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Functional characterization of cis- and trans-regulatory elements involved in expression of phospholipid hydroperoxide glutathione peroxidase

机译:参与表达磷脂氢过氧化物谷胱甘肽过氧化物酶的顺式和反式调节元件的功能表征

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摘要

Phospholipid hydroperoxide glutathione peroxidase (phGPx) is a member of the seleno glutathione peroxidase family that is comprised of five selenoproteins capable of reducing hydroperoxy lipids to the corresponding alcohols. The enzyme has been implicated in antioxidative defense, but its high expression level in testicular tissue suggests a more specific function during sperm maturation. The phGPx is encoded for by a joint sperm nucleus/phGPx gene (sn/phGPx) and can be expressed as a mitochondrial or cytosolic isoform. Although sn/phGPx genes have been cloned from various mammalian species expression regulation of the enzyme has not been studied in detail. We investigated the 5′-flanking region of the murine sn/phGPx gene and observed basic promoter activity in a 200 bp region localized immediately upstream of the translational initiation site of the cytosolic isoform (3′-ATG). DNase protection assays indicated the presence of five distinct protein-binding regions and electrophoretic mobility shift assays and supershift experiments revealed binding of stimulating protein 1 (SP1), nuclear factor Y (NF-Y) and members of the SMAD family. Site-directed mutagenesis of the consensus binding sequences abolished in vitro transcription factor binding. Expression of reporter genes was most effectively impaired when SP1/SP3 and NF-Y binding site-deficient constructs were tested. Chromatin immunoprecipitation suggested the in vivo relevance of these transcription factors. Our data indicate that the basic phGPx promoter constitutes a 200 bp oligonucleotide, which is localized immediately upstream of the 3′-ATG and involves functional SP1/SP3, NF-Y and SMAD binding sites. The corresponding trans-regulatory proteins may contribute to differential expression regulation of the mitochondrial and cytosolic phGPx isoforms.
机译:磷脂氢过氧化物谷胱甘肽过氧化物酶(phGPx)是硒代谷胱甘肽过氧化物酶家族的成员,其由五个能够将氢过氧化脂质还原成相应醇的硒蛋白组成。该酶与抗氧化防御有关,但是它在睾丸组织中的高表达水平表明在精子成熟过程中具有更特殊的功能。 phGPx由精子联合核/ phGPx基因(sn / phGPx)编码,可以表达为线粒体或胞质同工型。尽管已从多种哺乳动物物种中克隆了sn / phGPx基因,但尚未对该酶的表达调控进行详细研究。我们研究了鼠sn / phGPx基因的5'侧翼区域,并观察到了位于胞质亚型(3'-ATG)翻译起始位点紧邻上游的200 bp区域中的基本启动子活性。 DNase保护分析表明存在五个不同的蛋白结合区,电泳迁移率移位分析和超迁移实验表明刺激蛋白1(SP1),核因子Y(NF-Y)和SMAD家族成员的结合。共有结合序列的定点诱变消除了体外转录因子的结合。当测试SP1 / SP3和NF-Y结合位点缺陷的构建体时,报告基因的表达最有效地受损。染色质的免疫沉淀表明这些转录因子在体内具有相关性。我们的数据表明基本的phGPx启动子构成一个200 bp的寡核苷酸,位于3'-ATG的紧邻上游,并涉及功能性SP1 / SP3,NF-Y和SMAD结合位点。相应的反式调节蛋白可能有助于线粒体和胞质phGPx亚型的差异表达调控。

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