酵母处于衰老和年龄相关疾病研究的前沿。

Q2 Medicine
Belém Sampaio-Marques, William C Burhans, Paula Ludovico
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引用次数: 20

摘要

衰老是一个复杂的多因素过程,由遗传、环境和随机因素驱动,导致生物系统的逐渐衰退。衰老的机制已经在各种模式生物和系统中进行了广泛的研究,产生了根本性的进展。值得注意的是,酵母老化模型的研究为该领域的发展做出了许多相关的贡献。在酵母中发现的不同长寿因素和途径随后在无脊椎动物和哺乳动物模型中被证明可以调节分子衰老。目前,抗衰老药物(如亚精胺和白藜芦醇)或抗衰老干预措施(如热量限制)的最佳候选物是首先在酵母中确定和探索的。酵母还被用作研究与年龄相关疾病(如帕金森病、亨廷顿病或阿尔茨海默病)相关的蛋白质的细胞和分子效应的模型。本章将对酵母模型中衰老和衰老相关疾病的研究进展进行综述。重点将放在关键的长寿因素、衰老标志和延缓衰老的干预措施上,包括酵母特有的和那些似乎在多细胞生物中保守的。它们对年龄相关疾病发病机制的影响也将被讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Yeast at the Forefront of Research on Ageing and Age-Related Diseases.

Ageing is a complex and multifactorial process driven by genetic, environmental and stochastic factors that lead to the progressive decline of biological systems. Mechanisms of ageing have been extensively investigated in various model organisms and systems generating fundamental advances. Notably, studies on yeast ageing models have made numerous and relevant contributions to the progress in the field. Different longevity factors and pathways identified in yeast have then been shown to regulate molecular ageing in invertebrate and mammalian models. Currently the best candidates for anti-ageing drugs such as spermidine and resveratrol or anti-ageing interventions such as caloric restriction were first identified and explored in yeast. Yeasts have also been instrumental as models to study the cellular and molecular effects of proteins associated with age-related diseases such as Parkinson's, Huntington's or Alzheimer's diseases. In this chapter, a review of the advances on ageing and age-related diseases research in yeast models will be made. Particular focus will be placed on key longevity factors, ageing hallmarks and interventions that slow ageing, both yeast-specific and those that seem to be conserved in multicellular organisms. Their impact on the pathogenesis of age-related diseases will be also discussed.

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来源期刊
CiteScore
3.30
自引率
0.00%
发文量
7
期刊介绍: Molecular biology has been providing an overwhelming amount of data on the structural components and molecular machineries of the cell and its organelles and the complexity of intra- and intercellular communication. The molecular basis of hereditary and acquired diseases is beginning to be unravelled, and profound new insights into development and evolutionary biology have been gained from molecular approaches. Progress in Molecular and Subcellular Biology summarises the most recent developments in this fascinating area of biology.
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