相关的肌动蛋白聚合转变为驱动质膜内吞作用,导致生长锥塌陷。此外,在体内向胚胎鸡眼中注射Rac1反义寡核苷酸会导致视网膜顶盖投射发育异常,其方式与Rac1在介导ephrin信号传导中起关键作用一致。