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前体层蛋白A积累和应激条件会导致早衰的人间充质干细胞中Oct-1活性受损和自噬发生。

Prelamin A accumulation and stress conditions induce impaired Oct-1 activity and autophagy in prematurely aged human mesenchymal stem cell.

作者信息

Infante Arantza, Gago Andrea, de Eguino Garbiñe Ruiz, Calvo-Fernández Teresa, Gómez-Vallejo Vanessa, Llop Jordi, Schlangen Karin, Fullaondo Ane, Aransay Ana M, Martín Abraham, Rodríguez Clara I

机构信息

Stem Cells and Cell Therapy Laboratory, BioCruces Health Research Institute, Cruces University Hospital, Barakaldo 48903, Spain.

出版信息

Aging (Albany NY). 2014 Apr;6(4):264-80. doi: 10.18632/aging.100651.

Abstract

Aging, a time-dependent functional decline of biological processes, is the primary risk factor in developing diseases such as cancer, cardiovascular or degenerative diseases. There is a real need to understand the human aging process in order to increase the length of disease-free life, also known as "health span". Accumulation of progerin and prelamin A are the hallmark of a group of premature aging diseases but have also been found during normal cellular aging strongly suggesting similar mechanisms between healthy aging and LMNA-linked progeroid syndromes. How this toxic accumulation contributes to aging (physiological or pathological) remains unclear. Since affected tissues in age-associated disorders and in pathological aging are mainly of mesenchymal origin we propose a model of human aging based on mesenchymal stem cells (hMSCs) which accumulate prelamin A. We demonstrate that prelamin A-accumulating hMSCs have a premature aging phenotype which affects their functional competence in vivo. The combination of prelamin A accumulation and stress conditions enhance the aging phenotype by dysregulating the activity of the octamer binding protein Oct-1This experimental model has been fundamental to identify a new role for Oct-1 in hMSCs aging.

摘要

衰老,即生物过程随时间推移而出现的功能衰退,是罹患癌症、心血管疾病或退行性疾病等病症的主要风险因素。为了延长无病生存期(即“健康寿命”),切实需要了解人类衰老过程。早老素和前层粘连蛋白A的积累是一组早衰疾病的标志,但在正常细胞衰老过程中也有发现,这强烈表明健康衰老与与核纤层蛋白A相关的早衰综合征之间存在相似机制。这种毒性积累如何导致衰老(生理或病理)仍不清楚。由于与年龄相关的疾病和病理衰老中受影响的组织主要起源于间充质,我们提出了一种基于积累前层粘连蛋白A的间充质干细胞(hMSC)的人类衰老模型。我们证明,积累前层粘连蛋白A的hMSC具有早衰表型,这会影响其在体内的功能能力。前层粘连蛋白A积累和应激条件的结合通过失调八聚体结合蛋白Oct-1的活性来增强衰老表型。该实验模型对于确定Oct-1在hMSC衰老中的新作用至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d071/4032794/f701322bc61d/aging-06-264-g001.jpg

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