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通过不同信号通路延缓酵母时序性衰老的化合物两两组合,对衰老延缓程度表现出协同效应。

Pairwise combinations of chemical compounds that delay yeast chronological aging through different signaling pathways display synergistic effects on the extent of aging delay.

作者信息

Dakik Pamela, McAuley Mélissa, Chancharoen Marisa, Mitrofanova Darya, Lozano Rodriguez Monica Enith, Baratang Junio Jennifer Anne, Lutchman Vicky, Cortes Berly, Simard Éric, Titorenko Vladimir I

机构信息

Department of Biology, Concordia University, Montreal, Quebec, Canada.

Idunn Technologies Inc., Rosemere, Quebec, Canada.

出版信息

Oncotarget. 2019 Jan 8;10(3):313-338. doi: 10.18632/oncotarget.26553.

Abstract

We have recently discovered six plant extracts that delay yeast chronological aging. Most of them affect different nodes, edges and modules of an evolutionarily conserved network of longevity regulation that integrates certain signaling pathways and protein kinases; this network is also under control of such aging-delaying chemical compounds as spermidine and resveratrol. We have previously shown that, if a strain carrying an aging-delaying single-gene mutation affecting a certain node, edge or module of the network is exposed to some of the six plant extracts, the mutation and the plant extract enhance aging-delaying efficiencies of each other so that their combination has a synergistic effect on the extent of aging delay. We therefore hypothesized that a pairwise combination of two aging-delaying plant extracts or a combination of one of these plant extracts and spermidine or resveratrol may have a synergistic effect on the extent of aging delay only if each component of this combination targets a different element of the network. To test our hypothesis, we assessed longevity-extending efficiencies of all possible pairwise combinations of the six plant extracts or of one of them and spermidine or resveratrol in chronologically aging yeast. In support of our hypothesis, we show that only pairwise combinations of naturally-occurring chemical compounds that slow aging through different nodes, edges and modules of the network delay aging in a synergistic manner.

摘要

我们最近发现了六种能够延缓酵母时序衰老的植物提取物。它们中的大多数会影响一个进化上保守的长寿调控网络的不同节点、边和模块,该网络整合了某些信号通路和蛋白激酶;这个网络也受亚精胺和白藜芦醇等延缓衰老的化合物的调控。我们之前已经表明,如果携带影响该网络某个节点、边或模块的延缓衰老单基因突变的菌株接触这六种植物提取物中的某些提取物,那么该突变和植物提取物会相互提高延缓衰老的效率,从而它们的组合对延缓衰老的程度具有协同作用。因此,我们推测,只有当这种组合的每个成分靶向网络的不同元素时,两种延缓衰老的植物提取物的两两组合或其中一种植物提取物与亚精胺或白藜芦醇的组合才可能对延缓衰老的程度具有协同作用。为了验证我们的假设,我们评估了六种植物提取物或其中一种与亚精胺或白藜芦醇的所有可能两两组合在时序衰老酵母中的延长寿命的效率。为支持我们的假设,我们表明,只有通过网络的不同节点、边和模块延缓衰老的天然存在的化合物的两两组合才会以协同方式延缓衰老。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd48/6349451/c2e052ac0b88/oncotarget-10-313-g004.jpg

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