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首页> 外文期刊>The Tohoku Journal of Experimental Medicine >Coordinated expression of 6-phosphofructo-2-kinase/ fructose-2,6-bisphosphatase 4 and heme oxygenase 2: Evidence for a regulatory link between glycolysis and heme catabolism
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Coordinated expression of 6-phosphofructo-2-kinase/ fructose-2,6-bisphosphatase 4 and heme oxygenase 2: Evidence for a regulatory link between glycolysis and heme catabolism

机译:6-磷酸果糖-2-激酶/果糖-2,6-双磷酸酶4和血红素加氧酶2的协同表达:糖酵解与血红素分解代谢之间调控联系的证据

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摘要

Heme is an essential requirement for cell survival. Heme oxygenase (HO) is the rate-limiting enzyme in heme catabolism and consists of two isozymes, HO-1 and HO-2. To identify the protein that regulates the expression or function of HO-1 or HO-2, we searched for proteins that interact with both isozymes, using protein microarrays. We thus identified 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase 4 (PFKFB4) that synthesizes or degrades fructose-2,6-bisphosphate, a key activator of glycolysis, depending on cellular microenvironments. Importantly, HO-2 and PFKFB4 are predominantly expressed in haploid spermatids. Here, we show a drastic reduction in expression levels of PFKFB4 mRNA and protein and HO-2 mRNA in HepG2 human hepatoma cells in responses to glucose deprivation (≤ 2.5 mM), which occurred concurrently with remarkable induction of HO-1 mRNA and protein. Knockdown of HO-2 expression in HepG2 cells, using small interfering RNA, caused PFKFB4 mRNA levels to decrease with a concurrent increase in HO-1 expression. Thus, in HepG2 cells, HO-1 expression was increased, when expression levels of HO-2 and PFKFB4 mRNAs were decreased. Conversely, overexpression of HO-2 in HepG2 cells caused the level of co-expressed PFKFB4 protein to increase. These results suggest a potential regulatory role for HO-2 in ensuring PFKFB4 expression. Moreover, in D407 human retinal pigment epithelial cells, glucose deprivation decreased the expression levels of PFKFB4, HO-1, and HO-2 mRNAs. Thus, glucose deprivation consistently down-regulated the expression of PFKFB4 and HO-2 mRNAs in both HepG2 cells and RPE cells. We therefore postulate that PFKFB4 and HO-2 are expressed in a coordinated manner to maintain glucose homeostasis.
机译:血红素是细胞存活的必要条件。血红素加氧酶(HO)是血红素分解代谢中的限速酶,由两个同功酶HO-1和HO-2组成。为了鉴定调节HO-1或HO-2表达或功能的蛋白质,我们使用蛋白质微阵列搜索了与两种同工酶相互作用的蛋白质。因此,我们确定了6-磷酸果糖-2-激酶/果糖2,6-双磷酸酶4(PFKFB4),它可以合成或降解果糖-2,6-双磷酸,糖酵解的关键激活剂,具体取决于细胞的微环境。重要的是,HO-2和PFKFB4主要在单倍体精子细胞中表达。在这里,我们显示人类肝癌HepG2细胞对葡萄糖剥夺(≤2.5 mM)的反应中PFKFB4 mRNA和蛋白以及HO-2 mRNA的表达水平急剧下降,这与HO-1 mRNA和蛋白的显着诱导同时发生。使用小的干扰RNA抑制HepG2细胞中HO-2表达,导致PFKFB4 mRNA水平下降,同时HO-1表达增加。因此,在HepG2细胞中,当HO-2和PFKFB4 mRNA的表达水平降低时,HO-1表达增加。相反,HepG2细胞中HO-2的过度表达导致共表达的PFKFB4蛋白水平升高。这些结果表明HO-2在确保PFKFB4表达中的潜在调控作用。此外,在D407人视网膜色素上皮细胞中,葡萄糖剥夺降低了PFKFB4,HO-1和HO-2 mRNA的表达水平。因此,葡萄糖剥夺始终下调HepG2细胞和RPE细胞中PFKFB4和HO-2 mRNA的表达。因此,我们假设PFKFB4和HO-2以协调的方式表达以维持葡萄糖稳态。

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