Molecular biology of glutathione peroxidase 4: from genomic structure to developmental expression and neural function

磷脂过氧化氢谷胱甘肽过氧化物酶 GPX4 基因亚型 胞浆 细胞生物学 生物化学 生物 功能(生物学) 下调和上调 谷胱甘肽 基因 化学 谷胱甘肽过氧化物酶 谷胱甘肽
作者
Nicolai Ε. Savaskan,Christoph Ufer,Hartmut Kühn,Astrid Borchert
出处
期刊:Biological Chemistry [De Gruyter]
卷期号:388 (10): 1007-1017 被引量:121
标识
DOI:10.1515/bc.2007.126
摘要

Abstract Selenoproteins have been recognized as modulators of brain function and signaling. Phospholipid hydroperoxide glutathione peroxidase (GPx4/PHGPx) is a unique member of the selenium-dependent glutathione peroxidases in mammals with a pivotal role in brain development and function. GPx4 exists as a cytosolic, mitochondrial, and nuclear isoform derived from a single gene. In mice, the GPx4 gene is located on chromosome 10 in close proximity to a functional retrotransposome that is expressed under the control of captured regulatory elements. Elucidation of crystallographic data uncovered structural peculiarities of GPx4 that provide the molecular basis for its unique enzymatic properties and substrate specificity. Monomeric GPx4 is multifunctional: it acts as a reducing enzyme of peroxidized phospholipids and thiols and as a structural protein. Transcriptional regulation of the different GPx4 isoforms requires several isoform-specific cis -regulatory sequences and trans -activating factors. Cytosolic and mitochondrial GPx4 are the major isoforms exclusively expressed by neurons in the developing brain. In stark contrast, following brain trauma, GPx4 is specifically upregulated in non-neuronal cells, i.e., reactive astrocytes. Molecular approaches to genetic modification in mice have revealed an essential and isoform-specific function for GPx4 in development and disease. Here we review recent findings on GPx4 with emphasis on its molecular structure and function and consider potential mechanisms that underlie neural development and neuropathological conditions.
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