Finney E M, Shatz C J
Department of Molecular and Cell Biology and Howard Hughes Medical Institute, University of California, Berkeley, California 94720, USA.
J Neurosci. 1998 Nov 1;18(21):8826-38. doi: 10.1523/JNEUROSCI.18-21-08826.1998.
Subplate neurons are early-generated neurons that project into the overlying neocortex and are required for the formation of ocular dominance columns. A subset of subplate neurons express nitric oxide synthase (NOS) and produce nitric oxide (NO), a neuronal messenger thought to be involved in adult hippocampal synaptic plasticity and also in the establishment of certain specific connections during visual system development. Here, we examine whether the NOS-containing subplate neurons are involved in ocular dominance column formation in the ferret visual system. Ocular dominance columns form in ferrets between postnatal day 35 (P35) and P60. NOS expression in the visual subplate is low at birth, increases to a maximum at the onset of ocular dominance column formation, and falls thereafter. Nevertheless, blockade of NOS with daily injections of nitroarginine from P14 to P56 fails to prevent the formation of ocular dominance columns, although NOS activity is reduced by >98%. To test further a requirement for NOS in the patterning of connections during CNS development, we examined the cortical barrels in the somatosensory system of mice carrying targeted disruptions of NOS that also received injections of nitroarginine; cortical barrels formed normally in these animals. In addition, barrel field plasticity induced by whisker ablation at birth was normal in nitroarginine-injected NOS knock-out mice. Thus, despite the dynamic regulation of NOS in subplate neurons, NO is unlikely to be essential for the patterning of thalamocortical connections either in visual or somatosensory systems.
皮层下板神经元是早期生成的神经元,它们投射到上层的新皮层,并且对于眼优势柱的形成是必需的。一部分皮层下板神经元表达一氧化氮合酶(NOS)并产生一氧化氮(NO),一氧化氮是一种神经元信使,被认为参与成年海马体突触可塑性以及视觉系统发育过程中某些特定连接的建立。在这里,我们研究含NOS的皮层下板神经元是否参与雪貂视觉系统中眼优势柱的形成。眼优势柱在雪貂出生后第35天(P35)至P60天之间形成。视觉皮层下板中的NOS表达在出生时较低,在眼优势柱形成开始时增加到最大值,此后下降。然而,从P14至P56每天注射硝基精氨酸来阻断NOS,尽管NOS活性降低了>98%,但仍不能阻止眼优势柱的形成。为了进一步测试在中枢神经系统发育过程中连接模式形成对NOS的需求,我们检查了携带NOS靶向破坏且也接受硝基精氨酸注射的小鼠体感系统中的皮层桶;这些动物的皮层桶正常形成。此外,在注射硝基精氨酸的NOS基因敲除小鼠中,出生时触须切除诱导的桶状野可塑性是正常的。因此,尽管皮层下板神经元中NOS有动态调节,但NO对于视觉或体感系统中丘脑皮质连接的模式形成不太可能是必需的。