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小鼠细胞外超氧化物歧化酶:一级结构、组织特异性基因表达、染色体定位及肺原位杂交

Mouse extracellular superoxide dismutase: primary structure, tissue-specific gene expression, chromosomal localization, and lung in situ hybridization.

作者信息

Folz R J, Guan J, Seldin M F, Oury T D, Enghild J J, Crapo J D

机构信息

Department of Medicine, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

Am J Respir Cell Mol Biol. 1997 Oct;17(4):393-403. doi: 10.1165/ajrcmb.17.4.2826.

Abstract

Extracellular superoxide dismutase (EC-SOD) is the major extracellular antioxidant enzyme. We have determined the primary structure of mouse EC-SOD by characterization of complementary DNA (cDNA) clones and by amino-acid sequence analysis of purified protein. cDNA sequence analysis indicates that mouse EC-SOD is synthesized as a 251-amino-acid precursor protein with a predicted molecular weight of 27,400 D. Amino-terminal micro sequence analysis of purified mature mouse lung EC-SOD demonstrated the sequence to begin with SSFDLADRLDPV-. These results indicate that EC-SOD as initially synthesized contains a 24-amino-acid precursor peptide, and that the mature protein is 227 amino acids in length. Computer algorithms that predict the most likely site of cotranslational signal peptidase cleavage suggest that processing will occur between amino acids 18 and 19 or 20 and 21, which implies that EC-SOD may be initially synthesized as a pre-pro-protein. Like human EC-SOD, mature mouse EC-SOD is glycosylated. The full-length mouse EC-SOD cDNA is 1,834 base pairs long and is 82% (79% for protein) identical to rat EC-SOD, but only 60% (60% for protein) identical to human EC-SOD. The mouse EC-SOD gene locus (Sod3) was mapped by interspecific backcross haplotype analysis as being 0.9 +/- 0.9 centimorgans distal to the Qdpr locus on mouse Chromosome 5, a position suggesting that the human homologue of EC-SOD will map close to the human QDPR locus (4p15.3). Of nine tissues examined by Northern blot analysis, those of the kidney and lung are by far the major tissues that express EC-SOD messenger RNA. Using in situ hybridization in the mouse lung, we demonstrate EC-SOD gene expression to be highly localized to alveolar Type II epithelial cells. These data suggest that alveolar Type II cells play a central role in mediating EC-SOD antioxidant function in the lung.

摘要

细胞外超氧化物歧化酶(EC-SOD)是主要的细胞外抗氧化酶。我们通过互补DNA(cDNA)克隆的鉴定以及纯化蛋白的氨基酸序列分析,确定了小鼠EC-SOD的一级结构。cDNA序列分析表明,小鼠EC-SOD作为一种251个氨基酸的前体蛋白进行合成,预测分子量为27,400 D。对纯化的成熟小鼠肺EC-SOD进行氨基末端微序列分析,结果显示该序列起始于SSFDLADRLDPV-。这些结果表明,最初合成的EC-SOD含有一个24个氨基酸的前体肽,成熟蛋白长度为227个氨基酸。预测共翻译信号肽酶最可能切割位点的计算机算法表明,加工过程将发生在第18和19或20和21个氨基酸之间,这意味着EC-SOD最初可能作为前原蛋白进行合成。与人类EC-SOD一样,成熟的小鼠EC-SOD也进行了糖基化修饰。全长小鼠EC-SOD cDNA长1,834个碱基对,并与大鼠EC-SOD具有82%(蛋白质为79%)的同源性,但与人类EC-SOD的同源性仅为60%(蛋白质为60%)。通过种间回交单倍型分析将小鼠EC-SOD基因座(Sod3)定位在小鼠5号染色体上Qdpr基因座远端0.9±0.9厘摩处,该位置表明EC-SOD的人类同源物将定位在靠近人类QDPR基因座(4p15.3)的位置。通过Northern印迹分析检测的九个组织中,肾脏和肺组织是表达EC-SOD信使RNA的主要组织。利用小鼠肺组织原位杂交技术,我们证明EC-SOD基因表达高度定位于肺泡II型上皮细胞。这些数据表明,肺泡II型细胞在介导肺组织中EC-SOD的抗氧化功能方面发挥着核心作用。

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