Zoidl G, Blass-Kampmann S, D'Urso D, Schmalenbach C, Müller H W
Department of Neurology, Heinrich-Heine-University of Düsseldorf, Germany.
EMBO J. 1995 Mar 15;14(6):1122-8. doi: 10.1002/j.1460-2075.1995.tb07095.x.
The peripheral myelin gene PMP22 is the rat and human homologue of the murine growth arrest-specific gene gas3. Besides a putative role of PMP22 in myelination, a regulatory function in cell growth has been suspected. Here we have investigated both the expression of PMP22 during cell cycle progression of cultured rat Schwann cells and the influence of altered levels of PMP22 on Schwann cell growth. When resting cells were stimulated to begin the cell cycle, the regulation of PMP22 mRNA resembled the growth arrest-specific pattern of gas3 expression observed previously in NIH3T3 fibroblasts. To prove a growth regulatory function of PMP22, we generated Schwann cell cultures by infection with retroviral PMP22 expression vectors that constitutively expressed PMP22 cDNA sequences, in either the sense or antisense orientation. Transduced cells carrying the sense construct overexpressed PMP22 mRNA and protein, whereas in cells infected with an antisense PMP22 expression vector PMP22 mRNA levels were reduced markedly. Altered levels of PMP22 significantly modulated Schwann cell proliferation, as judged by 5-bromo-2'-deoxy-uridine incorporation into replicated DNA. In asynchronously dividing cultures enhanced expression of PMP22 decreased DNA synthesis to 60% of the control level. Conversely, reduced levels of PMP22 mRNA led to enhanced DNA synthesis of approximately 150%. Further cell cycle analyses by flow cytometry revealed that overexpression of PMP22 delayed serum- and forskolin-stimulated entry of resting Schwann cells from G0/G1 into the S + G2/M phases by approximately 8 h, whereas underexpression of PMP22 mRNA slightly increased the proportion of cells that entered the S + G2/M phases.(ABSTRACT TRUNCATED AT 250 WORDS)
外周髓磷脂基因PMP22是小鼠生长停滞特异性基因gas3在大鼠和人类中的同源物。除了PMP22在髓鞘形成中的假定作用外,人们还怀疑它在细胞生长中具有调节功能。在此,我们研究了培养的大鼠雪旺细胞在细胞周期进程中PMP22的表达情况,以及PMP22水平改变对雪旺细胞生长的影响。当静止细胞被刺激开始细胞周期时,PMP22 mRNA的调控类似于先前在NIH3T3成纤维细胞中观察到的gas3表达的生长停滞特异性模式。为了证明PMP22的生长调节功能,我们通过用逆转录病毒PMP22表达载体感染来生成雪旺细胞培养物,这些载体以正义或反义方向组成性表达PMP22 cDNA序列。携带正义构建体的转导细胞过表达PMP22 mRNA和蛋白质,而在感染反义PMP22表达载体的细胞中,PMP22 mRNA水平显著降低。通过将5-溴-2'-脱氧尿苷掺入复制的DNA来判断,PMP22水平的改变显著调节了雪旺细胞的增殖。在异步分裂培养物中,PMP22表达增强使DNA合成降至对照水平的60%。相反,PMP22 mRNA水平降低导致DNA合成增强约150%。通过流式细胞术进行的进一步细胞周期分析表明,PMP22的过表达使静止雪旺细胞在血清和福司可林刺激下从G0/G1期进入S + G2/M期的时间延迟约8小时,而PMP22 mRNA的低表达则略微增加了进入S + G2/M期的细胞比例。(摘要截短于250字)