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Analysis of connexin expression during mouse Schwann cell development identifies Connexin29 as a novel marker for the transition of neural crest to precursor cells

机译:在小鼠雪旺细胞发育过程中连接蛋白表达的分析确定连接蛋白29是神经c向前体细胞过渡的新标记

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摘要

Connexins are transmembrane proteins forming gap junction channels for direct intercellular and, for example in myelinating glia cells, intracellular communication. In mature myelin-forming Schwann cells, expression of multiple connexins, i.e. connexin (Cx) 43, Cx29, Cx32, and Cx46 (after nerve injury) has been detected. However, little is known about connexin protein expression during Schwann cell development. Here we use histochemical methods on wildtype and Cx291acZ transgenic mice to investigate the developmental expression of connexins in the Schwann cell lineage. Our data demonstrate that in the mouse Cx43, Cx29, and Cx32 protein expression is activated in a eve opmental sequence that is clearly correlated with major developmental steps in the lineage. Only Cx43 was expressed from neural crest cells onwards. Cx29 protein expression was absent from neural crest cells but appeared as neural crest cells generated precursors (embryonic day 12) both in vivo and in vitro. This identifies Cx29 as a novel marker for cells of the defined Schwann cell lineage. The only exception to this were dorsal roots, where the expression of Cx29 was delayed four days relative to ventral roots and spinal nerves. Expression of Cx32 commenced postnatally, coinciding with the onset of myelination. Thus, the coordinated expression of connexin proteins in cells of the embryonic and postnatal Schwalm cell lineage might point to a potential role in peripheral nerve development and maturation. (c) 2006 Wiley-Liss, Inc.
机译:连接蛋白是跨膜蛋白,其形成间隙连接通道,用于直接的细胞间通讯,例如在髓鞘神经胶质细胞中进行细胞内通讯。在成熟的形成髓磷脂的雪旺细胞中,已检测到多种连接蛋白,即连接蛋白(Cx)43,Cx29,Cx32和Cx46(在神经损伤后)的表达。然而,关于雪旺细胞发育过程中连接蛋白表达的了解甚少。在这里,我们对野生型和Cx291acZ转基因小鼠使用组织化学方法来研究雪旺细胞谱系中连接蛋白的发育表达。我们的数据表明,在小鼠Cx43,Cx29和Cx32中,蛋白质表达被激活,该序列与谱系中的主要发育步骤明显相关。从神经c细胞开始仅表达Cx43。 Cx29蛋白表达在神经rest细胞中不存在,但随着神经and细胞在体内和体外产生前体(胚胎第12天)而出现。这将Cx29鉴定为已定义的Schwann细胞谱系细胞的新型标记。唯一的例外是背根,Cx29的表达相对于腹根和脊神经延迟了四天。 Cx32的表达从出生后开始,与髓鞘化的发生相吻合。因此,连接蛋白在胚胎和出生后的Schwalm细胞谱系细胞中的协同表达可能表明其在周围神经发育和成熟中的潜在作用。 (c)2006年Wiley-Liss,Inc.

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