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铁调节阴道毛滴虫的生长以及免疫原性滴虫蛋白的表达。

Iron regulates growth of Trichomonas vaginalis and the expression of immunogenic trichomonad proteins.

作者信息

Lehker M W, Alderete J F

机构信息

Department of Microbiology, University of Texas Health Science Center, San Antonio 78284-7758.

出版信息

Mol Microbiol. 1992 Jan;6(1):123-32. doi: 10.1111/j.1365-2958.1992.tb00844.x.

Abstract

Iron is an essential nutrient for Trichomonas vaginalis and is acquired via highly specific receptor-mediated mechanisms from the host. Responses of T. vaginalis to conditions of iron limitation or iron excess were analysed in order to determine whether iron levels in the growth medium regulate certain properties of the parasite. When compared with organisms grown in excess iron, iron limitation resulted in greater than or equal to 80% lower rates of protein synthesis and greater than or equal to 3-fold decreases in cell densities. These parasites also exhibited generation times of approximately 10 hours, 2.5-fold longer than organisms grown in the usual complex medium. Iron-restricted growth also resulted in increased binding of lactoferrin by trichomonads, which paralleled elevated expression of the lactoferrin-binding receptor protein having a relative molecular mass of 136,000 daltons (136 kDa). A Mr 126 kDa protein was concomitantly repressed in low-iron-grown parasites. The greater amounts of lactoferrin bound by iron-depleted T. vaginalis organisms corresponded with both the expression of additional receptors onto trichomonal surfaces and increased affinity of the receptor for the lactoferrin molecule. Finally, immunoblot analysis of parasites grown under high- and low-iron conditions using sera from patients with trichomoniasis further revealed the synthesis by T. vaginalis of at least 19 iron-regulated immunogens, and patients' sera also detected the lactoferrin receptor. These data not only show the overall importance of iron to the biology of this protozoan, but illustrate the in vivo iron modulation of gene expression of the biofunctional lactoferrin receptor and other immunogens.

摘要

铁是阴道毛滴虫必需的营养物质,它通过高度特异性的受体介导机制从宿主获取。分析了阴道毛滴虫对铁限制或铁过量条件的反应,以确定生长培养基中的铁水平是否调节该寄生虫的某些特性。与在铁过量条件下生长的生物体相比,铁限制导致蛋白质合成速率降低至少80%,细胞密度降低至少3倍。这些寄生虫的世代时间约为10小时,比在普通复合培养基中生长的生物体长2.5倍。铁限制生长还导致滴虫对乳铁蛋白的结合增加,这与相对分子质量为136,000道尔顿(136 kDa)的乳铁蛋白结合受体蛋白的表达升高平行。一种126 kDa的蛋白质在低铁生长的寄生虫中同时受到抑制。缺铁的阴道毛滴虫生物体结合的乳铁蛋白量增加,这与滴虫表面额外受体的表达以及受体对乳铁蛋白分子亲和力的增加相对应。最后,使用滴虫病患者的血清对在高铁和低铁条件下生长的寄生虫进行免疫印迹分析,进一步揭示了阴道毛滴虫至少合成了19种铁调节免疫原,并且患者血清也检测到了乳铁蛋白受体。这些数据不仅表明铁对这种原生动物生物学的总体重要性,还说明了生物功能乳铁蛋白受体和其他免疫原在体内的铁调节基因表达。

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