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神经球蛋白通过与PTEN和Akt的差异结合促进神经突生长。

Neuroglobin promotes neurite outgrowth via differential binding to PTEN and Akt.

作者信息

Li Li, Liu Qian Rong, Xiong Xin Xin, Liu Ju Mei, Lai Xiao Jing, Cheng Chun, Pan Feng, Chen Yong, Yu Shang Bin, Yu Albert Cheung Hoi, Chen Xiao Qian

机构信息

School of Basic Medicine, Tongji Medical College, Wuhan, China.

出版信息

Mol Neurobiol. 2014 Feb;49(1):149-62. doi: 10.1007/s12035-013-8506-7. Epub 2013 Aug 1.

Abstract

Neuroglobin, the third mammalian globin with a hexa-coordinated heme, exists predominantly in neurons of the brain. Neuroglobin plays an important role in neuronal death upon ischemia and oxidative stress. The physiological function of neuroglobin remains unclear. Here, we report a novel function of neuroglobin in neurite development. Knocking-down neuroglobin exhibited a prominent neurite-deficient phenotype in mouse neuroblastoma N2a cells. Silencing neuroglobin prevented neurite outgrowth, while ectopic expression of neuroglobin but not homologous cytoglobin promoted neurite outgrowth of N2a cells upon serum withdrawal. In primary cultured rat cerebral cortical neurons, neuroglobin was upregulated and preferentially distributed in neurites during neuronal development. Overexpression of neuroglobin but not cytoglobin in cultured cortical neurons promoted axonal outgrowth, while knocking-down of neuroglobin retarded axonal outgrowth. Neuroglobin overexpression suppressed phosphatase and tensin homolog (PTEN) but increased Akt phosphorylation during neurite induction. Bimolecular fluorescence complementation and glutathione S-transferase pull-down assays revealed that neuroglobin and various mutants (E53Q, E118Q, K119N, H64A, H64L, and Y44D) bound with Akt and PTEN differentially. Neuroglobin E53Q showed a prominent reduced PTEN binding but increased Akt binding, resulting in decreased p-PTEN, increased p-Akt, and increased neurite length. Taken together, we demonstrate a critical role of neuroglobin in neuritogenesis or development via interacting with PTEN and Akt differentially to activate phosphatidylinositol 3-kinase/Akt pathway, providing potential therapeutic applications of neuroglobin for axonopathy in neurological diseases.

摘要

神经球蛋白是第三种具有六配位血红素的哺乳动物球蛋白,主要存在于大脑神经元中。神经球蛋白在缺血和氧化应激导致的神经元死亡中起重要作用。神经球蛋白的生理功能尚不清楚。在此,我们报道了神经球蛋白在神经突发育中的一种新功能。敲低神经球蛋白在小鼠神经母细胞瘤N2a细胞中表现出明显的神经突缺陷表型。沉默神经球蛋白可阻止神经突生长,而在血清撤除后,异位表达神经球蛋白而非同源的细胞球蛋白可促进N2a细胞的神经突生长。在原代培养的大鼠大脑皮质神经元中,神经球蛋白在神经元发育过程中上调并优先分布于神经突中。在培养的皮质神经元中过表达神经球蛋白而非细胞球蛋白可促进轴突生长,而敲低神经球蛋白则会延迟轴突生长。在神经突诱导过程中,神经球蛋白过表达抑制了磷酸酶和张力蛋白同源物(PTEN),但增加了Akt磷酸化。双分子荧光互补和谷胱甘肽S-转移酶下拉试验表明,神经球蛋白和各种突变体(E53Q、E118Q、K119N、H64A、H64L和Y44D)与Akt和PTEN的结合存在差异。神经球蛋白E53Q显示出与PTEN的结合显著减少,但与Akt的结合增加,导致p-PTEN减少、p-Akt增加和神经突长度增加。综上所述,我们证明了神经球蛋白通过与PTEN和Akt的差异相互作用激活磷脂酰肌醇3激酶/Akt通路,在神经突发生或发育中起关键作用,为神经球蛋白在神经疾病轴突病变中的潜在治疗应用提供了依据。

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