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在 K562 和人骨髓细胞的红细胞生成过程中血红素加氧酶。

Heme-oxygenases during erythropoiesis in K562 and human bone marrow cells.

机构信息

Instituto de Bioquímica Médica, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.

出版信息

PLoS One. 2011;6(7):e21358. doi: 10.1371/journal.pone.0021358. Epub 2011 Jul 13.

Abstract

In mammalian cells, heme can be degraded by heme-oxygenases (HO). Heme-oxygenase 1 (HO-1) is known to be the heme inducible isoform, whereas heme-oxygenase 2 (HO-2) is the constitutive enzyme. Here we investigated the presence of HO during erythroid differentiation in human bone marrow erythroid precursors and K562 cells. HO-1 mRNA and protein expression levels were below limits of detection in K562 cells. Moreover, heme was unable to induce HO-1, at the protein and mRNA profiles. Surprisingly, HO-2 expression was inhibited upon incubation with heme. To evaluate the physiological relevance of these findings, we analyzed HO expression during normal erythropoiesis in human bone marrow. Erythroid precursors were characterized by lack of significant expression of HO-1 and by progressive reduction of HO-2 during differentiation. FLVCR expression, a recently described heme exporter found in erythroid precursors, was also analyzed. Interestingly, the disruption in the HO detoxification system was accompanied by a transient induction of FLVCR. It will be interesting to verify if the inhibition of HO expression, that we found, is preventing a futile cycle of concomitant heme synthesis and catabolism. We believe that a significant feature of erythropoiesis could be the replacement of heme breakdown by heme exportation, as a mechanism to prevent heme toxicity.

摘要

在哺乳动物细胞中,血红素可以被血红素加氧酶(HO)降解。血红素加氧酶 1(HO-1)是已知的诱导型同工酶,而血红素加氧酶 2(HO-2)是组成型酶。在这里,我们研究了人骨髓红系前体细胞和 K562 细胞中红系分化过程中 HO 的存在。HO-1 mRNA 和蛋白表达水平在 K562 细胞中低于检测限。此外,血红素不能诱导 HO-1 的蛋白和 mRNA 谱。令人惊讶的是,血红素孵育后 HO-2 的表达受到抑制。为了评估这些发现的生理相关性,我们分析了人骨髓中正常红细胞生成过程中的 HO 表达。红系前体细胞的特征是 HO-1 表达水平低,在分化过程中 HO-2 逐渐减少。还分析了最近在红系前体细胞中发现的血红素输出蛋白 FLVCR 的表达。有趣的是,HO 解毒系统的破坏伴随着 FLVCR 的短暂诱导。验证我们发现的 HO 表达抑制是否防止了同时发生的血红素合成和分解代谢的无效循环将是有趣的。我们认为,红细胞生成的一个显著特征可能是血红素分解被血红素输出取代,作为防止血红素毒性的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9aae/3135583/c9cee5a77a9f/pone.0021358.g001.jpg

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