» Articles » PMID: 21884983

A Biotin Switch-based Proteomics Approach Identifies 14-3-3ζ As a Target of Sirt1 in the Metabolic Regulation of Caspase-2

Overview
Journal Mol Cell
Publisher Cell Press
Specialty Cell Biology
Date 2011 Sep 3
PMID 21884983
Citations 29
Authors
Affiliations
Soon will be listed here.
Abstract

While lysine acetylation in the nucleus is well characterized, comparatively little is known about its significance in cytoplasmic signaling. Here we show that inhibition of the Sirt1 deacetylase, which is primarily cytoplasmic in cancer cell lines, sensitizes these cells to caspase-2-dependent death. To identify relevant Sirt1 substrates, we developed a proteomics strategy, enabling the identification of a range of putative substrates, including 14-3-3ζ, a known direct regulator of caspase-2. We show here that inhibition of Sirtuin activity accelerates caspase activation and overrides caspase-2 suppression by nutrient abundance. Furthermore, 14-3-3ζ is acetylated prior to caspase activation, and supplementation of Xenopus egg extract with glucose-6-phosphate, which promotes caspase-2/14-3-3ζ binding, enhances 14-3-3ζ-directed Sirtuin activity. Conversely, inhibiting Sirtuin activity promotes14-3-3ζ dissociation from caspase-2 in both egg extract and human cultured cells. These data reveal a role for Sirt1 in modulating apoptotic sensitivity, in response to metabolic changes, by antagonizing 14-3-3ζ acetylation.

Citing Articles

Targeting enolase 1 reverses bortezomib resistance in multiple myeloma through YWHAZ/Parkin axis.

Gao X, Feng Q, Zhang Q, Zhang Y, Hu C, Zhang L J Biomed Sci. 2025; 32(1):9.

PMID: 39828712 PMC: 11744840. DOI: 10.1186/s12929-024-01101-x.


Human cytomegalovirus modulates mTORC1 to redirect mRNA translation within quiescently infected monocytes.

Miller M, Akter D, Mahmud J, Chan G J Virol. 2024; 98(2):e0188823.

PMID: 38289104 PMC: 10878035. DOI: 10.1128/jvi.01888-23.


Integrating Clinical Cancer and PTM Proteomics Data Identifies a Mechanism of ACK1 Kinase Activation.

Balasooriya E, Madhusanka D, Lopez-Palacios T, Eastmond R, Jayatunge D, Owen J Mol Cancer Res. 2023; 22(2):137-151.

PMID: 37847650 PMC: 10831333. DOI: 10.1158/1541-7786.MCR-23-0153.


Sirt1 Overexpression Inhibits Fibrous Scar Formation and Improves Functional Recovery After Cerebral Ischemic Injury Through the Deacetylation of 14-3-3ζ.

Chen Y, Huang J, Liu J, Zhu H, Li X, Wen J Mol Neurobiol. 2023; 60(8):4795-4810.

PMID: 37162725 DOI: 10.1007/s12035-023-03378-9.


The Integration of Proteome-Wide PTM Data with Protein Structural and Sequence Features Identifies Phosphorylations that Mediate 14-3-3 Interactions.

Egbert C, Warr L, Pennington K, Thornton M, Vaughan A, Ashworth S J Mol Biol. 2022; 435(2):167890.

PMID: 36402225 PMC: 10099770. DOI: 10.1016/j.jmb.2022.167890.


References
1.
Zhang Z, Yamashita H, Toyama T, Sugiura H, Omoto Y, Ando Y . HDAC6 expression is correlated with better survival in breast cancer. Clin Cancer Res. 2004; 10(20):6962-8. DOI: 10.1158/1078-0432.CCR-04-0455. View

2.
Imai S, Guarente L . Ten years of NAD-dependent SIR2 family deacetylases: implications for metabolic diseases. Trends Pharmacol Sci. 2010; 31(5):212-20. PMC: 3526941. DOI: 10.1016/j.tips.2010.02.003. View

3.
Chu F, Chou P, Zheng X, Mirkin B, Rebbaa A . Control of multidrug resistance gene mdr1 and cancer resistance to chemotherapy by the longevity gene sirt1. Cancer Res. 2005; 65(22):10183-7. DOI: 10.1158/0008-5472.CAN-05-2002. View

4.
Nutt L, Buchakjian M, Gan E, Darbandi R, Yoon S, Wu J . Metabolic control of oocyte apoptosis mediated by 14-3-3zeta-regulated dephosphorylation of caspase-2. Dev Cell. 2009; 16(6):856-66. PMC: 2698816. DOI: 10.1016/j.devcel.2009.04.005. View

5.
Cotelle V, Meek S, Provan F, Milne F, Morrice N, Mackintosh C . 14-3-3s regulate global cleavage of their diverse binding partners in sugar-starved Arabidopsis cells. EMBO J. 2000; 19(12):2869-76. PMC: 203364. DOI: 10.1093/emboj/19.12.2869. View