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一个由进化上保守的髓鞘碱性蛋白调控序列组成的组合网络赋予了不同的神经胶质细胞特异性表型。

A combinatorial network of evolutionarily conserved myelin basic protein regulatory sequences confers distinct glial-specific phenotypes.

作者信息

Farhadi Hooman F, Lepage Pierre, Forghani Reza, Friedman Hana C H, Orfali Wayel, Jasmin Luc, Miller Webb, Hudson Thomas J, Peterson Alan C

机构信息

Royal Victoria Hospital, Department of Neurology and Neurosurgery, McGill University, Montreal, Quebec H3A 1A1, Canada.

出版信息

J Neurosci. 2003 Nov 12;23(32):10214-23. doi: 10.1523/JNEUROSCI.23-32-10214.2003.

Abstract

Myelin basic protein (MBP) is required for normal myelin compaction and is implicated in both experimental and human demyelinating diseases. In this study, as an initial step in defining the regulatory network controlling MBP transcription, we located and characterized the function of evolutionarily conserved regulatory sequences. Long-range human-mouse sequence comparison revealed over 1 kb of conserved noncoding MBP 5' flanking sequence distributed into four widely spaced modules ranging from 0.1 to 0.4 kb. We demonstrate first that a controlled strategy of transgenesis provides an effective means to assign and compare qualitative and quantitative in vivo regulatory programs. Using this strategy, single-copy reporter constructs, designed to evaluate the regulatory significance of modular and intermodular sequences, were introduced by homologous recombination into the mouse hprt (hypoxanthine-guanine phosphoribosyltransferase) locus. The proximal modules M1 and M2 confer comparatively low-level oligodendrocyte expression primarily limited to early postnatal development, whereas the upstream M3 confers high-level oligodendrocyte expression extending throughout maturity. Furthermore, constructs devoid of M3 fail to target expression to newly myelinating oligodendrocytes in the mature CNS. Mutation of putative Nkx6.2/Gtx sites within M3, although not eliminating oligodendrocyte targeting, significantly decreases transgene expression levels. High-level and continuous expression is conferred to myelinating or remyelinating Schwann cells by M4. In addition, when isolated from surrounding MBP sequences, M3 confers transient expression to Schwann cells elaborating myelin. These observations define the in vivo regulatory roles played by conserved noncoding MBP sequences and lead to a combinatorial model in which different regulatory modules are engaged during primary myelination, myelin maintenance, and remyelination.

摘要

髓鞘碱性蛋白(MBP)是正常髓鞘紧密化所必需的,并且与实验性和人类脱髓鞘疾病都有关联。在本研究中,作为定义控制MBP转录的调控网络的第一步,我们定位并表征了进化保守调控序列的功能。人鼠长程序列比较揭示了超过1 kb的保守非编码MBP 5'侧翼序列,其分布在四个间隔广泛的模块中,长度从0.1到0.4 kb不等。我们首先证明,转基因的可控策略提供了一种有效的方法来分配和比较体内定性和定量调控程序。使用这种策略,设计用于评估模块和模块间序列调控意义的单拷贝报告基因构建体通过同源重组被引入小鼠hprt(次黄嘌呤 - 鸟嘌呤磷酸核糖基转移酶)基因座。近端模块M1和M2赋予相对低水平的少突胶质细胞表达,主要限于出生后早期发育,而上游的M3赋予高水平的少突胶质细胞表达,贯穿整个成熟阶段。此外,缺乏M3的构建体无法将表达靶向成熟中枢神经系统中新形成髓鞘的少突胶质细胞。M3内假定的Nkx6.2 / Gtx位点的突变虽然没有消除少突胶质细胞靶向性,但显著降低了转基因表达水平。M4赋予形成髓鞘或再髓鞘化的施万细胞高水平和持续表达。此外,当从周围的MBP序列中分离出来时,M3赋予施万细胞短暂表达,使其形成髓鞘。这些观察结果定义了保守非编码MBP序列在体内的调控作用,并导致了一个组合模型,其中不同的调控模块在原发性髓鞘形成、髓鞘维持和再髓鞘化过程中发挥作用。

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