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在经历反复不对称分裂的细胞中保留的长寿蛋白质的鉴定。

Identification of long-lived proteins retained in cells undergoing repeated asymmetric divisions.

作者信息

Thayer Nathaniel H, Leverich Christina K, Fitzgibbon Matthew P, Nelson Zara W, Henderson Kiersten A, Gafken Philip R, Hsu Jessica J, Gottschling Daniel E

机构信息

Division of Basic Sciences, Fred Hutchinson Cancer Research Center, Seattle, WA 98109; and The Molecular and Cellular Biology Program, Fred Hutchinson Cancer Research Center and University of Washington, Seattle, WA 98109.

Division of Basic Sciences, Fred Hutchinson Cancer Research Center, Seattle, WA 98109; and.

出版信息

Proc Natl Acad Sci U S A. 2014 Sep 30;111(39):14019-26. doi: 10.1073/pnas.1416079111. Epub 2014 Sep 16.

DOI:10.1073/pnas.1416079111
PMID:25228775
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4191815/
Abstract

Long-lived proteins have been implicated in age-associated decline in metazoa, but they have only been identified in extracellular matrices or postmitotic cells. However, the aging process also occurs in dividing cells undergoing repeated asymmetric divisions. It was not clear whether long-lived proteins exist in asymmetrically dividing cells or whether they are involved in aging. Here we identify long-lived proteins in dividing cells during aging using the budding yeast, Saccharomyces cerevisiae. Yeast mother cells undergo a limited number of asymmetric divisions that define replicative lifespan. We used stable-isotope pulse-chase and total proteome mass-spectrometry to identify proteins that were both long-lived and retained in aging mother cells after ∼ 18 cells divisions. We identified ∼ 135 proteins that we designate as long-lived asymmetrically retained proteins (LARPS). Surprisingly, the majority of LARPs appeared to be stable fragments of their original full-length protein. However, 15% of LARPs were full-length proteins and we confirmed several candidates to be long-lived and retained in mother cells by time-lapse microscopy. Some LARPs localized to the plasma membrane and remained robustly in the mother cell upon cell division. Other full-length LARPs were assembled into large cytoplasmic structures that had a strong bias to remain in mother cells. We identified age-associated changes to LARPs that include an increase in their levels during aging because of their continued synthesis, which is not balanced by turnover. Additionally, several LARPs were posttranslationally modified during aging. We suggest that LARPs contribute to age-associated phenotypes and likely exist in other organisms.

摘要

长寿命蛋白质与后生动物的衰老相关衰退有关,但仅在细胞外基质或有丝分裂后细胞中被发现。然而,衰老过程也发生在经历反复不对称分裂的分裂细胞中。尚不清楚长寿命蛋白质是否存在于不对称分裂细胞中,或者它们是否参与衰老过程。在这里,我们使用芽殖酵母酿酒酵母来鉴定衰老过程中分裂细胞中的长寿命蛋白质。酵母母细胞经历有限数量的不对称分裂,这些分裂定义了复制寿命。我们使用稳定同位素脉冲追踪和全蛋白质组质谱法来鉴定在约18次细胞分裂后既长寿又保留在衰老母细胞中的蛋白质。我们鉴定出约135种蛋白质,我们将其指定为长寿命不对称保留蛋白质(LARPs)。令人惊讶的是,大多数LARPs似乎是其原始全长蛋白质的稳定片段。然而,15%的LARPs是全长蛋白质,我们通过延时显微镜证实了几种候选蛋白质是长寿的并保留在母细胞中。一些LARPs定位于质膜,在细胞分裂时在母细胞中保持稳定。其他全长LARPs组装成大的细胞质结构,强烈倾向于保留在母细胞中。我们鉴定了与LARPs相关的衰老变化,包括由于其持续合成导致衰老过程中其水平增加,而周转率并未平衡这种增加。此外,几种LARPs在衰老过程中发生了翻译后修饰。我们认为LARPs促成了与衰老相关的表型,并且可能存在于其他生物体中。

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本文引用的文献

1
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Biochem Soc Trans. 2014 Jun;42(3):663-9. doi: 10.1042/BST20140045.
2
ProteomeXchange provides globally coordinated proteomics data submission and dissemination.蛋白质组学交换库提供全球协调的蛋白质组学数据提交和传播服务。
Nat Biotechnol. 2014 Mar;32(3):223-6. doi: 10.1038/nbt.2839.
3
The mystery of aging and rejuvenation - a budding topic.衰老与返老还童之谜——一个新兴的话题。
Curr Opin Microbiol. 2014 Apr;18:61-7. doi: 10.1016/j.mib.2014.02.003. Epub 2014 Mar 12.
4
Budding yeast as a model organism to study the effects of age.以出芽酵母作为模式生物来研究年龄的影响。
FEMS Microbiol Rev. 2014 Mar;38(2):300-25. doi: 10.1111/1574-6976.12060. Epub 2014 Feb 26.
5
Spatial sequestration of misfolded proteins by a dynamic chaperone pathway enhances cellular fitness during stress.通过动态伴侣蛋白途径对错误折叠蛋白进行空间隔离可增强应激状态下细胞的适应能力。
Nat Cell Biol. 2013 Oct;15(10):1231-43. doi: 10.1038/ncb2838. Epub 2013 Sep 15.
6
Identification of long-lived proteins reveals exceptional stability of essential cellular structures.鉴定长寿命蛋白质揭示了必需细胞结构的异常稳定性。
Cell. 2013 Aug 29;154(5):971-982. doi: 10.1016/j.cell.2013.07.037.
7
Biological consequences and advantages of asymmetric bacterial growth.不对称细菌生长的生物学后果和优势。
Annu Rev Microbiol. 2013;67:417-35. doi: 10.1146/annurev-micro-092412-155622. Epub 2013 Jun 26.
8
The art of choreographing asymmetric cell division.精心设计非对称细胞分裂。
Dev Cell. 2013 Jun 10;25(5):439-50. doi: 10.1016/j.devcel.2013.05.003.
9
The asymmetric segregation of damaged proteins is stem cell-type dependent.受损蛋白质的不对称分离依赖于干细胞类型。
J Cell Biol. 2013 May 13;201(4):523-30. doi: 10.1083/jcb.201207052. Epub 2013 May 6.
10
Substrate recognition in selective autophagy and the ubiquitin-proteasome system.选择性自噬和泛素-蛋白酶体系统中的底物识别
Biochim Biophys Acta. 2014 Jan;1843(1):163-81. doi: 10.1016/j.bbamcr.2013.03.019. Epub 2013 Mar 29.