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发动蛋白样蛋白1参与恶性疟原虫的血红蛋白摄取途径。

Dynamin like protein 1 participated in the hemoglobin uptake pathway of Plasmodium falciparum.

作者信息

Zhou Hong-chang, Gao Yu-hui, Zhong Xiang, Wang Heng

机构信息

Department of Microbiology and Parasitology, Institute of Basic Medical Sciences, Peking Union Medical College, Beijing, China.

出版信息

Chin Med J (Engl). 2009 Jul 20;122(14):1686-91.

Abstract

BACKGROUND

During the blood stage of malaria infection, parasites internalize in the host red blood cells and degrade massive amounts of hemoglobin for their development. Although the morphology of the parasite's hemoglobin uptake pathway has been clearly observed, little has been known about its molecular mechanisms.

METHODS

The recombinant proteins from Plasmodium falciparum, dynamin like protein 1 (PfDYN1) and 2 (PfDYN2) GTPase domain, were expressed in E.coli and showed GTPase activity. By using a dynamin inhibitor, dynasore, we demonstrated the involvement of PfDYN1 in the hemoglobin uptake pathway.

RESULTS

The GTPase activity of the two recombinant proteins was inhibited by dynasore in vitro. Treatment of parasite cultures with 80 micromol/L dynasore at the ring and early trophozoite stage resulted in substantial inhibition of parasite growth and in an obvious decline of hemoglobin quantum. Furthermore, reduced intracellular hemozoin accumulation and decreased uptake of the FITC-dextran were also observed, together with distinctive changes in the ultrastructure of parasites after the dynasore treatment.

CONCLUSIONS

Our results show that PfDYN1 plays an important role in the hemoglobin uptake pathway of P. falciparum and suggest its possibility of being a novel target for malaria chemotherapy.

摘要

背景

在疟疾感染的血液阶段,疟原虫侵入宿主红细胞并降解大量血红蛋白以促进自身发育。尽管疟原虫血红蛋白摄取途径的形态已被清楚观察到,但其分子机制却鲜为人知。

方法

恶性疟原虫的重组蛋白,动力蛋白样蛋白1(PfDYN1)和2(PfDYN2)的GTP酶结构域,在大肠杆菌中表达并显示出GTP酶活性。通过使用动力蛋白抑制剂dynasore,我们证明了PfDYN1参与血红蛋白摄取途径。

结果

两种重组蛋白的GTP酶活性在体外被dynasore抑制。在环状体和早期滋养体阶段用80微摩尔/升dynasore处理寄生虫培养物,导致寄生虫生长受到显著抑制,血红蛋白量明显下降。此外,还观察到细胞内疟色素积累减少、FITC-葡聚糖摄取减少,以及dynasore处理后寄生虫超微结构的明显变化。

结论

我们的结果表明PfDYN1在恶性疟原虫的血红蛋白摄取途径中起重要作用,并提示其有可能成为疟疾化疗的新靶点。

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