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酵母作为深入了解人类锰相关疾病的工具。

Yeast as a Tool for Deeper Understanding of Human Manganese-Related Diseases.

机构信息

Louvain Institute of Biomolecular Science and Technology, Université catholique de Louvain, B-1348 Louvain-la-Neuve, Belgium.

出版信息

Genes (Basel). 2019 Jul 17;10(7):545. doi: 10.3390/genes10070545.

Abstract

The biological importance of manganese lies in its function as a key cofactor for numerous metalloenzymes and as non-enzymatic antioxidant. Due to these two essential roles, it appears evident that disturbed manganese homeostasis may trigger the development of pathologies in humans. In this context, yeast has been extensively used over the last decades to gain insight into how cells regulate intra-organellar manganese concentrations and how human pathologies may be related to disturbed cellular manganese homeostasis. This review first summarizes how manganese homeostasis is controlled in yeast cells and how this knowledge can be extrapolated to human cells. Several manganese-related pathologies whose molecular mechanisms have been studied in yeast are then presented in the light of the function of this cation as a non-enzymatic antioxidant or as a key cofactor of metalloenzymes. In this line, we first describe the Transmembrane protein 165-Congenital Disorder of Glycosylation (TMEM165-CDG) and Friedreich ataxia pathologies. Then, due to the established connection between manganese cations and neurodegeneration, the Kufor-Rakeb syndrome and prion-related diseases are finally presented.

摘要

锰的生物学重要性在于其作为许多金属酶的关键辅助因子和非酶抗氧化剂的功能。由于这两个重要作用,很明显,锰稳态的紊乱可能会引发人类疾病的发展。在这方面,酵母在过去几十年中被广泛用于深入了解细胞如何调节细胞器内锰浓度,以及人类疾病如何与细胞内锰稳态的紊乱有关。这篇综述首先总结了酵母细胞中锰稳态是如何控制的,以及如何将这些知识外推到人类细胞。然后,根据作为非酶抗氧化剂或金属酶关键辅助因子的这种阳离子的功能,阐述了几种已在酵母中研究过的与锰有关的病理学。在这方面,我们首先描述了跨膜蛋白 165-先天性糖基化障碍(TMEM165-CDG)和弗里德里希共济失调的病理学。然后,由于锰阳离子与神经退行性变之间的既定联系,最后介绍了 Kufor-Rakeb 综合征和朊病毒相关疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b21/6678438/4c6deba0de4e/genes-10-00545-g001.jpg

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