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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Developmental changes in the expression of growth-associated protein-43 mRNA in the monkey thalamus: northern blot and in situ hybridization studies.
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Developmental changes in the expression of growth-associated protein-43 mRNA in the monkey thalamus: northern blot and in situ hybridization studies.

机译:猴丘脑中生长相关蛋白43 mRNA表达的发育变化:RNA印迹和原位杂交研究。

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摘要

The expression of growth-associated protein-43 has been related to axonal elongation and synaptic sprouting. Using the Northern blot analysis, we investigated the developmental changes of growth-associated protein-43 mRNA in the thalamus of macaque monkeys. The amount of growth-associated protein-43 mRNA was high at embryonic day 125, and decreased at postnatal day 1. It increased again at postnatal day 8, reached its peak value at postnatal days 50-70, and then decreased gradually until postnatal year 1. We previously reported that the amount of growth-associated protein-43 mRNA in the cerebral cortex decreased roughly exponentially during perinatal and postnatal periods and that it approached the asymptote by postnatal day 70 [Oishi T, Higo N, Umino Y, Matsuda K, Hayashi M (1998) Development of GAP-43 mRNA in the macaque cerebral cortex. Dev Brain Res 109:87-97]. The present findings may indicate that extensive synaptic growth of thalamic neurons continues even after that of cortical neurons has finished. We then performed in situ hybridization to investigate whether the expression level of growth-associated protein-43 mRNA was different among various thalamic nuclei. In the infant thalamus (postnatal days 70-90), moderate to intense expression of growth-associated protein-43 mRNA was detected in all thalamic nuclei. Quantitative analysis in the infant thalamus indicated that the expression levels were different between the nuclear groups that are defined by the origin of their afferents. The expression in the first order nuclei, which receive their primary afferent fibers from ascending pathways [Guillery RW (1995) Anatomical evidence concerning the role of the thalamus in corticocortical communication: a brief review. J Anat 187 (Pt 3):583-592], was significantly higher than that in the higher order nuclei. While moderate expression was also detected in the adult dorsal thalamus, the expression in the first order nuclei was almost the same as that in the higher order nuclei. Thus, the in situ hybridization experiments indicated that the transient postnatal increase in the amount of growth-associated protein-43 mRNA, which was shown by the Northern blot analysis, was mainly attributed to enhanced expression in the first order nuclei during the postnatal period. This may be a molecular basis for environmentally induced modification of thalamocortical synapses.
机译:生长相关蛋白43的表达与轴突伸长和突触发芽有关。使用Northern印迹分析,我们调查了猕猴丘脑中生长相关蛋白43 mRNA的发育变化。生长相关蛋白43 mRNA的数量在胚胎第125天高,在出生后第1天减少。在出生后第8天再次增加,在出生后第50-70天达到峰值,然后逐渐下降直到出生后一年。 1.我们先前曾报道,在围产期和产后,大脑皮层中与生长相关的蛋白43 mRNA的数量呈指数下降,并且在产后70天时接近渐近线[Oishi T,Higo N,Umino Y,Matsuda K ,Hayashi M(1998)猕猴大脑皮质中GAP-43 mRNA的发育。 Dev Brain Res 109:87-97]。目前的发现可能表明,即使在皮质神经元已经完成之后,丘脑神经元仍在继续广泛的突触生长。然后,我们进行了原位杂交,以研究各种丘脑核中生长相关蛋白43 mRNA的表达水平是否不同。在婴儿丘脑中(出生后70-90天),在所有丘脑核中均检测到中等程度至强烈的生长相关蛋白43 mRNA表达。婴儿丘脑的定量分析表明,核水平之间的表达水平是不同的,这些核水平由它们的传入来源定义。在一级核中的表达,其从上行途径接收其主要的传入纤维[Guillery RW(1995)有关丘脑在皮层皮质通信中的作用的解剖学证据:简要综述。 J Anat 187(Pt 3):583-592],显着高于高阶原子核。虽然在成年背丘脑中也检测到中等表达,但一阶核中的表达与高阶核中的表达几乎相同。因此,原位杂交实验表明,Northern印迹分析表明,出生后生长相关蛋白43 mRNA的量瞬时增加,这主要归因于产后一阶核中表达的增强。这可能是环境诱导的丘脑皮层突触修饰的分子基础。

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