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影响线粒体健康和帕金森病外显率的环境与遗传变量

Environmental and Genetic Variables Influencing Mitochondrial Health and Parkinson's Disease Penetrance.

作者信息

Zanon Alessandra, Pramstaller Peter P, Hicks Andrew A, Pichler Irene

机构信息

Institute for Biomedicine, Eurac Research, Affiliated Institute of the University of Lübeck, Bolzano, Italy.

Department of Neurology, General Central Hospital, Bolzano, Italy.

出版信息

Parkinsons Dis. 2018 Mar 7;2018:8684906. doi: 10.1155/2018/8684906. eCollection 2018.

Abstract

There is strong evidence that impairment of mitochondrial function plays a key role in the pathogenesis of PD. The two key PD genes related to mitochondrial function are Parkin () and PINK1 (), and also mutations in several other PD genes, including , , , , and , have been shown to induce mitochondrial stress. Many mutations are clearly pathogenic in some patients while carriers of other mutations either do not develop the disease or show a delayed onset, a phenomenon known as reduced penetrance. Indeed, for several mutations in autosomal dominant PD genes, penetrance is markedly reduced, whereas heterozygous carriers of recessive mutations may predispose to PD in a dominant manner, although with highly reduced penetrance, if additional disease modifiers are present. The identification and validation of such modifiers leading to reduced penetrance or increased susceptibility in the case of heterozygous carriers of recessive mutations are relevant for a better understanding of mechanisms contributing to disease onset. We discuss genetic and environmental factors as well as mitochondrial DNA alterations and protein-protein interactions, all involved in mitochondrial function, as potential causes to modify penetrance of mutations in dominant PD genes and to determine manifestation of heterozygous mutations in recessive PD genes.

摘要

有强有力的证据表明,线粒体功能受损在帕金森病(PD)的发病机制中起关键作用。与线粒体功能相关的两个关键PD基因是Parkin()和PINK1(),而且包括、、、和在内的其他几个PD基因的突变也已被证明会诱导线粒体应激。许多突变在一些患者中显然具有致病性,而其他突变的携带者要么不发病,要么发病延迟,这种现象称为外显率降低。实际上,对于常染色体显性PD基因中的几种突变,外显率明显降低,而隐性突变的杂合子携带者可能以显性方式易患PD,尽管外显率极低,但如果存在其他疾病修饰因子则会如此。鉴定和验证导致隐性突变杂合子携带者外显率降低或易感性增加的此类修饰因子,对于更好地理解疾病发病机制具有重要意义。我们将讨论遗传和环境因素以及线粒体DNA改变和蛋白质 - 蛋白质相互作用,所有这些都与线粒体功能有关,它们是改变显性PD基因突变外显率以及决定隐性PD基因杂合突变表现的潜在原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4dd/5863306/13c1185721d8/PD2018-8684906.001.jpg

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