» Articles » PMID: 16500585

Proteomic Analysis Reveals Significant Alternations of Cardiac Small Heat Shock Protein Expression in Congestive Heart Failure

Overview
Journal J Card Fail
Date 2006 Feb 28
PMID 16500585
Citations 33
Authors
Affiliations
Soon will be listed here.
Abstract

Background: Because congestive heart failure (CHF) is a complex syndrome with many different underlying mechanisms of worsening of heart function, it is important to recognize the global alternations in protein expression associated with the processes of CHF.

Methods And Results: The purpose of our study was to use a proteomic approach to investigate global alternations in protein expression in tachycardia induced CHF dogs. We compared the 2-dimensional electrophoresis protein patterns of left ventricular samples from the normal with those from failing myocardium. Differentially expressed cardiac proteins showed approximately 500 cardiac protein spots. A total of 20 spots (14 increased, 6 decreased) was altered in CHF, whereas the more distinguishably increased spots in CHF were identified by using mass spectrometry as alpha B crystallin, heat shock protein (HSP) 27, and HSP20, which maintain both the morphologic and functional integrity of the cardiomyocytes and increase tolerance against various types of stress. Because phosphorylation is one of the most important posttranslational modifications, we evaluated whether or not the overexpressed small HSPs were phosphorylated in CHF. Phosphoprotein staining and Western blotting demonstrated that the phosphorylation of alpha B crystallin at serine (Ser)-59 site and of HSP27 at both Ser-78 and Ser-82 sites increased in CHF.

Conclusion: Proteomics studies can provide new insights into molecular mechanisms in CHF and phosphorylated small HSPs may be involved in preventing cardiac dysfunction.

Citing Articles

Transcriptome analysis of a dog model of congestive heart failure shows that collagen-related 2-oxoglutarate-dependent dioxygenases contribute to heart failure.

Isono T, Matsumoto T, Suzaki M, Kubota S, Kageyama S, Kawauchi A Sci Rep. 2022; 12(1):22569.

PMID: 36581661 PMC: 9800379. DOI: 10.1038/s41598-022-26717-7.


De Novo Missense Mutations in and Causing Severe Infantile Cardiomyopathy Affect Myofilament Structure and Function and Are Modulated by Troponin Targeting Agents.

Hassoun R, Budde H, Mannherz H, Lodi M, Fujita-Becker S, Laser K Int J Mol Sci. 2021; 22(17).

PMID: 34502534 PMC: 8431798. DOI: 10.3390/ijms22179625.


Heat Shock Proteins: Connectors between Heart and Kidney.

Junho C, Azevedo C, da Cunha R, de Yurre A, Medei E, Stinghen A Cells. 2021; 10(8).

PMID: 34440708 PMC: 8391307. DOI: 10.3390/cells10081939.


Heat Shock Proteins: Potential Modulators and Candidate Biomarkers of Peripartum Cardiomyopathy.

Chakafana G, Spracklen T, Kamuli S, Zininga T, Shonhai A, Ntusi N Front Cardiovasc Med. 2021; 8:633013.

PMID: 34222357 PMC: 8241919. DOI: 10.3389/fcvm.2021.633013.


The Cardioprotective PKA-Mediated Hsp20 Phosphorylation Modulates Protein Associations Regulating Cytoskeletal Dynamics.

Vafiadaki E, Arvanitis D, Eliopoulos A, Kranias E, Sanoudou D Int J Mol Sci. 2020; 21(24).

PMID: 33339131 PMC: 7765622. DOI: 10.3390/ijms21249572.