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Evidence for a sequential transfer of iron amongst ferritin transferrin and transferrin receptor during duodenal absorption of iron in rat and human

机译:在大鼠和人类十二指肠吸收铁过程中铁在铁蛋白转铁蛋白和转铁蛋白受体之间顺序转移的证据

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摘要

AIM: To elucidate the sequential transfer of iron amongst ferritin, transferrin and transferrin receptor under various iron status conditions.METHODS: Incorporation of 59Fe into mucosal and luminal proteins was carried out in control WKY rats. The sequential transfer of iron amongst ferritin, transferrin and transferrin receptor was carried out in iron deficient, control and iron overloaded rats. The duodenal proteins were subjected to immunoprecipitation and quantitation by specific ELISA and in situ localization by microautoradiography and immunohistochemistry in tandem duodenal sections. Human duodenal biopsy (n = 36) collected from subjects with differing iron status were also stained for these proteins.RESULTS: Ferritin was identified as the major protein that incorporated iron in a time-dependent manner in the duodenal mucosa. The concentration of mucosal ferritin was significantly higher in the iron excess group compared to control, iron deficient groups (731.5 ± 191.96 vs 308.3 ± 123.36, 731.5 ± 191.96 vs 256.0 ± 1.19, P < 0.005), while that of luminal transferrin which was significantly higher than the mucosal did not differ among the groups (10.9 ± 7.6 vs 0.87 ± 0.79, 11.1 ± 10.3 vs 0.80 ± 1.20, 6.8 ± 4.7 vs 0.61 ± 0.63, P < 0.001). In situ grading of proteins and iron, and their superimposition, suggested the occurrence of a sequential transfer of iron. This was demonstrated to occur through the initial binding of iron to luminal transferrin then to absorptive cell surface transferrin receptors. The staining intensity of these proteins varied according to the iron nutrition in humans, with intense staining of transferrin receptor observed in iron deficient subjects.CONCLUSION: It is concluded that the intestine takes up iron through a sequential transfer involving interaction of luminal transferrin, transferrin-transferrin receptor and ferritin.
机译:目的:阐明在各种铁状态下铁在铁蛋白,转铁蛋白和转铁蛋白受体之间的顺序转移。方法:在对照组WKY大鼠中将 59 Fe掺入粘膜和腔蛋白中。在缺铁,对照和铁超负荷的大鼠中进行铁在铁蛋白,转铁蛋白和转铁蛋白受体之间的顺序转移。十二指肠蛋白质通过特异性ELISA进行免疫沉淀和定量,并通过显微放射自显影和免疫组织化学在十二指肠十二指肠切片中进行原位定位。还从不同铁状态的受试者收集的十二指肠活检样本(n = 36)进行了染色。结果:铁蛋白被认为是在十二指肠粘膜中以时间依赖性方式掺入铁的主要蛋白质。与对照缺铁组相比,铁过量组的粘膜铁蛋白浓度显着更高(731.5±191.96 vs 308.3±123.36,731.5±191.96 vs 256.0±1.19,P <0.005),而腔内转铁蛋白的浓度显着升高在各组中高于黏膜的差异无统计学意义(10.9±7.6 vs 0.87±0.79,11.1±10.3 vs 0.80±1.20,6.8±4.7 vs 0.61±0.63,P <0.001)。蛋白质和铁的原位分级及其叠加表明发生了铁的顺序转移。事实证明这是通过铁与腔内转铁蛋白的最初结合,然后与吸收性细胞表面转铁蛋白受体的最初结合而发生的。这些蛋白质的染色强度随人类铁营养的不同而变化,在铁缺乏的受试者中观察到转铁蛋白受体的强烈染色。结论:结论是小肠通过顺序转移吸收了铁,涉及到腔内转铁蛋白,转铁蛋白-转铁蛋白受体和铁蛋白。

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