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超越血红素解毒:疟原虫血影蛋白中铁转运中的疟色素作用。

Beyond heme detoxification: a role for hemozoin in iron transport in S. japonicum.

机构信息

Institute for Infectious Diseases and Vaccine Development, Tongji University School of Medicine, Shanghai, People's Republic of China.

出版信息

Parasitol Res. 2013 Aug;112(8):2983-90. doi: 10.1007/s00436-013-3470-8. Epub 2013 Jun 4.

Abstract

Hemozoin (Hz) is considered a disposal product during the digestion of red blood cells by some blood-feeding parasites, such as Plasmodium, Schistosome, and Rhodnius. The only function of Hz that has been reported is to detoxify the free heme (Fe((III))-protoporphyrin-IX) in worms. Here we report a new role for Hz in iron transport in Schistosoma japonicum. Using transmission electron microscopy (TEM), we observed that S. japonicum hemozoin (sjHz) granules were a group of electron-dense, globe-, and comma-shaped granules. At the anterior end of female worm gut, these dark brown granules were found to be mixed with biconcave disc-shaped erythrocytes, in the middle portion of the gut these granules attached to destroyed erythrocytes and in the posterior portion of the gut no intact erythrocytes were observed except free sjHz granules. By energy dispersive spectroscopy (EDS) and Prussian blue iron staining, we found that these iron-containing sjHz granules are degraded near the microvilli adjacent to vitelline glands, resulting in the accumulation of a large amount of iron in the vitelline cells and eggs of developed S. japonicum. The accumulation of iron in vitelline glands was synchronized with the increase of sjHz granules in the gut. When S. japonicum just contained a little amount of sjHz granules in gut, hardly any accumulation of iron was detected in vitelline glands. However, when the lumen of gut filled full with sjHz granules, large amounts of iron was detected in vitelline glands. Solexa sequencing revealed that expression of iron store protein, ferritin-1 (CAX77379.1), is just significantly up-regulated in worms that contained a large amount of sjHz in gut. In contrast to the idea that sjHz granules are simply by-product of heme detoxification, we found that formation and degradation of sjHz granules in vivo likely serve for the iron transport. Our findings provide new insights into the biological significance of Hz formation.

摘要

血晶(Hz)被认为是一些吸血寄生虫(如疟原虫、血吸虫和 Rhodnius)消化红细胞的一种处理产物。目前报道的 Hz 的唯一功能是解毒蠕虫体内的游离血红素(Fe((III))-原卟啉-IX)。在这里,我们报告了 Hz 在日本血吸虫中铁转运中的一个新作用。使用透射电子显微镜(TEM),我们观察到日本血吸虫血晶(sjHz)颗粒是一组电子致密的球形和逗号形颗粒。在雌性虫体肠道的前端,这些深褐色颗粒与双凹盘形红细胞混合在一起,在肠道的中部这些颗粒附着在已破坏的红细胞上,而在肠道的后端除了游离的 sjHz 颗粒外,没有观察到完整的红细胞。通过能谱分析(EDS)和普鲁士蓝铁染色,我们发现这些含铁的 sjHz 颗粒在靠近卵黄腺的微绒毛附近降解,导致大量铁在卵黄细胞和发育中的日本血吸虫卵中积累。铁在卵黄腺中的积累与肠道中 sjHz 颗粒的增加同步。当日本血吸虫肠道中只含有少量 sjHz 颗粒时,卵黄腺中几乎没有检测到铁的积累。然而,当肠道充满 sjHz 颗粒时,卵黄腺中检测到大量的铁。Solexa 测序显示,铁储存蛋白 ferritin-1(CAX77379.1)的表达在肠道中含有大量 sjHz 的蠕虫中仅显著上调。与 Hz 颗粒仅仅是血红素解毒的副产物的观点相反,我们发现体内 sjHz 颗粒的形成和降解可能是为了铁的运输。我们的发现为 Hz 形成的生物学意义提供了新的见解。

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