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载脂蛋白E受体2细胞内结构域在硒摄取和细胞信号传导中的差异功能。

Differential functions of the Apoer2 intracellular domain in selenium uptake and cell signaling.

作者信息

Masiulis Irene, Quill Timothy A, Burk Raymond F, Herz Joachim

机构信息

Department of Molecular Genetics, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

出版信息

Biol Chem. 2009 Jan;390(1):67-73. doi: 10.1515/BC.2009.011.

Abstract

Apolipoprotein E receptor 2 (Apoer2) is a multifunctional transport and signaling receptor that regulates the uptake of selenium into the mouse brain and testis through endocytosis of selenoprotein P (Sepp1). Mice deficient in Apoer2 or Sepp1 are infertile, with kinked and hypomotile spermatozoa. They also develop severe neurological defects on a low selenium diet, due to a profound impairment of selenium uptake. Little is known about the function of Apoer2 in the testis beyond its role as a Sepp1 receptor. By contrast, in the brain, Apoer2 is an essential component of the Reelin signaling pathway, which is required for proper neuronal organization and synapse function. Using knock-in mice, we have functionally dissociated the signaling motifs in the Apoer2 cytoplasmic domain from Sepp1 uptake. Selenium concentration of brain and testis was normal in the knock-in mutants, in contrast to Apoer2 knock-outs. Thus, the neurological defects in the signaling impaired knock-in mice are not caused by a selenium uptake defect, but instead are a direct consequence of a disruption of the Reelin signal. Reduced sperm motility was observed in some of the knock-in mice, indicating a novel signaling role for Apoer2 in sperm development and function that is independent of selenium uptake.

摘要

载脂蛋白E受体2(Apoer2)是一种多功能转运和信号受体,它通过硒蛋白P(Sepp1)的内吞作用调节硒进入小鼠大脑和睾丸。缺乏Apoer2或Sepp1的小鼠不育,精子出现弯曲且活力低下。由于硒摄取严重受损,它们在低硒饮食下还会出现严重的神经缺陷。除了作为Sepp1受体的作用外,关于Apoer2在睾丸中的功能知之甚少。相比之下,在大脑中,Apoer2是Reelin信号通路的重要组成部分,该通路对于正常的神经元组织和突触功能是必需的。利用基因敲入小鼠,我们在功能上分离了Apoer2胞质结构域中与Sepp1摄取相关的信号基序。与Apoer2基因敲除小鼠不同,基因敲入突变体的大脑和睾丸中的硒浓度正常。因此,信号受损的基因敲入小鼠中的神经缺陷不是由硒摄取缺陷引起的,而是Reelin信号中断的直接后果。在一些基因敲入小鼠中观察到精子活力降低,表明Apoer2在精子发育和功能中具有独立于硒摄取的新信号作用。

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