Srinivasan Rajini, Jang Sung-Wook, Ward Rebecca M, Sachdev Shrikesh, Ezashi Toshihiko, Svaren John
Department of Comparative Biosciences, University of Wisconsin-Madison, Madison, WI, USA.
BMC Mol Biol. 2007 Dec 20;8:117. doi: 10.1186/1471-2199-8-117.
Myelination of peripheral nerves by Schwann cells requires not only the Egr2/Krox-20 transactivator, but also the NGFI-A/Egr-binding (NAB) corepressors, which modulate activity of Egr2. Previous work has shown that axon-dependent expression of Egr2 is mediated by neuregulin stimulation, and NAB corepressors are co-regulated with Egr2 expression in peripheral nerve development. NAB corepressors have also been implicated in macrophage development, cardiac hypertrophy, prostate carcinogenesis, and feedback regulation involved in hindbrain development.
To test the mechanism of NAB regulation in Schwann cells, transfection assays revealed that both Nab1 and Nab2 promoters are activated by Egr2 expression. Furthermore, direct binding of Egr2 at these promoters was demonstrated in vivo by chromatin immunoprecipitation analysis of myelinating sciatic nerve, and binding of Egr2 to the Nab2 promoter was stimulated by neuregulin in primary Schwann cells. Although Egr2 expression activates the Nab2 promoter more highly than Nab1, we surprisingly found that only Nab1 - but not Nab2 - expression levels were reduced in sciatic nerve from Egr2 null mice. Analysis of the Nab2 promoter showed that it is also activated by ETS proteins (Ets2 and Etv1/ER81) and is bound by Ets2 in vivo.
Overall, these results indicate that induction of Nab2 expression in Schwann cells involves not only Egr2, but also ETS proteins that are activated by neuregulin stimulation. Although Nab1 and Nab2 play partially redundant roles, regulation of Nab2 expression by ETS factors explains several observations regarding regulation of NAB genes. Finally, these data suggest that NAB proteins are not only feedback inhibitors of Egr2, but rather that co-induction of Egr2 and NAB genes is involved in forming an Egr2/NAB complex that is crucial for regulation of gene expression.
施万细胞对外周神经的髓鞘形成不仅需要Egr2/Krox - 20反式激活因子,还需要NGFI - A/Egr结合(NAB)共抑制因子,后者可调节Egr2的活性。先前的研究表明,Egr2的轴突依赖性表达由神经调节蛋白刺激介导,并且NAB共抑制因子在周围神经发育过程中与Egr2表达共同调节。NAB共抑制因子还与巨噬细胞发育、心脏肥大、前列腺癌发生以及后脑发育中的反馈调节有关。
为了测试施万细胞中NAB调节的机制,转染实验表明Nab1和Nab2启动子均被Egr2表达激活。此外,通过对有髓坐骨神经的染色质免疫沉淀分析在体内证明了Egr2在这些启动子上的直接结合,并且在原代施万细胞中神经调节蛋白刺激了Egr2与Nab2启动子的结合。尽管Egr2表达对Nab2启动子的激活程度高于Nab1,但我们意外地发现,在Egr2基因敲除小鼠的坐骨神经中,只有Nab1(而非Nab2)的表达水平降低。对Nab2启动子的分析表明,它也被ETS蛋白(Ets2和Etv1/ER81)激活,并且在体内与Ets2结合。
总体而言,这些结果表明施万细胞中Nab2表达的诱导不仅涉及Egr2,还涉及由神经调节蛋白刺激激活的ETS蛋白。尽管Nab1和Nab2发挥部分冗余作用,但ETS因子对Nab2表达的调节解释了关于NAB基因调节的一些观察结果。最后,这些数据表明NAB蛋白不仅是Egr2的反馈抑制剂,而且Egr2和NAB基因的共同诱导参与形成对基因表达调节至关重要的Egr2/NAB复合物。