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神经调节蛋白-1 由 BACE1 或 ADAM10 蛋白切割产生对髓鞘形成的不同影响。

Cleavage of neuregulin-1 by BACE1 or ADAM10 protein produces differential effects on myelination.

机构信息

Department of Neurosciences, Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, Ohio 44195, USA.

出版信息

J Biol Chem. 2011 Jul 8;286(27):23967-74. doi: 10.1074/jbc.M111.251538. Epub 2011 May 16.

DOI:10.1074/jbc.M111.251538
PMID:21576249
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3129178/
Abstract

Neuregulin-1 (Nrg1) is encoded by a single gene and exists in naturally secreted and transmembrane isoforms. Nrg1 exerts its signaling activity through interaction with its cognate ErbB receptors. Multiple membrane-anchored Nrg1 isoforms, present in six different membrane topologies, must be processed by a protease to initiate a signaling cascade. Here, we demonstrate that BACE1 and ADAM10 can process type I and III Nrg1 at two adjacent sites. Our cleavage site mapping experiments showed that the BACE1 cleavage site is located eight amino acids downstream of the ADAM10 cleavage site, and this order of cleavage is the opposite of amyloid precursor protein cleavage by these two enzymes. Cleavages were further confirmed via optimized electrophoresis. Cleavage of type I or III Nrg1 by ADAM10 and BACE1 released a signaling-capable N-terminal fragment (ntf), either Nrg1-ntfα or Nrg1-ntfβ, which could similarly activate an ErbB receptor as evidenced by increased phosphorylation of Akt and ERK, two downstream signaling molecules. Although both Nrg1-ntfα and Nrg1-ntfβ could initiate a common signaling cascade, inhibition or down-regulation of ADAM10 alone in a co-culture system did not affect normal myelination, whereas specific inhibition of BACE1 impaired normal myelination. Thus, processing of Nrg1 by BACE1 appears to be more critical for regulating myelination. Our results imply that a significant inhibition of BACE1 could potentially impair Nrg1 signaling activity in vivo.

摘要

神经调节蛋白 1(Nrg1)由单个基因编码,存在天然分泌型和跨膜型异构体。Nrg1 通过与其同源 ErbB 受体相互作用发挥信号转导活性。多种膜锚定的 Nrg1 异构体以六种不同的膜拓扑结构存在,必须通过蛋白酶进行加工,才能启动信号级联反应。在这里,我们证明 BACE1 和 ADAM10 可以在两个相邻位点切割 I 型和 III 型 Nrg1。我们的切割位点映射实验表明,BACE1 的切割位点位于 ADAM10 切割位点下游 8 个氨基酸处,并且这种切割顺序与这两种酶对淀粉样前体蛋白的切割顺序相反。通过优化电泳进一步证实了切割。ADAM10 和 BACE1 切割 I 型或 III 型 Nrg1 释放具有信号转导能力的 N 端片段(ntf),即 Nrg1-ntfα 或 Nrg1-ntfβ,这两种片段都可以激活 ErbB 受体,证据是 Akt 和 ERK 的磷酸化增加,这两种下游信号分子。尽管 Nrg1-ntfα 和 Nrg1-ntfβ 都可以启动共同的信号级联反应,但在共培养系统中单独抑制或下调 ADAM10 并不影响正常髓鞘形成,而特异性抑制 BACE1 则会损害正常髓鞘形成。因此,BACE1 对 Nrg1 的加工似乎对调节髓鞘形成更为关键。我们的结果表明,BACE1 的显著抑制可能会在体内损害 Nrg1 信号转导活性。

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ADAM10 is the physiologically relevant, constitutive alpha-secretase of the amyloid precursor protein in primary neurons.ADAM10 是原代神经元中淀粉样前体蛋白的生理相关、组成性的α-分泌酶。
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Axon-glial signaling and the glial support of axon function.轴突-胶质细胞信号传导与轴突功能的胶质细胞支持
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