Mulero Victoriano, Wei Xiao-qing, Liew Foo Y, Brock Jeremy H
Department of Immunology and Bacteriology, Western Infirmary, University of Glasgow, Glasgow, UK.
Biochem J. 2002 Jul 1;365(Pt 1):127-32. doi: 10.1042/BJ20011875.
The role of NO in macrophage iron turnover was studied in macrophages from inducible nitric oxide synthase (iNOS)-deficient mice. Interferon gamma/lipopolysaccharide (IFNgamma/LPS)-activated bone marrow-derived macrophages from iNOS-deficient mice, following phagocytosis of 59Fe-labelled transferrin-anti-transferrin immune complexes, showed reduced iron release compared with cells from wild-type iNOS littermates. Uptake of the complexes by macrophages was similar in iNOS-deficient and wild-type mice. Ferritin was up-regulated by IFNgamma/LPS treatment, but NO exercised a modest opposing down-regulatory effect. No effect of iNOS deficiency was seen when iron was taken up from iron citrate, which enters via a non-phagocytic route. These results suggest that NO plays a key role in regulating iron turnover in macrophages acquiring iron by phagocytosis of erythrocytes or cell debris, and thus the supply to peripheral tissues, such as to the bone marrow for erythropoiesis.
在来自诱导型一氧化氮合酶(iNOS)缺陷小鼠的巨噬细胞中研究了一氧化氮(NO)在巨噬细胞铁周转中的作用。在吞噬59Fe标记的转铁蛋白-抗转铁蛋白免疫复合物后,来自iNOS缺陷小鼠的干扰素γ/脂多糖(IFNγ/LPS)激活的骨髓来源巨噬细胞与野生型iNOS同窝小鼠的细胞相比,铁释放减少。iNOS缺陷小鼠和野生型小鼠的巨噬细胞对复合物的摄取相似。铁蛋白通过IFNγ/LPS处理上调,但NO发挥适度的反向下调作用。当从柠檬酸铁摄取铁时,未观察到iNOS缺陷的影响,柠檬酸铁通过非吞噬途径进入。这些结果表明,NO在调节巨噬细胞通过吞噬红细胞或细胞碎片获取铁从而调节铁周转中起关键作用,进而影响向周围组织的供应,如向骨髓供应用于红细胞生成。