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      Citrullination of myofilament proteins in heart failure

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          Abstract

          Aims

          Citrullination, the post-translational conversion of arginine to citrulline by the enzyme family of peptidylarginine deiminases (PADs), is associated with several diseases, and specific citrullinated proteins have been shown to alter function while others act as auto-antigens. In this study, we identified citrullinated proteins in human myocardial samples, from healthy and heart failure patients, and determined several potential functional consequences. Further we investigated PAD isoform cell-specific expression in the heart.

          Methods and results

          A citrullination-targeted proteomic strategy using data-independent (SWATH) acquisition method was used to identify the modified cardiac proteins. Citrullinated-induced sarcomeric proteins were validated using two-dimensional gel electrophoresis and investigated using biochemical and functional assays. Myocardial PAD isoforms were confirmed by RT-PCR with PAD2 being the major isoform in myocytes. In total, 304 citrullinated sites were identified that map to 145 proteins among the three study groups: normal, ischaemia, and dilated cardiomyopathy. Citrullination of myosin (using HMM fragment) decreased its intrinsic ATPase activity and inhibited the acto-HMM-ATPase activity. Citrullinated TM resulted in stronger F-actin binding and inhibited the acto-HMM-ATPase activity. Citrullinated TnI did not alter the binding to F-actin or acto-HMM-ATPase activity. Overall, citrullination of sarcomeric proteins caused a decrease in Ca 2+ sensitivity in skinned cardiomyocytes, with no change in maximal calcium-activated force or hill coefficient.

          Conclusion

          Citrullination unique to the cardiac proteome was identified. Our data indicate important structural and functional alterations to the cardiac sarcomere and the contribution of protein citrullination to this process.

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          Author and article information

          Journal
          Cardiovasc Res
          Cardiovasc. Res
          cardiovascres
          cardiovascres
          Cardiovascular Research
          Oxford University Press
          0008-6363
          1755-3245
          01 November 2015
          25 June 2015
          01 November 2016
          : 108
          : 2
          : 232-242
          Affiliations
          [1 ] The Heart Institute and Department of Medicine, Cedars-Sinai Medical Center, Advanced Clinical BioSystems Research Institute , Advanced Health Science Building, 9229, Los Angeles, CA, USA
          [2 ] Bayview Proteomics Center, Division of Cardiology, Department of Medicine, Johns Hopkins University , Baltimore, MD, USA
          [3 ] Division of Rheumatology, Department of Medicine, Columbia University , New York, NY, USA
          [4 ] Division of Cardiology, Department of Medicine, The Johns Hopkins University Medical Institutions , Baltimore, MD, USA
          [5 ] Division of Rheumatology, Department of Medicine, Johns Hopkins University , Baltimore, MD, USA
          [6 ] Division of Rheumatology, Department of Medicine, Seoul National University Hospital , Seoul, Korea
          [7 ] Department of Pathology, Johns Hopkins University School of Medicine , Baltimore, MD, USA
          Author notes
          [* ]Corresponding author. Tel: +1 424 315 2383; fax: +1 310 423 3522, Email: Justyna.Fert-Bober@ 123456cshs.org
          Article
          PMC4614685 PMC4614685 4614685 cvv185
          10.1093/cvr/cvv185
          4614685
          26113265
          f88d4e26-2473-4746-ad7e-e93f61232c10
          Published on behalf of the European Society of Cardiology. All rights reserved. © The Author 2015. For permissions please email: journals.permissions@oup.com.
          History
          : 3 September 2014
          : 12 June 2015
          : 17 June 2015
          Funding
          Funded by: Johns Hopkins NHBLI Proteomic
          Award ID: NHLBI-HV-10-05(2)
          Award ID: HHSN268201000032C
          Funded by: National Institutes of Health http://dx.doi.org/10.13039/100000002
          Award ID: R21 HL112586-01
          Award ID: P01-HL077180
          Categories
          Original Articles
          Cardiac Biology and Remodelling
          Editor's choice
          Custom metadata
          Time for primary review: 35 days

          Peptidylarginine deiminases,Citrullination,Heart failure,Sarcomere,Myofilament

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