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细胞外超氧化物歧化酶多态性在小鼠中的表现:对表型的等位基因特异性影响。

Extracellular superoxide dismutase polymorphism in mice: Allele-specific effects on phenotype.

机构信息

Department of Molecular Biology & Immunology, University of North Texas Health Science Center, Fort Worth, TX 76107, USA.

出版信息

Free Radic Biol Med. 2010 Feb 15;48(4):590-6. doi: 10.1016/j.freeradbiomed.2009.12.003. Epub 2009 Dec 11.

Abstract

Extracellular superoxide dismutase (ecSOD) protects the extracellular matrix from oxidative stress. We previously reported a new allele for ecSOD, expressed in 129P3/J mice (129), which differs from the wild type (wt), expressed in C57BL/6J and other strains, by two amino acid substitutions and a 10-bp deletion in the 3' UTR of the mRNA (A. Pierce et al., 2003, Arterioscler. Thromb. Vasc. Biol.23:1820-1825). The newly discovered allele is associated with a phenotype of significantly increased circulating and heparin-releasable enzyme activities and levels. To examine the properties of the two forms of ecSOD in an identical environment we generated, by extensive backcrossing of ecSOD heterozygous progeny to C57BL/6J females, a congenic C57 strain with the 129 (or wt) allele of ecSOD. These mice are homozygous for nearly 5000 SNPs across all chromosomes, as determined by the Affymetrix Parallele Mouse 5K SNP panel. This study describes the generation of the congenic mice (genetically >99.8% identical) and their ecSOD phenotype. The congenic mouse plasma ecSOD activity before and after heparin administration recapitulates the differences reported in the founder mice. Tissue enzyme distribution is similar in both congenic groups, although the 129 allele is associated with higher levels of enzyme expression despite lower levels of enzyme mRNA. In these characteristics the phenotype is allele driven, with little impact from the rest of the genome. The congenic mice carrying the 129 allele have mRNA levels that are in between those in the founder 129P3/J and C57BL/6J strains. We conclude that the ecSOD phenotype in most aspects of enzyme expression is allele driven, with the exception of tissue mRNA levels, for which a significant contribution by the surrounding (host) genome is observed. These results also suggest potential allele-specific differences in the regulation of ecSOD synthesis and intracellular processing/secretion of ecSOD, independent of the genotype context. Most importantly, the congenic mice offer an excellent model to examine the regulatory mechanisms of ecSOD expression and the role of ecSOD in various diseases involving oxidative stress.

摘要

细胞外超氧化物歧化酶(ecSOD)可保护细胞外基质免受氧化应激的影响。我们之前报道了一种新的 ecSOD 等位基因,该等位基因在 129P3/J 小鼠(129)中表达,与在 C57BL/6J 和其他品系中表达的野生型(wt)相比,该等位基因在 mRNA 的 3'UTR 中发生了两个氨基酸替换和 10 个碱基缺失(A. Pierce 等人,2003 年,动脉粥样硬化血栓形成血管生物学 23:1820-1825)。新发现的等位基因与循环中和肝素释放的酶活性和水平显著增加的表型相关。为了在相同的环境中检查两种形式的 ecSOD 的特性,我们通过将 ecSOD 杂合后代与 C57BL/6J 雌性进行广泛的回交,生成了具有 129(或 wt)等位基因的同源 C57 品系。这些小鼠在所有染色体上几乎有 5000 个 SNP 是纯合的,这是通过 Affymetrix Parallele Mouse 5K SNP 面板确定的。本研究描述了同源小鼠(遗传上>99.8%相同)的产生及其 ecSOD 表型。肝素给药前后的同源小鼠血浆 ecSOD 活性再现了在奠基小鼠中报告的差异。尽管酶 mRNA 水平较低,但两组同源小鼠的组织酶分布相似,129 等位基因与更高水平的酶表达相关。在这些特征中,表型由等位基因驱动,受基因组其余部分的影响很小。携带 129 等位基因的同源小鼠的 mRNA 水平在奠基 129P3/J 和 C57BL/6J 品系之间。我们得出结论,除了组织 mRNA 水平外,ecSOD 表达的大多数方面的酶表型由等位基因驱动,对于组织 mRNA 水平,观察到周围(宿主)基因组的显著贡献。这些结果还表明,ecSOD 合成和 ecSOD 细胞内加工/分泌的调节可能存在等位基因特异性差异,而与基因型背景无关。最重要的是,同源小鼠为研究 ecSOD 表达的调控机制以及 ecSOD 在涉及氧化应激的各种疾病中的作用提供了一个极好的模型。

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