Wang Zhi, Li Ling Ying, Taylor Michael D, Wright Douglas E, Frank Eric
Department of Physiology, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.
J Neurosci. 2007 Apr 4;27(14):3686-94. doi: 10.1523/JNEUROSCI.0197-07.2007.
Monosynaptic connections between muscle spindle (Ia) afferents and motoneurons (MNs), the central portion of the stretch reflex circuit, are highly specific, but the mechanisms underlying this specificity are primarily unknown. In this study, we report that embryonic overexpression of neurotrophin-3 (NT3) in muscles disrupts the development of these specific Ia-MN connections, using transgenic (mlc/NT3) mice that express elevated levels of NT3 in muscles during development. In mlc/NT3 mice, there is a substantial increase in the amplitudes of monosynaptic EPSPs evoked by Ia afferents in MNs as measured with extracellular recordings from ventral roots. Despite this increased functional projection of Ia afferents, there is no obvious change in the anatomical density of Ia projections into the ventral horn of the spinal cord. Intracellular recordings from MNs revealed a major disruption in the pattern of Ia-MN connections. In addition to the normal connections between Ia afferents and MNs supplying the same muscle, there were also strong monosynaptic inputs from Ia afferents supplying unrelated muscles, which explains the increase seen in extracellular recordings. There was also a large variability in the strength of Ia input to individual MNs, both from correct and incorrect Ia afferents. Postnatal muscular administration of NT3 did not cause these changes in connectivity. These results indicate that prenatal exposure to elevated levels of NT3 disrupts the normal mechanisms responsible for synaptic selectivity in the stretch reflex circuit.
肌梭(Ia类)传入纤维与运动神经元(MNs)之间的单突触连接是牵张反射回路的核心部分,具有高度特异性,但其特异性背后的机制主要尚不清楚。在本研究中,我们报告称,利用在发育过程中肌肉中表达升高水平神经营养因子-3(NT3)的转基因(mlc/NT3)小鼠,肌肉中NT3的胚胎期过表达会破坏这些特定的Ia-MN连接的发育。在mlc/NT3小鼠中,用腹根细胞外记录测量,MNs中由Ia类传入纤维诱发的单突触兴奋性突触后电位(EPSPs)幅度大幅增加。尽管Ia类传入纤维的这种功能投射增加,但Ia类纤维投射到脊髓腹角的解剖学密度没有明显变化。MNs的细胞内记录显示Ia-MN连接模式存在重大破坏。除了Ia类传入纤维与支配同一肌肉的MNs之间的正常连接外,还有来自支配不相关肌肉的Ia类传入纤维的强大单突触输入,这解释了在细胞外记录中看到的增加。来自正确和不正确Ia类传入纤维的单个MNs的Ia输入强度也存在很大差异。出生后肌肉注射NT3并未导致这些连接性变化。这些结果表明,产前暴露于高水平的NT3会破坏牵张反射回路中负责突触选择性的正常机制。