Proteomic Analysis of Hearts from Akita Mice Suggests That Increases in Soluble Epoxide Hydrolase and Antioxidative Programming Are Key Changes in Early Stages of Diabetic Cardiomyopathy

被引:27
作者
Dewey, Shannamar [1 ]
Lai, Xianyin [3 ]
Witzmann, Frank A. [3 ]
Sohal, Mandeep [1 ]
Gomes, Aldrin V. [1 ,2 ]
机构
[1] Univ Calif Davis, Dept Neurobiol Physiol & Behav, Davis, CA 95616 USA
[2] Univ Calif Davis, Dept Physiol & Membrane Biol, Davis, CA 95616 USA
[3] Indiana Univ Sch Med, Dept Cellular & Integrat Physiol, Indianapolis, IN 46202 USA
关键词
diabetes mellitus (DM); diabetic cardiomyopathy (DC); heart; mass spectrometry (MS); murine; DIASTOLIC DYSFUNCTION; GLUCOSE-HOMEOSTASIS; CARDIAC EFFICIENCY; STATISTICAL-MODEL; BINDING-PROTEIN; ALPHA; INHIBITION; IDENTIFICATION; CLONING; DISEASE;
D O I
10.1021/pr4004739
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Cardiovascular disease is the leading cause of diabetic morbidity with more than 10% of type 1 diabetes mellitus (T1DM) patients dying before they are 40 years old. This study utilized Akita mice, a murine model with T1DM progression analogous to that of humans. Diabetic cardiomyopathy in Akita mice presents as cardiac atrophy and diastolic impairment at 3 months of age, but we observed cardiac atrophy in hearts from recently diabetic mice (S weeks old). Hearts from 5 week old mice were analyzed with a rigorous label-free quantitative proteomic approach to identify proteins that may play a critical role in the early pathophysiology of diabetic cardiomyopathy. Eleven proteins were differentially expressed in diabetic hearts: products of GANC, PLEKHN1, COL1A1, GSTK1, ATP1A3, RAP1A, ACADS, EEF1A1, HRC, EPHX2, and PKP2 (gene names). These proteins are active in cellular defense, metabolism, insulin signaling, and calcium handling. Further analysis of Akita hearts using biochemical assays showed that the cellular defenses against oxidative stress were increased, including antioxidant capacity (2-3-fold) and glutathione levels (20%). Immunoblots of five and twelve week old Akita heart homogenates showed 30% and 145% increases in expression of soluble epoxide hydrolase (sEH (gene name EPHX2)), respectively, and an approximate 100% increase in sEH was seen in gastrocnemius tissue of 12 week old Akita mice. In contrast, 12 week old Akita livers showed no change in sEH expression. Our results suggest that increases in sEH and antioxidative programming are key factors in the development of type 1 diabetic cardiomyopathy in Akita mice and reveal several other proteins whose expression may be important in this complex pathophysiology.
引用
收藏
页码:3920 / 3933
页数:14
相关论文
共 66 条
[1]   Proteome changes in the myocardium of experimental chronic diabetes and hypertension Role of PPARα in the associated hypertrophy [J].
Ares-Carrasco, S. ;
Picatoste, B. ;
Camafeita, E. ;
Carrasco-Navarro, S. ;
Zubiri, I. ;
Ortiz, A. ;
Egido, J. ;
Lopez, J. A. ;
Tunon, J. ;
Lorenzo, O. .
JOURNAL OF PROTEOMICS, 2012, 75 (06) :1816-1829
[2]   Proteomic alterations of distinct mitochondrial subpopulations in the type 1 diabetic heart: contribution of protein import dysfunction [J].
Baseler, Walter A. ;
Dabkowski, Erinne R. ;
Williamson, Courtney L. ;
Croston, Tara L. ;
Thapa, Dharendra ;
Powell, Matthew J. ;
Razunguzwa, Trust T. ;
Hollander, John M. .
AMERICAN JOURNAL OF PHYSIOLOGY-REGULATORY INTEGRATIVE AND COMPARATIVE PHYSIOLOGY, 2011, 300 (02) :R186-R200
[3]   Type 1 diabetic cardiomyopathy in the Akita (Ins2WT/C96Y) mouse model is characterized by lipotoxicity and diastolic dysfunction with preserved systolic function [J].
Basu, Ratnadeep ;
Oudit, Gavin Y. ;
Wang, Xiuhua ;
Zhang, Liyan ;
Ussher, John R. ;
Lopaschuk, Gary D. ;
Kassiri, Zamaneh .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2009, 297 (06) :H2096-H2108
[4]  
Batchu SN, 2012, CAN J PHYSIOL PHARM, V90, P811, DOI [10.1139/Y2012-082, 10.1139/y2012-082]
[5]   A critical role for eukaryotic elongation factor 1A-1 in lipotoxic cell death [J].
Borradaile, NM ;
Buhman, KK ;
Listenberger, LL ;
Magee, CJ ;
Morimoto, ETA ;
Ory, DS ;
Schaffer, JE .
MOLECULAR BIOLOGY OF THE CELL, 2006, 17 (02) :770-778
[6]   Diabetic cardiomyopathy, causes and effects [J].
Boudina, Sihem ;
Abel, Evan Dale .
REVIEWS IN ENDOCRINE & METABOLIC DISORDERS, 2010, 11 (01) :31-39
[7]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3
[8]   Reduced cardiac efficiency and altered substrate metabolism precedes the onset of hyperglycemia and contractile dysfunction in two mouse models of insulin resistance and obesity [J].
Buchanan, J ;
Mazumder, PK ;
Hu, P ;
Chakrabarti, G ;
Roberts, MW ;
Yun, UJ ;
Cooksey, RC ;
Litwin, SE ;
Abel, ED .
ENDOCRINOLOGY, 2005, 146 (12) :5341-5349
[9]   Genetic loss of insulin receptors worsens cardiac efficiency in diabetes [J].
Bugger, Heiko ;
Riehle, Christian ;
Jaishy, Bharat ;
Wende, Adam R. ;
Tuinei, Joseph ;
Chen, Dong ;
Soto, Jamie ;
Pires, Karla M. ;
Boudina, Sihem ;
Theobald, Heather A. ;
Luptak, Ivan ;
Wayment, Benjamin ;
Wang, Xiaohui ;
Litwin, Sheldon E. ;
Weimer, Bart C. ;
Abel, E. Dale .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2012, 52 (05) :1019-1026
[10]   Tissue-Specific Remodeling of the Mitochondrial Proteome in Type 1 Diabetic Akita Mice [J].
Bugger, Heiko ;
Chen, Dong ;
Riehle, Christian ;
Soto, Jamie ;
Theobald, Heather A. ;
Hu, Xiao X. ;
Ganesan, Balasubramanian ;
Weimer, Bart C. ;
Abel, E. Dale .
DIABETES, 2009, 58 (09) :1986-1997