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首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >Characterization of zinc transport by divalent metal transporters of the ZIP family from the model legume Medicago truncatula
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Characterization of zinc transport by divalent metal transporters of the ZIP family from the model legume Medicago truncatula

机译:豆科植物紫花苜蓿模型中ZIP族的二价金属转运体对锌转运的表征

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摘要

To understand how plants from the Fabaceae family maintain zinc (Zn) homeostasis, we have characterized the kinetics of three Zn transporting proteins from the ZIP family of divalent metal transporters in the model legume Medicago truncatula. Of six ZIP's studied, MtZIP1, MtZIP5 and MtZIP6 were the only members from this family determined to transport Zn and were further characterized. MtZIP1 has a low affinity for Zn with a K_m of 1 μM as compared to MtZIP5 and MtZIP6 that have a higher affinity for Zn with K _m of 0.4 μM and 0.3 μM, respectively. Zn transport by MtZIP1 was more sensitive to inhibition by copper (Cu) concentrations than MtZIP5 and MtZIP6, because 3 μM Cu inhibited Zn transport by 80% in MtZIP1 while 5 μM Cu was required to achieve the same inhibition of Zn transport in MtZIP5 and MtZIP6. Cadmium (Cd) had a greater effect on the ability of MtZIP1 to transport Zn than MtZIP5 and MtZIP6, because at a concentration of 3 μM Cd, the Zn transport by MtZIP1 was inhibited 55% and the transport of Zn by MtZIP5 and MtZIP6 was inhibited by 20-30%. However, only MtZIP6 transported Cd at higher rates than those observed in the control plasmid pFL61, demonstrating a low affinity for Cd based on a K_m of 57 μM. These results suggest that Medicago truncatula has both high and low affinity Zn transporters to maintain Zn homeostasis and that these transporters may function in different compartments within the plant.
机译:为了了解豆科植物的植物如何保持锌(Zn)稳态,我们在豆科植物苜蓿模型中表征了来自二价金属转运蛋白ZIP家族的三种锌转运蛋白的动力学。在所研究的六个ZIP中,MtZIP1,MtZIP5和MtZIP6是该家族中唯一确定转运锌并进一步表征的成员。与MtZIP5和MtZIP6对Zn的亲和力较高的K_m分别为0.4μM和0.3μM的MtZIP5和MtZIP6相比,MtZIP1对Zn的亲和力较低,K_m为1μM。 MtZIP1的锌转运比MtZIP5和MtZIP6对铜(Cu)浓度的抑制更敏感,因为3μMCu抑制MtZIP1中Zn的转运达80%,而5μMCu才能达到相同的抑制MtZIP5和MtZIP6中的Zn转运的作用。 。镉(Cd)对MtZIP1转运锌的能力比MtZIP5和MtZIP6更大,因为在3μMCd浓度下,MtZIP1的锌转运被抑制了55%,MtZIP5和MtZIP6的锌转运被抑制。减少20-30%。然而,仅MtZIP6以比对照质粒pFL61中观察到的速率高的速率转运Cd,这表明基于57μM的K_m对Cd的亲和力低。这些结果表明截叶苜蓿具有高和低亲和力的锌转运蛋白,以维持锌的稳态,这些转运蛋白可能在植物的不同区室中起作用。

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