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胎盘铁氧化酶Zyklopen对小鼠铁向胎儿的转运并非必不可少。

The Placental Ferroxidase Zyklopen Is Not Essential for Iron Transport to the Fetus in Mice.

作者信息

Helman Sheridan L, Wilkins Sarah J, McKeating Daniel R, Perkins Anthony V, Whibley Page E, Cuffe James S M, Simmons David G, Fuqua Brie K, Vulpe Christopher D, Wallace Daniel F, O'Callaghan Jessica L, Pelzer Elise S, Anderson Gregory J, Frazer David M

机构信息

Molecular Nutrition Laboratory, QIMR Berghofer Medical Research Institute, Herston, Australia.

Faculty of Medicine, The University of Queensland, St. Lucia, Australia.

出版信息

J Nutr. 2021 Sep 4;151(9):2541-2550. doi: 10.1093/jn/nxab174.

Abstract

BACKGROUND

The ferroxidase zyklopen (Zp) has been implicated in the placental transfer of iron to the fetus. However, the evidence for this is largely circumstantial.

OBJECTIVES

This study aimed to determine whether Zp is essential for placental iron transfer.

METHODS

A model was established using 8- to 12-wk-old pregnant C57BL/6 mice on standard rodent chow in which Zp was knocked out in the fetus and fetal components of the placenta. Zp was also disrupted in the entire placenta using global Zp knockout mice. Inductively coupled plasma MS was used to measure total fetal iron, an indicator of the amount of iron transferred by the placenta to the fetus, at embryonic day 18.5 of gestation. Iron transporter expression in the placenta was measured by Western blotting, and the expression of Hamp1, the gene encoding the iron regulatory hormone hepcidin, was determined in fetal liver by real-time PCR.

RESULTS

There was no change in the amount of iron transferred to the fetus when Zp was disrupted in either the fetal component of the placenta or the entire placenta. No compensatory changes in the expression of the iron transport proteins transferrin receptor 1 or ferroportin were observed, nor was there any change in fetal liver Hamp1 mRNA. Hephl1, the gene encoding Zp, was expressed mainly in the maternal decidua of the placenta and not in the nutrient-transporting syncytiotrophoblast. Disruption of Zp in the whole placenta resulted in a 26% increase in placental size (P < 0.01).

CONCLUSIONS

Our data indicate that Zp is not essential for the efficient transfer of iron to the fetus in mice and is localized predominantly in the maternal decidua. The increase in placental size observed when Zp is knocked out in the entire placenta suggests that this protein may play a role in placental development.

摘要

背景

亚铁氧化酶环戊蛋白(Zp)被认为与铁向胎儿的胎盘转运有关。然而,支持这一观点的证据大多是间接的。

目的

本研究旨在确定Zp对胎盘铁转运是否至关重要。

方法

使用8至12周龄、以标准啮齿动物饲料喂养的怀孕C57BL/6小鼠建立模型,使胎儿及胎盘的胎儿部分中的Zp基因敲除。还使用全身性Zp基因敲除小鼠使整个胎盘的Zp基因破坏。在妊娠第18.5天,采用电感耦合等离子体质谱法测量总胎儿铁含量,这是胎盘向胎儿转运铁量的一个指标。通过蛋白质免疫印迹法测量胎盘中铁转运蛋白的表达,并通过实时聚合酶链反应测定胎儿肝脏中编码铁调节激素铁调素的Hamp1基因的表达。

结果

当胎盘的胎儿部分或整个胎盘的Zp基因被破坏时,向胎儿转运的铁量没有变化。未观察到铁转运蛋白转铁蛋白受体1或铁输出蛋白表达的代偿性变化,胎儿肝脏Hamp1信使核糖核酸也没有变化。编码Zp的Hephl1基因主要在胎盘的母体蜕膜中表达,而不在营养转运合体滋养层中表达。整个胎盘的Zp基因破坏导致胎盘大小增加26%(P<0.01)。

结论

我们的数据表明,Zp对小鼠中铁向胎儿的有效转运并非必不可少,且主要定位于母体蜕膜。当在整个胎盘中敲除Zp时观察到胎盘大小增加,这表明该蛋白可能在胎盘发育中起作用。

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