首页> 外文期刊>Biochemistry and Cell Biology >Ontogenic changes in lactoferrin receptor and DMT1 in mouse small intestine: implications for iron absorption during early life.
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Ontogenic changes in lactoferrin receptor and DMT1 in mouse small intestine: implications for iron absorption during early life.

机译:小鼠小肠中乳铁蛋白受体和DMT1的致癌性变化:对生命早期铁吸收的影响。

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It has been proposed that lactoferrin receptor (LfR) may be involved in intestinal iron transport during early life. However, it is known that iron homeostasis is regulated by divalent metal transporter 1 (DMT1; Nramp2/DCT1) in the adult small intestine. To address the hypothesis that LfR may play a role as an alternative iron transport pathway during early life, we used immunohistochemistry (IHC) to examine the localization of mouse LfR (mLfR) and DMT1. In addition to studying the localization and abundance of LfR and DMT1 on the apical membrane, intestinal brush-border membrane vesicles (BBMV) were isolated during the first 3 postnatal weeks (postnatal day (PD) 0, 5, 10, and 20). We found that mLfR is expressed in fetal mice as early as gestational days (GD) 13.5, 15.5, and 18.5. A 34 kD band for mLfR was detected at PD 0 through PD 20 in total intestine homogenate. However, mLfR protein did not appear in the BBMV preparations until PD 5 and was highly expressed at PD 10. By IHC, DMT1 protein was minimally observed at PD 0 and PD 5, but by PD 10 DMT1 was predominantly localized in the apical membrane of the maturing intestine. BBMV fractionation revealed 50–120 kD protein bands for DMT1. In these BBMV preparations, the apical-membrane-associated 120 kD band for DMT1 increased in abundance with age. However, in the corresponding total homogenates, only the deglycosylated form of DMT1 (50 kD) was identified. These results indicate that DMT1 is mislocalized during late gestation, minimally expressed during early life, and predominantly expressed in its deglycosylated form until PD 20. The immunolocalization and abundant protein expression of mLfR suggest that accrual of iron from Lf may be the principal iron uptake pathway at this age. In conclusion, our findings support the notion that until the development-dependent expression of DMT1 in the intestine is induced, mLfR may serve as an alternative iron uptake pathway.
机译:已经提出乳铁蛋白受体(LfR)可能在生命早期参与肠铁运输。但是,众所周知,成年小肠中的铁稳态受二价金属转运蛋白1(DMT1; Nramp2 / DCT1)的调节。为了解决LfR可能在生命早期充当替代铁转运途径的假设,我们使用免疫组织化学(IHC)检查了小鼠LfR(mLfR)和DMT1的定位。除了研究LfR和DMT1在顶膜上的定位和丰度外,在出生后的前3周(产后第0、5、10和20天)还分离了肠刷状边界膜囊泡(BBMV)。我们发现mLfR早在胎龄(GD)13.5、15.5和18.5时就在胎儿小鼠中表达。在总肠匀浆中,在PD 0至PD 20处检测到mLfR的34 kD条带。但是,mLfR蛋白直到PD 5才出现在BBMV制品中,并在PD 10高度表达。通过IHC,在PD 0和PD 5观察到的DMT1蛋白最少,而在PD 10中DMT1主要位于DMP1的顶膜中。成熟的肠子。 BBMV分馏显示DMT1有50–120 kD蛋白条带。在这些BBMV制剂中,DMT1的与根膜相关的120 kD谱带随着年龄的增长而增加。但是,在相应的总匀浆中,仅鉴定出DMT1的去糖基化形式(50 kD)。这些结果表明,DMT1在妊娠后期是错误定位的,在生命早期很少表达,并且主要以其去糖基化形式表达直至PD20。免疫功能和mLfR丰富的蛋白质表达表明,从Lf积累铁可能是主要的铁吸收途径在这个年龄。总之,我们的发现支持以下观点:在肠道中诱导DMT1依赖于发育的表达之前,mLfR可以作为替代的铁摄取途径。

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