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首页> 外文期刊>American Journal of Physiology >Tissue distribution of immunoreactive mouse extracellular superoxide dismutase.
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Tissue distribution of immunoreactive mouse extracellular superoxide dismutase.

机译:免疫反应性小鼠细胞外超氧化物歧化酶的组织分布。

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摘要

Protein content and mRNA expression of extracellular superoxide dismutase (EC-SOD) were investigated in 16 mouse tissues. We developed a double-antibody sandwich ELISA using the affinity-purified IgG against native mouse EC-SOD. EC-SOD could be detected in all of the tissues examined (lung, kidney, testis, brown fat, liver, adrenal gland, pancreas, colon, white fat, thymus, stomach, spleen, heart, skeletal muscle, ileum, and brain, in decreasing order of content measured as microg/g wet tissue). Lung showed a markedly higher value of EC-SOD than other tissues. Interestingly, white fat had a high content of EC-SOD in terms of micrograms per milligram protein, which corresponded to that of lung. Kidney showed the strongest expression of EC-SOD mRNA. Relatively strong expression of the mRNA was observed in lung, white fat, adrenal gland, brown fat, and testis. Heart and brain showed only weak signals, and no such expression could be detected in either digestive organs or skeletal muscle. Immunohistochemically, EC-SOD was localized mainly to connective tissues and vascular walls in the tissues examined. Deep staining in the cytosol was observed in the cortical tubular cells of kidney. These results suggest that EC-SOD is distributed systemically in mice and that the physiological importance of this enzyme may be a compensatory adaptation to oxidative stress, particularly in lung and kidney.
机译:在16个小鼠组织中研究了细胞外超氧化物歧化酶(EC-SOD)的蛋白质含量和mRNA表达。我们使用针对天然小鼠EC-SOD的亲和纯化的IgG开发了一种双抗体夹心ELISA。在所有检查过的组织(肺,肾,睾丸,棕色脂肪,肝,肾上腺,胰腺,结肠,白色脂肪,胸腺,胃,脾脏,心脏,骨骼肌,回肠和脑,以含量的递减顺序(以微克/克湿纸巾衡量)。肺部的EC-SOD值明显高于其他组织。有趣的是,就每毫克蛋白质微克而言,白色脂肪的EC-SOD含量较高,相当于肺部的含量。肾脏显示EC-SOD mRNA最强表达。在肺,白色脂肪,肾上腺,棕色脂肪和睾丸中观察到相对较强的mRNA表达。心脏和大脑仅显示微弱的信号,在消化器官或骨骼肌中均未检测到这种表达。在免疫组织化学上,EC-SOD主要定位于检查组织中的结缔组织和血管壁。在肾的皮质肾小管细胞中观察到细胞质中的深染色。这些结果表明EC-SOD在小鼠中全身分布,并且该酶的生理重要性可能是对氧化应激的补偿性适应,尤其是在肺和肾中。

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