Kuhn G, Lie A, Wilms S, Müller H W
Department of Neurology, University of Düsseldorf, Germany.
Glia. 1993 Aug;8(4):256-64. doi: 10.1002/glia.440080406.
The recently cloned PMP22 gene, the rat variant of the murine growth arrest-specific gene gas3, encodes a new 22 kD integral membrane glycoprotein of peripheral myelin. By means of in situ hybridization and immunohistochemistry, we have (1) analyzed PMP22 expression in myelinated and nonmyelinated peripheral nerves, and (2) compared the spatio-temporal changes in the expression of PMP22 mRNA with the expression of the myelin genes P0 and MBP (myelin basic protein) in developing as well as degenerating and regenerating sciatic nerve of rat. (3) We further investigated the expression of PMP22 mRNA by Northern blot in cultured Schwann cells maintained under different conditions of cell growth and arrest. Expression of PMP22 mRNA is restricted to Schwann cells of myelinated peripheral nerve. Transection of sciatic nerve in adult rat leads to a simultaneous and rapid decline in both PMP22 and P0 mRNA to nondetectable levels in the degenerating distal stump. When a demyelinated and axon-free distal stump, as indicated by the lack of MBP and neurofilament immunoreactivity, was reanastomosed to its proximal counterpart, the coordinated reexpression of PMP22 and MBP succeeded axonal regeneration through the distal segment with a delay of 1-2 weeks. As in regenerating nerve, a striking synchrony of expression of PMP22 and P0 transcripts, as well as MBP immunoreactivity, could be observed during sciatic nerve development. Further, in vitro evidence suggests that, unlike NIH3T3-fibroblasts, expression of PMP22/gas3 is not strictly growth arrest-specific in Schwann cells.(ABSTRACT TRUNCATED AT 250 WORDS)
最近克隆的PMP22基因是鼠生长停滞特异性基因gas3的大鼠变体,它编码一种新的22kD外周髓磷脂整合膜糖蛋白。通过原位杂交和免疫组织化学方法,我们:(1)分析了PMP22在有髓和无髓外周神经中的表达;(2)比较了大鼠发育中的以及退变和再生的坐骨神经中PMP22 mRNA表达的时空变化与髓磷脂基因P0和MBP(髓磷脂碱性蛋白)的表达;(3)我们进一步通过Northern印迹法研究了在不同细胞生长和停滞条件下培养的雪旺细胞中PMP22 mRNA的表达。PMP22 mRNA的表达仅限于有髓外周神经的雪旺细胞。成年大鼠坐骨神经横断导致退变的远端残端中PMP22和P0 mRNA同时快速下降至无法检测的水平。当缺乏MBP和神经丝免疫反应性表明的脱髓鞘且无轴突的远端残端与近端残端重新吻合时,PMP22和MBP的协同重新表达在轴突通过远端节段再生后1 - 2周出现。与再生神经一样,在坐骨神经发育过程中可观察到PMP22和P0转录本以及MBP免疫反应性表达的显著同步性。此外,体外证据表明,与NIH3T3成纤维细胞不同,PMP22/gas3在雪旺细胞中的表达并非严格生长停滞特异性。(摘要截短至250字)