4.7 Article

Molecular Characterisation of Titin N2A and Its Binding of CARP Reveals a Titin/Actin Cross-linking Mechanism

Journal

JOURNAL OF MOLECULAR BIOLOGY
Volume 433, Issue 9, Pages -

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jmb.2021.166901

Keywords

nuclear magnetic resonance; hydrogen-deuterium exchange mass spectrometry; muscle stress response; actin cytoskeleton; sarcomere mechanics

Funding

  1. Leducq Foundation [TNE-13CVD04]
  2. NIH [HL128457, P30AR061303, S10-OD021724, S10-OD016234, NS047101]
  3. American Heart Association [17UFEL33520004]
  4. Swedish Hjart-Lungfonden [20180199]
  5. Wallenberg Foundation
  6. Swedish Research Council [2016/82]
  7. Swedish Society for Medical Research [S150086]
  8. ERC [804418]
  9. BBSRC [BB/M00676X/1]
  10. EU [656636, 753054]
  11. AFMTe le + [21436]
  12. EU-RISE-H2020 Muscle relief
  13. European Research Council (ERC) [804418] Funding Source: European Research Council (ERC)
  14. BBSRC [BB/M00676X/1] Funding Source: UKRI
  15. Marie Curie Actions (MSCA) [753054, 656636] Funding Source: Marie Curie Actions (MSCA)

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The study elucidated the binding mode of CARP to titin and its role in stress response of muscle, showing that CARP increases the stiffness of myofibrils, thereby preserving muscle mechanical performance under mechanical overload.
Striated muscle responds to mechanical overload by rapidly up-regulating the expression of the cardiac ankyrin repeat protein, CARP, which then targets the sarcomere by binding to titin N2A in the I-band region. To date, the role of this interaction in the stress response of muscle remains poorly understood. Here, we characterise the molecular structure of the CARP-receptor site in titin (UN2A) and its binding of CARP. We find that titin UN2A contains a central three-helix bundle fold (ca 45 residues in length) that is joined to N- and C-terminal flanking immunoglobulin domains by long, flexible linkers with partial helical content. CARP binds titin by engaging an a-hairpin in the three-helix fold of UN2A, the C-terminal linker sequence, and the BC loop in Ig81, which jointly form a broad binding interface. Mutagenesis showed that the CARP/N2A association withstands sequence variations in titin N2A and we use this information to evaluate 85 human single nucleotide variants. In addition, actin co-sedimentation, co-transfection in C2C12 cells, proteomics on heart lysates, and the mechanical response of CARP-soaked myofibrils imply that CARP induces the cross-linking of titin and actin myofilaments, thereby increasing myofibril stiffness. We conclude that CARP acts as a regulator of force output in the sarcomere that preserves muscle mechanical performance upon overload stress. Crown Copyright (C) 2021 Published by Elsevier Ltd. All rights reserved.

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