Expression of GAP-43 (neuromodulin) during the development of the rat adrenal gland.

N J Grant, F König, D Aunis, K Langley
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Abstract

The 'growth-associated protein', GAP-43 was originally considered to be a neuron-specific protein associated with plasticity. However, we have recently shown that GAP-43 is expressed by noradrenergic, but not by adrenergic chromaffin cells in the adult rat adrenal gland. In this study, we examine the expression of GAP-43 during embryonic and post-natal development of the adrenal gland using immunohistochemical techniques. In parallel, antibodies directed against two neuroendocrine markers, the catecholamine-synthesizing enzymes, tyrosine hydroxylase (TH) and phenylethanolamine N-methyltransferase (PNMT) were employed to permit identification of the developing chromaffin cell phenotypes. At embryonic day 15.5, GAP-43 was predominately localized in sympathoadrenergic precursor cells in the extra-adrenal blastema, and also in nerve fibers within the adrenal gland. At later embryonic stages, GAP-43 was expressed by nearly all intra-adrenal chromoblasts. Two subsets of chromoblasts can be distinguished even at early stages. A strong GAP-43-positive immunoreaction was observed in those chromoblasts organized in a few large compact clusters which weakly expressed TH and did not express PNMT. A generally weaker GAP-43 immunoreaction was observed in a second type of intra-adrenal chromoblasts which were organized in small isolated groups and characterized by a PNMT-positive, and strong TH-positive immunoreactivity. GAP-43 immunoreactivity was still associated with many PNMT-positive adrenergic chromoblasts at birth, but decreased to undetectable levels during the first post-natal week. By the second post-natal week, GAP-43 was restricted, as in the adult, to noradrenergic chromaffin cells which expressed TH, but not PNMT, in addition to nerve fibers and their associated glial cells in the gland. An immunoblot analysis confirmed a decrease in GAP-43 protein during the post-natal period. In agreement with these observations, a three-fold decrease in GAP-43 mRNA in the adrenal gland was measured between late embryogenesis and the second post-natal week. During development, the spatiotemporal expression of GAP-43 suggests a possible role in the migration and aggregation of chromaffin cell precursors into the medullary region of the adrenal gland.

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大鼠肾上腺发育过程中神经调节素-43的表达。
“生长相关蛋白”GAP-43最初被认为是一种与可塑性相关的神经元特异性蛋白。然而,我们最近发现GAP-43在成年大鼠肾上腺中由去甲肾上腺素能细胞表达,而不是由肾上腺素能染色质细胞表达。在这项研究中,我们使用免疫组织化学技术检测了胚胎和出生后肾上腺发育过程中GAP-43的表达。同时,针对两种神经内分泌标记物,儿茶酚胺合成酶,酪氨酸羟化酶(TH)和苯乙醇胺n -甲基转移酶(PNMT)的抗体被用来鉴定发育中的嗜铬细胞表型。在胚胎第15.5天,GAP-43主要定位于肾上腺外胚泡的交感肾上腺素能前体细胞和肾上腺内的神经纤维。在胚胎后期,GAP-43在几乎所有的肾上腺内染色质细胞中表达。两个亚群的成色细胞甚至可以在早期阶段区分。在少数大的致密团簇中,弱表达TH而不表达PNMT的染色质细胞中观察到强烈的gap -43阳性免疫反应。在第二种肾上腺内嗜铬细胞中观察到的GAP-43免疫反应一般较弱,这种嗜铬细胞以小的孤立组组织,具有pnmt阳性和强th阳性的免疫反应性。出生时GAP-43免疫反应性仍与许多pnmt阳性肾上腺素能嗜色细胞相关,但在产后第一周降至检测不到的水平。到产后第二周,GAP-43仅限于表达TH的去甲肾上腺素能染色质细胞,而不是PNMT细胞,此外还有腺体中的神经纤维及其相关胶质细胞。免疫印迹分析证实了产后GAP-43蛋白的减少。与这些观察结果一致,在胚胎发生晚期和出生后第二周之间,肾上腺中GAP-43 mRNA的含量下降了三倍。在发育过程中,GAP-43的时空表达可能在染色质细胞前体向肾上腺髓质区域的迁移和聚集中起作用。
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