Hai Mehreen, Muja Naser, DeVries George H, Quarles Richard H, Patel Pragna I
Department of Molecular and Human Genetics, Baylor College of Medicine, Houston, Texas 77030, USA.
J Neurosci Res. 2002 Aug 15;69(4):497-508. doi: 10.1002/jnr.10327.
Primary and immortalized cultured Schwann cells are commonly utilized in analyses of myelin gene promoters, but few lines are well-characterized in terms of their endogenous expression of myelin genes. This is particularly significant in that cultured Schwann cells typically do not express myelin genes at levels comparable to those observed in vivo. In this study, the steady-state levels of mRNA and protein for five Schwann cell markers (PMP22, P0, MBP, MAG, and LNGF-R) were assessed in primary Schwann cells and six representative Schwann cell lines (RT4-D6P2T, JS-1, RSC96, R3, S16, and S16Y). RT4-D6P2T and S16 cells were the most similar to myelinating Schwann cells based on their comparatively high expression of PMP22 and P0 mRNA. Both RT4-D6P2T and S16 also expressed P0 protein. In addition, the previously reported P1-A positive regulatory region from the myelination-specific PMP22 promoter demonstrated significant activity in both these cell lines. However, nuclear proteins that interacted with P1-A were different in extracts prepared from RT4-D6P2T and S16 cells. Primary Schwann cells expressed myelin proteins at levels that were equal or less than those observed with the RT4-D6P2T and S16 lines, indicating that primary Schwann cells are not necessarily better than immortalized Schwann cells as model systems for the study of myelin gene regulation. The data presented here demonstrate that cultured Schwann cells used to study myelin gene promoters have to be carefully selected on the basis of the endogenous level of expression of the myelin gene under study.
原代培养和永生化培养的雪旺细胞常用于髓鞘基因启动子的分析,但就其髓鞘基因的内源性表达而言,很少有细胞系得到充分表征。这一点尤为重要,因为培养的雪旺细胞通常不会以与体内观察到的水平相当的水平表达髓鞘基因。在本研究中,评估了五种雪旺细胞标志物(PMP22、P0、MBP、MAG和LNGF-R)在原代雪旺细胞和六种代表性雪旺细胞系(RT4-D6P2T、JS-1、RSC96、R3、S16和S16Y)中的mRNA和蛋白质稳态水平。基于PMP22和P0 mRNA相对较高的表达,RT4-D6P2T和S16细胞与髓鞘形成雪旺细胞最为相似。RT4-D6P2T和S16均表达P0蛋白。此外,先前报道的来自髓鞘特异性PMP22启动子的P1-A阳性调控区域在这两种细胞系中均表现出显著活性。然而,与P1-A相互作用的核蛋白在RT4-D6P2T和S16细胞制备的提取物中有所不同。原代雪旺细胞表达的髓鞘蛋白水平等于或低于RT4-D6P2T和S16细胞系,这表明作为髓鞘基因调控研究的模型系统,原代雪旺细胞不一定比永生化雪旺细胞更好。此处呈现的数据表明,用于研究髓鞘基因启动子的培养雪旺细胞必须根据所研究髓鞘基因的内源性表达水平进行仔细选择。