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线虫秀丽隐杆线虫中神经元 ERK 信号对氧化石墨烯的响应

Neuronal ERK signaling in response to graphene oxide in nematode Caenorhabditis elegans.

机构信息

a Key Laboratory of Environmental Medicine Engineering in Ministry of Education , Medical School, Southeast University , Nanjing , China.

b School of Public Health , Southeast University , Nanjing , China.

出版信息

Nanotoxicology. 2017 May;11(4):520-533. doi: 10.1080/17435390.2017.1315190. Epub 2017 Apr 19.

Abstract

ERK signaling is one of the important mitogen-activated protein kinases (MAPKs). However, the role of ERK signaling in the regulation of response to engineered nanomaterial exposure is still largely unclear. In this study, using in vivo assay system of Caenorhabditis elegans, we investigated the function of ERK signaling in response to graphene oxide (GO) exposure and the underlying molecular mechanism. GO exposure increased the expression of MEK-2/MEK and MPK-1/ERK in the ERK signaling pathway. Mutation of mek-2 or mpk-1 resulted in a susceptibility to GO toxicity. Both the MEK-2 and the MPK-1 acted in neurons to regulate the response to GO exposure, and the neuronal expression of MEK-2 or MPK-1 caused a resistance to GO toxicity. In the neurons, SKN-1b/Nrf acted downstream of the MPK-1, and AEX-3, a guanine exchange factor for GTPase, further acted downstream of the SKN-1b to regulate the response to GO exposure. Therefore, a signaling cascade of MEK-2-MPK-1-SKN-1b/-AEX-3 was identified in the neurons required for the regulation of response to GO exposure. Moreover, genetic interaction assay demonstrated that the neuronal ERK signaling-mediated signaling pathway and the intestinal p38 MAPK-mediated signaling pathway functioned synergistically in the regulation of response to GO exposure. Our results highlight the crucial function of the neuronal ERK signaling in the regulation of response to nanomaterial exposure in organisms.

摘要

ERK 信号转导是重要的丝裂原活化蛋白激酶(MAPKs)之一。然而,ERK 信号转导在调节对工程纳米材料暴露的反应中的作用在很大程度上仍不清楚。在本研究中,我们使用秀丽隐杆线虫的体内测定系统,研究了 ERK 信号转导在响应氧化石墨烯(GO)暴露中的作用及其潜在的分子机制。GO 暴露增加了 ERK 信号通路中 MEK-2/MEK 和 MPK-1/ERK 的表达。mek-2 或 mpk-1 的突变导致对 GO 毒性的易感性。MEK-2 和 MPK-1 均在神经元中发挥作用,以调节对 GO 暴露的反应,而 MEK-2 或 MPK-1 在神经元中的表达导致对 GO 毒性的抗性。在神经元中,SKN-1b/Nrf 位于 MPK-1 的下游,AEX-3 是 GTP 酶的鸟嘌呤交换因子,进一步位于 SKN-1b 的下游,以调节对 GO 暴露的反应。因此,鉴定了神经元中需要调节对 GO 暴露的反应的 MEK-2-MPK-1-SKN-1b/-AEX-3 信号级联。此外,遗传相互作用试验表明,神经元 ERK 信号转导介导的信号通路和肠道 p38 MAPK 介导的信号通路在调节对 GO 暴露的反应中协同作用。我们的研究结果强调了神经元 ERK 信号转导在调节生物体对纳米材料暴露的反应中的关键作用。

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