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表观遗传诱导 Ink4a/Arf 基因座可防止神经再生和致癌性挑战后的雪旺细胞过度增殖。

Epigenetic induction of the Ink4a/Arf locus prevents Schwann cell overproliferation during nerve regeneration and after tumorigenic challenge.

机构信息

Instituto de Neurociencias de Alicante UMH-CSIC, San Juan de Alicante 03550, Spain.

出版信息

Brain. 2013 Jul;136(Pt 7):2262-78. doi: 10.1093/brain/awt130. Epub 2013 Jun 6.

Abstract

The number of Schwann cells is fitted to axonal length in peripheral nerves. This relationship is lost when tumorigenic stimuli induce uncontrolled Schwann cell proliferation, generating tumours such us neurofibromas and schwannomas. Schwann cells also re-enter the cell cycle following nerve injury during the process of Wallerian degeneration. In both cases proliferation is finally arrested. We show that in neurofibroma, the induction of Jmjd3 (jumonji domain containing 3, histone lysine demethylase) removes trimethyl groups on lysine-27 of histone-H3 and epigenetically activates the Ink4a/Arf-locus, forcing Schwann cells towards replicative senescence. Remarkably, blocking this mechanism allows unrestricted proliferation, inducing malignant transformation of neurofibromas. Interestingly, our data suggest that in injured nerves, Schwann cells epigenetically activate the same locus to switch off proliferation and enter the senescence programme. Indeed, when this pathway is genetically blocked, Schwann cells fail to drop out of the cell cycle and continue to proliferate. We postulate that the Ink4a/Arf-locus is expressed as part of a physiological response that prevents uncontrolled proliferation of the de-differentiated Schwann cell generated during nerve regeneration, a response that is also activated to avoid overproliferation after tumorigenic stimuli in the peripheral nervous system.

摘要

周围神经中的雪旺细胞数量与轴突长度相适配。然而,当致癌刺激诱导不受控制的雪旺细胞增殖时,这种关系会丧失,从而产生神经纤维瘤和神经鞘瘤等肿瘤。在神经损伤后的 Wallerian 变性过程中,雪旺细胞也会重新进入细胞周期。在这两种情况下,增殖最终都会被阻止。我们发现,在神经纤维瘤中,Jmjd3(含 jumonji 结构域的蛋白 3,组蛋白赖氨酸去甲基酶)的诱导会去除组蛋白 H3 赖氨酸 27 上的三甲基基团,并通过表观遗传激活 Ink4a/Arf 基因座,迫使雪旺细胞进入复制性衰老。值得注意的是,阻断这种机制会导致雪旺细胞不受限制地增殖,从而诱导神经纤维瘤的恶性转化。有趣的是,我们的数据表明,在受损的神经中,雪旺细胞通过表观遗传激活相同的基因座来关闭增殖并进入衰老程序。事实上,当这条途径被遗传阻断时,雪旺细胞无法退出细胞周期并继续增殖。我们假设 Ink4a/Arf 基因座是作为一种生理反应的一部分表达的,这种反应可以防止神经再生过程中去分化的雪旺细胞不受控制地增殖,这种反应也会被激活以避免周围神经系统中的致癌刺激后过度增殖。

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