Suppr超能文献

周围神经系统中蛋白脂质蛋白的结构与表达

Structure and expression of proteolipid protein in the peripheral nervous system.

作者信息

Kamholz J, Sessa M, Scherer S, Vogelbacker H, Mokuno K, Baron P, Wrabetz L, Shy M, Pleasure D

机构信息

Department of Neurology, University of Pennsylvania, Philadelphia 19104.

出版信息

J Neurosci Res. 1992 Feb;31(2):231-44. doi: 10.1002/jnr.490310204.

Abstract

Proteolipid protein (PLP), the major myelin protein in the central nervous system (CNS), is also made by Schwann cells (SC) in the peripheral nervous system (PNS) but is not incorporated into the SC myelin sheath. We analyzed several PLP cDNA clones isolated from a rat sciatic nerve cDNA library and found that their coding sequences were identical to PLP cDNAs previously isolated from the CNS. In addition, we have discovered an unusual form of PLP message, present in both brain and sciatic nerve RNA, that is likely formed by alternative splicing within the 3' untranslated region of the primary PLP transcript. The absence of PLP from the SC myelin sheath thus cannot be explained by an alteration in its amino acid sequence. Steady-state levels of PLP mRNA in SC cultures treated with the cAMP analogue dibutyryl cAMP (dBcAMP) were not increased, whereas dBcAMP increased steady-state levels of mRNA encoding the major myelin protein, P0. We have also shown that expression of PLP, unlike that of P0, is regulated in SC in vitro at a posttranscriptional level. Finally, the steady-state levels of P0 mRNA are much more dramatically reduced than those of PLP mRNA during Wallerian degeneration of the peripheral nerve. Thus PLP expression in the PNS is probably controlled by different molecular mechanisms from P0, and may not be part of the coordinate program of myelin gene expression. In contrast to its expression in the PNS, transcription of PLP in the CNS is coordinately regulated along with the other myelin protein genes, suggesting there may be differences in the cis-acting elements and transacting factors involved in the regulation of PLP transcription in SC and oligodendrocytes (OC). Consistent with this notion, we have found that most PLP transcripts are initiated at the more proximal of two start sites in the PNS, while in the CNS proportionally more PLP transcripts are initiated from the distal start site. We propose that the proximal site, utilized predominantly in SC, is responsible for maintenance expression of PLP and is not inducible, while the distal site is responsible for the rapid, inducible increase of PLP message during brain development.

摘要

蛋白脂质蛋白(PLP)是中枢神经系统(CNS)中主要的髓鞘蛋白,在外周神经系统(PNS)中也由施万细胞(SC)产生,但不掺入SC髓鞘。我们分析了从大鼠坐骨神经cDNA文库中分离的几个PLP cDNA克隆,发现它们的编码序列与先前从CNS中分离的PLP cDNA相同。此外,我们发现了一种不寻常的PLP信使形式,存在于脑和坐骨神经RNA中,可能是由初级PLP转录本的3'非翻译区内的可变剪接形成的。因此,SC髓鞘中缺乏PLP不能用其氨基酸序列的改变来解释。用cAMP类似物二丁酰cAMP(dBcAMP)处理的SC培养物中PLP mRNA的稳态水平没有增加,而dBcAMP增加了编码主要髓鞘蛋白P0的mRNA的稳态水平。我们还表明,与P0不同,PLP的表达在体外SC中在转录后水平受到调节。最后,在外周神经的华勒氏变性过程中,P0 mRNA的稳态水平比PLP mRNA的稳态水平降低得更为显著。因此,PNS中PLP的表达可能受与P0不同的分子机制控制,可能不是髓鞘基因表达协调程序的一部分。与其在PNS中的表达相反,CNS中PLP的转录与其他髓鞘蛋白基因一起受到协调调节,这表明参与SC和少突胶质细胞(OC)中PLP转录调节的顺式作用元件和反式作用因子可能存在差异。与此观点一致,我们发现大多数PLP转录本在PNS中两个起始位点中较近端的位点起始,而在CNS中,比例上更多的PLP转录本从远端起始位点起始。我们提出,主要在SC中使用的近端位点负责PLP的维持表达且不可诱导,而远端位点负责脑发育过程中PLP信使的快速、可诱导增加。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验