Department of Pharmacology, University of Vermont, 89 Beaumont Avenue, Burlington, VT 05405, United States.
Auton Neurosci. 2010 Dec 8;158(1-2):65-70. doi: 10.1016/j.autneu.2010.06.004. Epub 2010 Jul 15.
Ephs and ephrins are membrane-bound proteins that interact to modulate axon growth and neuronal function. We tested the hypothesis that eph/ephrin interactions affected the growth and function of vascular sympathetic innervation. Using RT-PCR analyses, we detected both classes of ephs (A and B) and both classes of ephrins (A and B) in sympathetic ganglia from neonatal and adult rats. Both classes of ephs (A and B) and both classes of ephrins (A and B) bound to the cell bodies and neurites of dissociated postganglionic sympathetic neurons. Messenger RNAs encoding for both classes of ephs (A and B) and both classes of ephrins (A and B) were also detected in sympathetically innervated arteries from neonatal and adult rats. These data suggest that ephrins/ephs on nerve fibers of postganglionic sympathetic neurons could interact with ephs/ephrins on cells in innervated arteries. We found that ephA4 reduced reinnervation of denervated femoral arteries. Reinnervation in the presence of ephA4-Fc (38.9±6.6%) was significantly less than that in the presence of IgG-Fc (62±10%; n=5; p<0.05; one-tailed unpaired t-test). These data indicate that eph/ephrin interactions modulated the growth of vascular sympathetic innervation. We also found that ephA4 increased basal release of norepinephrine from nerve terminals of isolated tail arteries. These data indicate that eph/ephrin interactions affect the growth and function of vascular sympathetic innervation.
Ephs 和 ephrins 是膜结合蛋白,它们相互作用以调节轴突生长和神经元功能。我们测试了 Eph/ephrin 相互作用是否影响血管交感神经支配的生长和功能的假说。通过 RT-PCR 分析,我们在新生和成年大鼠的交感神经节中检测到了两类 Ephs(A 和 B)和两类 ephrins(A 和 B)。两类 Ephs(A 和 B)和两类 ephrins(A 和 B)都与分离的节后交感神经元的胞体和突起结合。新生和成年大鼠交感神经支配的动脉中也检测到编码两类 Ephs(A 和 B)和两类 ephrins(A 和 B)的信使 RNA。这些数据表明,节后交感神经元纤维上的 ephrins/ephs 可以与支配的动脉中的细胞上的 Ephs/ephrins 相互作用。我们发现 EphA4 减少了去神经支配的股动脉的再支配。在 EphA4-Fc(38.9±6.6%)存在的情况下,再支配明显少于 IgG-Fc(62±10%;n=5;p<0.05;单侧非配对 t 检验)。这些数据表明 Eph/ephrin 相互作用调节了血管交感神经支配的生长。我们还发现 EphA4 增加了分离尾动脉神经末梢的去甲肾上腺素的基础释放。这些数据表明 Eph/ephrin 相互作用影响血管交感神经支配的生长和功能。