4.5 Article

Calreticulin secures calcium-dependent nuclear pore competency required for cardiogenesis

Journal

JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY
Volume 92, Issue -, Pages 63-74

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.yjmcc.2016.01.022

Keywords

Calreticulin; Embryonic stem cells; Nuclear transport; Cardiac differentiation

Funding

  1. National Institutes of Health [HL85208, HL83439, HL07111]
  2. American Heart Association [14SDG20380322]
  3. Marriott Heart Disease Research Program
  4. Marriott Foundation
  5. Ted Nash Long Life Foundation
  6. Ralph Wilson Medical Research Foundation
  7. Asper Foundation
  8. Mayo Graduate School
  9. Mayo Clinic Clinician-Investigator Program
  10. Mayo Clinic FUTR Career Development Award
  11. Michael S. and Mary Sue Shannon Family
  12. Russ and Kathy VanCleve Foundation
  13. Leducq Foundation
  14. Florida Heart Research Institute
  15. Canadian Institute of Health Research [MOP-53050]

Ask authors/readers for more resources

Calreticulin deficiency causes myocardial developmental defects that culminate in an embryonic lethal phenotype. Recent studies have linked loss of this calcium binding chaperone to failure in myofibrillogenesis through an as yet undefined mechanism. The purpose of the present study was to identify cellular processes corrupted by calreticulin deficiency that precipitate dysregulation of cardiac myofibrillogenesis related to acquisition of cardiac phenotype. In an embryonic stem cell knockout model, calreticulin deficit (crt(-/-)) compromised nucleocytoplasmic transport of nuclear localization signal-dependent and independent pathways, disrupting nuclear import of the cardiac transcription factor MEF2C. The expression of nucleoporins and associated nuclear transport proteins in derived crt(-/-) cardiomyocytes revealed an abnormal nuclear pore complex (NPC) configuration. Altered protein content in crt(-/-) cells resulted in remodeled NPC architecture that caused decreased pore diameter and diminished probability of central channel occupancy versus wild type counterparts. Ionophore treatment of impaired calcium handling in crt(-/-) cells corrected nuclear pore microarchitecture and rescued nuclear import resulting in normalized myofibrillogenesis. Thus, calreticulin deficiency alters nuclear pore function and structure, impeding myofibrillogenesis in nascent cardiomyocytes through a calcium dependent mechanism. This essential role of calreticulin in nucleocytoplasmic communication competency ties its regulatory action with proficiency of cardiac myofibrillogenesis essential for proper cardiac development. (C) 2016 Elsevier Ltd. All rights reserved.

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