首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Posttranslational stability of the heme biosynthetic enzyme ferrochelatase is dependent on iron availability and intact iron-sulfur cluster assembly machinery.
【24h】

Posttranslational stability of the heme biosynthetic enzyme ferrochelatase is dependent on iron availability and intact iron-sulfur cluster assembly machinery.

机译:血红素生物合成酶铁螯合酶的翻译后稳定性取决于铁的可用性和完整的铁硫簇组装机械。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Mammalian ferrochelatase, the terminal enzyme in the heme biosynthetic pathway, possesses an iron-sulfur [2Fe-2S] cluster that does not participate in catalysis. We investigated ferrochelatase expression in iron-deficient erythropoietic tissues of mice lacking iron regulatory protein 2, in iron-deficient murine erythroleukemia cells, and in human patients with ISCU myopathy. Ferrochelatase activity and protein levels were dramatically decreased in Irp2(-/-) spleens, whereas ferrochelatase mRNA levels were increased, demonstrating posttranscriptional regulation of ferrochelatase in vivo. Translation of ferrochelatase mRNA was unchanged in iron-depleted murine erythroleukemia cells, and the stability of mature ferrochelatase protein was also unaffected. However, the stability of newly formed ferrochelatase protein was dramatically decreased during iron deficiency. Ferrochelatase was also severely depleted in muscle biopsies and cultured myoblasts from patients with ISCU myopathy, a disease caused by deficiency of a scaffold protein required for Fe-S cluster assembly. Together, these data suggest that decreased Fe-S cluster availability because of cellular iron depletion or impaired Fe-S cluster assembly causes reduced maturation and stabilization of apo-ferrochelatase, providing a direct link between Fe-S biogenesis and completion of heme biosynthesis. We propose that decreased heme biosynthesis resulting from impaired Fe-S cluster assembly can contribute to the pathogenesis of diseases caused by defective Fe-S cluster biogenesis.
机译:哺乳动物铁螯合酶是血红素生物合成途径中的末端酶,具有不参与催化作用的铁硫[2Fe-2S]簇。我们调查了缺乏铁调节蛋白2的小鼠的缺铁性红细胞生成组织中,缺铁性鼠红细胞白血病细胞以及ISCU肌病患者中铁螯合酶的表达。在Irp2(-/-)脾脏中,铁螯合酶的活性和蛋白质水平显着降低,而铁螯合酶mRNA的水平却增加了,这说明了铁螯合酶在体内的转录后调控。在铁缺乏的鼠红白血病细胞中,铁螯合酶mRNA的翻译没有改变,成熟的铁螯合酶蛋白的稳定性也没有受到影响。但是,在铁缺乏时,新形成的铁螯合酶蛋白的稳定性急剧下降。铁质螯合酶在肌肉活检和培养成肌细胞的ISCU肌病患者中也被严重消耗,该病是由Fe-S簇组装所需支架蛋白不足引起的。总之,这些数据表明,由于细胞铁耗竭或受损的Fe-S簇组装而导致的Fe-S簇可用性降低导致脱铁螯合螯合酶的成熟和稳定性降低,从而提供了Fe-S生物发生与血红素生物合成完成之间的直接联系。我们提出,由受损的Fe-S簇组装导致的血红素生物合成减少可导致由缺陷的Fe-S簇生物发生引起的疾病的发病机理。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号