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外周神经损伤后连接蛋白表达的改变。

Altered connexin expression after peripheral nerve injury.

作者信息

Chandross K J, Kessler J A, Cohen R I, Simburger E, Spray D C, Bieri P, Dermietzel R

机构信息

Department of Neuroscience, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

Mol Cell Neurosci. 1996 Jun;7(6):501-18. doi: 10.1006/mcne.1996.0036.

Abstract

The identification of connexin32 (Cx32) in myelinating Schwann cells and the association of Cx32 mutations with peripheral neuropathies suggest a functional role for gap junction proteins in the nerve. However, after nerve crush injury, Cx32 expression dramatically decreases in Schwann cells in the degenerating region, returning to control levels at newly formed nodes of Ranvier and Schmidt-Lantermann incisures by 30 days. The present study examined increases in expression of other connexins that occur after peripheral nerve injury. A 56/58-kDa connexin46 (Cx46) protein species was detected in adult rat sciatic nerve, along with very low levels of Cx46 mRNA. However, by 3 days after crush injury, coincident with changes in Schwann cell phenotype, Cx46 mRNA rapidly increased in the degenerating regions. Additionally, the 56/58-kDa Cx46 protein species present in adult nerve decreased and a 53-kDa Cx46 species, which was also present in cultured Schwann cells, became apparent. Connexin43 (Cx43) mRNA and protein, which was localized to perineurial cells in adult nerve, dramatically increased in endoneurial fibroblasts in the crush and distal regions by 3 days, coincident with macrophage infiltration. By 12 days after injury, Cx43 decreased and was comparable to normal nerve. These results suggest that enhanced expression of Cx46 and Cx43, by nonneuronal cells, may be important for the injury and regenerative responses of peripheral nerves.

摘要

在形成髓鞘的施万细胞中发现了连接蛋白32(Cx32),并且Cx32突变与周围神经病变相关,这表明缝隙连接蛋白在神经中具有功能性作用。然而,在神经挤压伤后,退变区域的施万细胞中Cx32表达显著降低,到30天时在新形成的郎飞结和施密特-兰特尔曼切迹处恢复到对照水平。本研究检测了周围神经损伤后其他连接蛋白表达的增加情况。在成年大鼠坐骨神经中检测到一种56/58-kDa的连接蛋白46(Cx46)蛋白,同时Cx46 mRNA水平极低。然而,挤压伤后3天,与施万细胞表型的变化一致,退变区域的Cx46 mRNA迅速增加。此外,成年神经中存在的56/58-kDa Cx46蛋白减少,而培养的施万细胞中也存在的一种53-kDa Cx46蛋白变得明显。连接蛋白43(Cx43)mRNA和蛋白在成年神经中定位于神经束膜细胞,挤压伤后3天在挤压部位和远侧区域的神经内膜成纤维细胞中显著增加,与巨噬细胞浸润一致。损伤后12天,Cx43减少并与正常神经相当。这些结果表明,非神经元细胞增强表达Cx46和Cx43可能对周围神经的损伤和再生反应很重要。

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