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Inactivation of the Hereditary Spastic Paraplegia-Associated Hspd1 Gene Encoding the Hsp60 Chaperone Results in Early Embryonic Lethality in Mice

Cell Stress and Chaperones(2010)SCI 3区SCI 4区

Research Unit for Molecular Medicine | Department of Molecular Biology | Institute of Anatomy | Department of Human Genetics

Cited 80|Views21
Abstract
The mitochondrial Hsp60 chaperonin plays an important role in sustaining cellular viability. Its dysfunction is related to inherited forms of the human diseases spastic paraplegia and hypomyelinating leukodystrophy. However, it is unknown whether the requirement for Hsp60 is neuron specific or whether a complete loss of the protein will impair mammalian development and postnatal survival. In this study, we describe the generation and characterization of a mutant mouse line bearing an inactivating gene-trap insertion in the Hspd1 gene encoding Hsp60. We found that heterozygous mice were born at the expected ratio compared to wild-type mice and displayed no obvious phenotype deficits. Using quantitative reverse transcription PCR, we found significantly decreased levels of the Hspd1 transcript in all of the tissues examined, demonstrating that the inactivation of the Hspd1 gene is efficient. By Western blot analysis, we found that the amount of Hsp60 protein, compared to either cytosolic tubulin or mitochondrial voltage-dependent anion-selective channel protein 1/porin, was decreased as well. The expression of the nearby Hspe1 gene, which encodes the Hsp10 co-chaperonin, was concomitantly down regulated in the liver, and the protein levels in all tissues except the brain were reduced. Homozygous Hspd1 mutant embryos, however, died shortly after implantation (day 6.5 to 7.5 of gestation, Theiler stages 9–10). Our results demonstrate that Hspd1 is an essential gene for early embryonic development in mice, while reducing the amount of Hsp60 by inactivation of one allele of the gene is compatible with survival to term as well as postnatal life.
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Chaperonin 60,Chaperonin 10,Embryonic development,Gene knockout techniques,Insertional mutagenesis, OmniBank®
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要点】:研究揭示了Hspd1基因编码的Hsp60伴侣蛋白在早期胚胎发育中的关键作用,其完全缺失导致小鼠胚胎早期死亡。

方法】:通过基因敲除技术,创建了一个带有Hspd1基因失活基因捕获插入的突变小鼠系,并对其进行了表型分析和定量反转录PCR以及Western blot分析。

实验】:实验中,杂合子小鼠出生比例正常,无显著表型缺陷;Hspd1基因转录水平在所有检测组织中显著降低,Hsp60蛋白水平也降低;同合子Hspd1突变胚胎在植入后6.5至7.5天死亡。使用了Hspd1基因敲除小鼠模型和相应的野生型小鼠作为对照,数据集名称未提及。