Exclusive neuronal expression of SUCLA2 in the human brain

原位杂交 生物 分子生物学 人脑 尼氏体 免疫组织化学 蛋白质亚单位 神经丝 病理 信使核糖核酸 染色 神经科学 生物化学 医学 遗传学 基因 免疫学
作者
Árpád Dobolyi,Elsebet Østergaard,Attila G. Bagó,Tamás Dóczi,Miklós Palkovits,Anikó Gál,Mária Judit Molnár,Vera Ádám‐Vizi,Christos Chinopoulos
出处
期刊:Brain Structure & Function [Springer Nature]
卷期号:220 (1): 135-151 被引量:17
标识
DOI:10.1007/s00429-013-0643-2
摘要

SUCLA2 encodes the ATP-forming β subunit (A-SUCL-β) of succinyl-CoA ligase, an enzyme of the citric acid cycle. Mutations in SUCLA2 lead to a mitochondrial disorder manifesting as encephalomyopathy with dystonia, deafness and lesions in the basal ganglia. Despite the distinct brain pathology associated with SUCLA2 mutations, the precise localization of SUCLA2 protein has never been investigated. Here, we show that immunoreactivity of A-SUCL-β in surgical human cortical tissue samples was present exclusively in neurons, identified by their morphology and visualized by double labeling with a fluorescent Nissl dye. A-SUCL-β immunoreactivity co-localized >99 % with that of the d subunit of the mitochondrial F0–F1 ATP synthase. Specificity of the anti-A-SUCL-β antiserum was verified by the absence of labeling in fibroblasts from a patient with a complete deletion of SUCLA2. A-SUCL-β immunoreactivity was absent in glial cells, identified by antibodies directed against the glial markers GFAP and S100. Furthermore, in situ hybridization histochemistry demonstrated that SUCLA2 mRNA was present in Nissl-labeled neurons but not glial cells labeled with S100. Immunoreactivity of the GTP-forming β subunit (G-SUCL-β) encoded by SUCLG2, or in situ hybridization histochemistry for SUCLG2 mRNA could not be demonstrated in either neurons or astrocytes. Western blotting of post mortem brain samples revealed minor G-SUCL-β immunoreactivity that was, however, not upregulated in samples obtained from diabetic versus non-diabetic patients, as has been described for murine brain. Our work establishes that SUCLA2 is expressed exclusively in neurons in the human cerebral cortex.
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