Modulation of mitochondrial proteome and improved mitochondrial function by biventricular pacing of dyssynchronous failing hearts

التفاصيل البيبلوغرافية
العنوان: Modulation of mitochondrial proteome and improved mitochondrial function by biventricular pacing of dyssynchronous failing hearts
المؤلفون: Lesley A. Kane, Nina Kaludercic, Khalid Chakir, D. Samantapudi, Steven T. Elliott, Yurong Guo, Gordon F. Tomaselli, David A. Kass, Giulio Agnetti, Jennifer E. Van Eyk, Nazareno Paolocci
المساهمون: Agnetti G, Kaludercic N, Kane LA, Elliott ST, Guo Y, Chakir K, Samantapudi D, Paolocci N, Tomaselli GF, Kass DA, Van Eyk JE.
سنة النشر: 2010
مصطلحات موضوعية: medicine.medical_specialty, Proteome, Heart Ventricles, medicine.medical_treatment, Citric Acid Cycle, Cardiac resynchronization therapy, Mitochondrion, Biology, Mitochondria, Heart, Article, Mitochondrial Proteins, Dogs, Internal medicine, Genetics, medicine, Animals, Electrophoresis, Gel, Two-Dimensional, Amino Acid Sequence, Ventricular dyssynchrony, Mitochondrial protein, Genetics (clinical), Cardiac Pacing, Artificial, medicine.disease, Mitochondrial proteome, ATP Synthetase Complexes, Endocrinology, HEART FAILURE, Heart failure, MITOCONDRIA, Cardiology, PROTEOMICS, Cardiology and Cardiovascular Medicine, Protein Processing, Post-Translational, CARDIAC RESYNCHRONYZATION THERAPY
الوصف: Background— Cardiac resynchronization therapy (CRT) improves chamber mechanoenergetics and morbidity and mortality of patients manifesting heart failure with ventricular dyssynchrony; however, little is known about the molecular changes underlying CRT benefits. We hypothesized that mitochondria may play an important role because of their involvement in energy production. Methods and Results— Mitochondria isolated from the left ventricle in a canine model of dyssynchronous or resynchronized (CRT) heart failure were analyzed by a classical, gel-based, proteomic approach. Two-dimensional gel electrophoresis revealed that 31 mitochondrial proteins where changed when controlling the false discovery rate at 30%. Key enzymes in anaplerotic pathways, such as pyruvate carboxylation and branched-chain amino acid oxidation, were increased. These concerted changes, along with others, suggested that CRT may increase the pool of Krebs cycle intermediates and fuel oxidative phosphorylation. Nearly 50% of observed changes pertained to subunits of the respiratory chain. ATP synthase-β subunit of complex V was less degraded, and its phosphorylation modulated by CRT was associated with increased formation (2-fold, P =0.004) and specific activity (+20%, P =0.05) of the mature complex. The importance of these modifications was supported by coordinated changes in mitochondrial chaperones and proteases. CRT increased the mitochondrial respiratory control index with tightened coupling when isolated mitochondria were reexposed to substrates for both complex I (glutamate and malate) and complex II (succinate), an effect likely related to ATP synthase subunit modifications and complex quantity and activity. Conclusions— CRT potently affects both the mitochondrial proteome and the performance associated with improved cardiac function.
وصف الملف: STAMPA
اللغة: English
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::f44565c0bb414d78e8b74cfecb97c058Test
http://hdl.handle.net/11585/100419Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....f44565c0bb414d78e8b74cfecb97c058
قاعدة البيانات: OpenAIRE