Laboratorio de Bioquímica y Genética Molecular, Facultad de Química de la Universidad Autónoma de Yucatán, Calle 43 No. 613 x C. 90 Col. Inalámbrica, 97069, Mérida, Yucatán, Mexico.
Posgrado en Ciencias Genómicas, Universidad Autónoma de la Ciudad de México (UACM), San Lorenzo # 290, Col. Del Valle, 03100, Ciudad de México, Mexico.
Biometals. 2017 Oct;30(5):663-675. doi: 10.1007/s10534-017-0034-x. Epub 2017 Jul 21.
Trace elements such as Zinc and Iron are essential components of metalloproteins and serve as cofactors or structural elements for enzymes involved in several important biological processes in almost all organisms. Because either excess or insufficient levels of Zn and Fe can be harmful for the cells, the homeostatic levels of these trace minerals must be tightly regulated. The Zinc regulated transporter, Iron regulated transporter-like Proteins (ZIP) comprise a diverse family, with several paralogues in diverse organisms and are considered essential for the Zn and Fe uptake and homeostasis. Zn and Fe has been shown to regulate expression of proteins involved in metabolism and pathogenicity mechanisms in the protozoan pathogen Trichomonas vaginalis, in contrast high concentrations of these elements were also found to be toxic for T. vaginalis trophozoites. Nevertheless, Zn and Fe uptake and homeostasis mechanisms is not yet clear in this parasite. We performed a genome-wide analysis and localized the 8 members of the ZIP gene family in T. vaginalis (TvZIP1-8). The bioinformatic programs predicted that the TvZIP proteins are highly conserved and show similar properties to the reported in other ZIP orthologues. The expression patterns of TvZIP1, 3, 5 and 7 were diminished in presence of Zinc, while the rest of the TvZIP genes showed an unchanged profile in this condition. In addition, TvZIP2 and TvZIP4 showed a differential expression pattern in trophozoites growth under different Iron conditions. These results suggest that TvZIP genes encode membrane transporters that may be responsible for the Zn and Fe acquisition in T. vaginalis.
微量元素,如锌和铁,是金属蛋白的必需成分,作为参与几乎所有生物体中几个重要生物过程的酶的辅助因子或结构元件。因为锌和铁的过多或不足水平都可能对细胞有害,所以这些痕量矿物质的体内平衡水平必须被严格调节。锌调节转运蛋白、铁调节转运蛋白样蛋白(ZIP)组成了一个多样化的家族,在不同的生物体中有几个同源物,被认为是锌和铁摄取和体内平衡所必需的。锌和铁已被证明可以调节原虫病原体阴道毛滴虫中参与代谢和致病性机制的蛋白质的表达,而这些元素的高浓度也被发现对阴道毛滴虫滋养体有毒。然而,这种寄生虫中锌和铁摄取和体内平衡的机制尚不清楚。我们进行了全基因组分析,并在阴道毛滴虫(TvZIP1-8)中定位了 8 个 ZIP 基因家族成员。生物信息学程序预测,TvZIP 蛋白高度保守,表现出与其他 ZIP 同源物报告的相似特性。在锌存在的情况下,TvZIP1、3、5 和 7 的表达模式减少,而其余的 TvZIP 基因在这种情况下表现出不变的模式。此外,TvZIP2 和 TvZIP4 在不同铁条件下的滋养体生长中表现出不同的表达模式。这些结果表明,TvZIP 基因编码的膜转运蛋白可能负责阴道毛滴虫中锌和铁的摄取。