David Stefan, Hila Sorana, Fosbrink Matthew, Rus Horea, Koski Carol Lee
Department of Neurology, University of Maryland School of Medicine, Baltimore, MD 21201, USA.
J Peripher Nerv Syst. 2006 Mar;11(1):77-87. doi: 10.1111/j.1085-9489.2006.00067.x.
The protein zero (P0) glycoprotein is an important component of compact peripheral nerve myelin produced by the glial cells of the mammalian peripheral nervous system. P0 mRNA expression is reduced following exposure of Schwann cells to sublytic C5b-9, the terminal activation complex of the complement cascade. Sublytic complement treatment decreased P0 mRNA by 81% within 6 h and required C5b-9 assembly. C5b-9 induced a threefold increase in both JNK1 activity and c-jun mRNA within 20 and 30 min, respectively, compared with cells treated with either human serum depleted of complement component C7 (C7dHS) or medium alone. Sublytic C5b-9 stimulation, in the presence of the transcription inhibitor Actinomycin D, decreased P0 mRNA expression by 52%, indicating that mRNA was selectively destabilized. This effect was prevented by pretreatment with L-JNK inhibitor 1 (L-JNKI1). To study a potential inhibition of P0 gene transcription, we transfected Schwann cells with a P0 promoter-firefly luciferase construct. Sublytic C5b-9 stimulation of the transfected cells decreased luciferase activity by 82% at 6 h, and this effect was prevented by pretreatment with L-JNKI1 inhibitor. Our results indicate that the ability of C5b-9 in vitro to affect P0 gene expression is mediated via JNK1 activation that leads to enhanced mRNA decay and transcriptional repression of P0.
蛋白零(P0)糖蛋白是哺乳动物外周神经系统神经胶质细胞产生的致密外周神经髓鞘的重要组成部分。雪旺细胞暴露于补体级联反应的终末激活复合物——亚溶细胞性C5b-9后,P0 mRNA表达降低。亚溶细胞性补体处理在6小时内使P0 mRNA降低了81%,且这需要C5b-9组装。与用缺乏补体成分C7的人血清(C7dHS)或单独培养基处理的细胞相比,C5b-9分别在20分钟和30分钟内使JNK1活性和c-jun mRNA增加了三倍。在转录抑制剂放线菌素D存在的情况下,亚溶细胞性C5b-9刺激使P0 mRNA表达降低了52%,表明mRNA被选择性地降解。L-JNK抑制剂1(L-JNKI1)预处理可阻止这种效应。为了研究对P0基因转录的潜在抑制作用,我们用P0启动子-萤火虫荧光素酶构建体转染雪旺细胞。亚溶细胞性C5b-9刺激转染细胞6小时后,荧光素酶活性降低了82%,L-JNKI1抑制剂预处理可阻止这种效应。我们的结果表明,体外C5b-9影响P0基因表达的能力是通过JNK1激活介导的,这导致P0的mRNA降解增强和转录抑制。
J Peripher Nerv Syst. 2006-3
J Neurosci Res. 1990-10
Front Cell Dev Biol. 2021-4-16
J Clin Immunol. 2014-7