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Basigin 基因缺失导致神经视网膜中线粒体减少。

Deletion of the Basigin gene results in reduced mitochondria in the neural retina.

机构信息

Department of Biology, University of North Florida, Jacksonville, FL 32224, United States.

出版信息

Biochem Biophys Res Commun. 2013 Aug 30;438(3):546-50. doi: 10.1016/j.bbrc.2013.07.092. Epub 2013 Jul 29.

Abstract

Basigin-null mice are characterized as blind from the time of eye opening, with degeneration of the retina beginning at 8weeks of age, and progressing until the entire photoreceptor cell layer is destroyed. It is likely that a metabolic deficiency underlies the blindness and degeneration phenotypes, as it has been determined that Basigin-null mice do not express the transporter protein monocarboxylate transporter one on the membrane of photoreceptor cells and inner segments, nor Müller cells of the neural retina, as is observed in normal mice. The purpose of the present study was to assess the health of mitochondria in normal and Basigin-null mice, specifically to determine if mitochondria within the Basigin-null mouse neural retina are metabolically active. This was achieved via a measurement of cytochrome C concentration and the expression of autophagy-specific proteins via ELISA analyses. Additionally, Mitotracker dyes were used to assess the number and relative activity of mitochondria. It was determined that cytochrome C concentrations and expression of autophagy-specific proteins were not increased in Basigin-null animals, as compared to control animals. Also, while Basigin-null mice do have metabolically active mitochondria, the amount of mitochondria was greatly reduced, when compared to control animals. The results suggest that a reduction in mitochondria is a result, rather than the cause, of the metabolic deficiency observed in Basigin-null mice, and likely occurs because of reduced metabolic activity in the absence of MCT1 expression.

摘要

Basigin 基因敲除小鼠从睁眼时起即为盲鼠,其视网膜从 8 周龄开始退化,直至整个光感受器细胞层被破坏。很可能是代谢缺陷导致了盲性和变性表型,因为已经确定 Basigin 基因敲除小鼠的光感受器细胞和内节的膜上以及神经视网膜的 Müller 细胞不表达单羧酸转运蛋白 1(MCT1)转运蛋白,而在正常小鼠中则观察到该蛋白的表达。本研究的目的是评估正常和 Basigin 基因敲除小鼠的线粒体健康状况,特别是确定 Basigin 基因敲除小鼠的神经视网膜中的线粒体是否具有代谢活性。这是通过测量细胞色素 C 浓度和通过 ELISA 分析测定自噬特异性蛋白的表达来实现的。此外,还使用 Mitotracker 染料来评估线粒体的数量和相对活性。与对照组相比,Basigin 基因敲除动物的细胞色素 C 浓度和自噬特异性蛋白的表达并没有增加。此外,虽然 Basigin 基因敲除小鼠确实具有代谢活跃的线粒体,但与对照组相比,其线粒体数量大大减少。研究结果表明,线粒体的减少是 Basigin 基因敲除小鼠代谢缺陷的结果,而不是原因,并且可能是由于缺乏 MCT1 表达导致代谢活性降低所致。

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