8G4L

Cryo-EM structure of the human cardiac myosin filament

  • Classification: CONTRACTILE PROTEIN
  • Organism(s): Homo sapiens
  • Mutation(s): No 

  • Deposited: 2023-02-10 Released: 2023-11-01 
  • Deposition Author(s): Dutta, D., Nguyen, V., Padron, R., Craig, R.
  • Funding Organization(s): National Institutes of Health/National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIH/NIAMS), National Institutes of Health/National Heart, Lung, and Blood Institute (NIH/NHLBI)

Experimental Data Snapshot

  • Method: ELECTRON MICROSCOPY
  • Resolution: 6.40 Å
  • Aggregation State: FILAMENT 
  • Reconstruction Method: SINGLE PARTICLE 

wwPDB Validation   3D Report Full Report


This is version 1.2 of the entry. See complete history


Literature

Cryo-EM structure of the human cardiac myosin filament.

Dutta, D.Nguyen, V.Campbell, K.S.Padron, R.Craig, R.

(2023) Nature 623: 853-862

  • DOI: https://doi.org/10.1038/s41586-023-06691-4
  • Primary Citation of Related Structures:  
    8G4L

  • PubMed Abstract: 

    Pumping of the heart is powered by filaments of the motor protein myosin that pull on actin filaments to generate cardiac contraction. In addition to myosin, the filaments contain cardiac myosin-binding protein C (cMyBP-C), which modulates contractility in response to physiological stimuli, and titin, which functions as a scaffold for filament assembly 1 . Myosin, cMyBP-C and titin are all subject to mutation, which can lead to heart failure. Despite the central importance of cardiac myosin filaments to life, their molecular structure has remained a mystery for 60 years 2 . Here we solve the structure of the main (cMyBP-C-containing) region of the human cardiac filament using cryo-electron microscopy. The reconstruction reveals the architecture of titin and cMyBP-C and shows how myosin's motor domains (heads) form three different types of motif (providing functional flexibility), which interact with each other and with titin and cMyBP-C to dictate filament architecture and function. The packing of myosin tails in the filament backbone is also resolved. The structure suggests how cMyBP-C helps to generate the cardiac super-relaxed state 3 ; how titin and cMyBP-C may contribute to length-dependent activation 4 ; and how mutations in myosin and cMyBP-C might disturb interactions, causing disease 5,6 . The reconstruction resolves past uncertainties and integrates previous data on cardiac muscle structure and function. It provides a new paradigm for interpreting structural, physiological and clinical observations, and for the design of potential therapeutic drugs.


  • Organizational Affiliation

    Division of Cell Biology and Imaging, Department of Radiology, University of Massachusetts Chan Medical School, Worcester, MA, USA. debabrata.dutta@umassmed.edu.


Macromolecules
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Entity ID: 1
MoleculeChains Sequence LengthOrganismDetailsImage
Myosin-71,935Homo sapiensMutation(s): 0 
UniProt & NIH Common Fund Data Resources
Find proteins for P12883 (Homo sapiens)
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PHAROS:  P12883
GTEx:  ENSG00000092054 
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UniProt GroupP12883
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  • Reference Sequence
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Entity ID: 2
MoleculeChains Sequence LengthOrganismDetailsImage
Myosin light chain 3195Homo sapiensMutation(s): 0 
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Find proteins for P08590 (Homo sapiens)
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PHAROS:  P08590
GTEx:  ENSG00000160808 
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UniProt GroupP08590
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Entity ID: 3
MoleculeChains Sequence LengthOrganismDetailsImage
Myosin regulatory light chain 2, ventricular/cardiac muscle isoform166Homo sapiensMutation(s): 0 
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Find proteins for P10916 (Homo sapiens)
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PHAROS:  P10916
GTEx:  ENSG00000111245 
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UniProt GroupP10916
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  • Reference Sequence
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Entity ID: 4
MoleculeChains Sequence LengthOrganismDetailsImage
Titin1,084Homo sapiensMutation(s): 0 
EC: 2.7.11.1
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Find proteins for Q8WZ42 (Homo sapiens)
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GTEx:  ENSG00000155657 
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UniProt GroupQ8WZ42
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Entity ID: 5
MoleculeChains Sequence LengthOrganismDetailsImage
Myosin-binding protein C, cardiac-typeBC [auth ao],
MA [auth bo],
QD [auth o]
1,274Homo sapiensMutation(s): 0 
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Find proteins for Q14896 (Homo sapiens)
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PHAROS:  Q14896
GTEx:  ENSG00000134571 
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UniProt GroupQ14896
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Experimental Data & Validation

Experimental Data

  • Method: ELECTRON MICROSCOPY
  • Resolution: 6.40 Å
  • Aggregation State: FILAMENT 
  • Reconstruction Method: SINGLE PARTICLE 
EM Software:
TaskSoftware PackageVersion
MODEL REFINEMENTPHENIX1.19.2

Structure Validation

View Full Validation Report



Entry History & Funding Information

Deposition Data


Funding OrganizationLocationGrant Number
National Institutes of Health/National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIH/NIAMS)United StatesAR072036
National Institutes of Health/National Heart, Lung, and Blood Institute (NIH/NHLBI)United StatesHL139883
National Institutes of Health/National Heart, Lung, and Blood Institute (NIH/NHLBI)United StatesHL164560
National Institutes of Health/National Institute of Arthritis and Musculoskeletal and Skin Diseases (NIH/NIAMS)United StatesAR081941

Revision History  (Full details and data files)

  • Version 1.0: 2023-11-01
    Type: Initial release
  • Version 1.1: 2023-11-15
    Changes: Database references
  • Version 1.2: 2023-12-06
    Changes: Database references