Kawalec Maria, Zabłocka Barbara, Kabzińska Dagmara, Neska Jacek, Beręsewicz Małgorzata
Małgorzata Beręsewicz, PhD, Molecular Biology Unit, Mossakowski Medical Research Centre, Polish Academy of Sciences, Warsaw, Poland, e-mail:
Folia Neuropathol. 2014;52(4):436-42. doi: 10.5114/fn.2014.47845.
Mitofusin 2 (Mfn2), a protein of the mitochondrial outer membrane, is essential for mitochondrial fusion and contributes to the maintenance and operation of the mitochondrial network. Mutations in the mitofusin 2 gene cause axonal Charcot-Marie-Tooth type 2A (CMT2A), an inherited disease affecting peripheral nerve axons. The precise mechanism by which mutations in MFN2 selectively cause the degeneration of long peripheral axons is not known. There is a hypothesis suggesting the involvement of reduced expression of a homologous protein, mitofusin 1 (Mfn1), in the peripheral nervous system, and less effective compensation of defective mitofusin 2 by mitofusin 1. We therefore aimed to perform an analysis of the mitofusin 1 and mitofusin 2 mRNA and protein expression profiles in different mouse tissues, with special attention paid to dorsal root ganglia (DRGs), as parts of the peripheral nervous system. Quantitative measurement relating to mRNA revealed that expression of the Mfn2 gene dominates over Mfn1 mainly in mouse DRG, as opposed to other nervous system samples and other tissues studied. This result was further supported by Western blot evaluation. Both these sets of data confirm the hypothesis that the cellular consequences of mutations in the mitofusin 2 gene can mostly be manifested in the peripheral nervous system.
线粒体融合蛋白2(Mfn2)是线粒体外膜上的一种蛋白质,对线粒体融合至关重要,并有助于线粒体网络的维持和运作。线粒体融合蛋白2基因突变会导致轴索性2A型夏科-马里-图思病(CMT2A),这是一种影响周围神经轴突的遗传性疾病。MFN2基因突变选择性导致长周围轴突退化的确切机制尚不清楚。有一种假说认为,同源蛋白线粒体融合蛋白1(Mfn1)在周围神经系统中的表达降低,以及线粒体融合蛋白1对有缺陷的线粒体融合蛋白2的补偿效果较差可能与此有关。因此,我们旨在分析不同小鼠组织中线粒体融合蛋白1和线粒体融合蛋白2的mRNA和蛋白质表达谱,特别关注作为周围神经系统一部分的背根神经节(DRG)。与mRNA相关的定量测量显示,与其他神经系统样本和所研究的其他组织相反,Mfn2基因的表达在小鼠DRG中主要占主导地位。蛋白质印迹评估进一步支持了这一结果。这两组数据都证实了这样一种假说,即线粒体融合蛋白2基因突变的细胞后果大多可在周围神经系统中表现出来。