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Removal of the cardiac myosin regulatory light chain increases isometric force production
Author(s) -
Pant Kiran,
Watt James,
Greenberg Michael,
Jones Michelle,
Szczesna-Cordary Danuta,
Moore Jeffrey R.
Publication year - 2009
Publication title -
the faseb journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.709
H-Index - 277
eISSN - 1530-6860
pISSN - 0892-6638
DOI - 10.1096/fj.08-126672
Subject(s) - myosin , isometric exercise , biophysics , actin , myosin light chain kinase , myosin head , chemistry , meromyosin , immunoglobulin light chain , protein filament , biology , biochemistry , physiology , antibody , immunology
The myosin neck, which is supported by the interactions between light chains and the underlying α‐helical heavy chain, is thought to act as a lever arm to amplify movements originating in the globular motor domain. Here, we studied the role of the cardiac myosin regulatory light chains (RLCs) in the capacity of myosin to produce force using a novel optical‐trapbased isometric force in vitro motility assay. We measured the isometric force and actin filament velocity for native porcine cardiac (PC) myosin, RLC‐depleted PC (PC depl ) myosin, and PC myosin reconstituted with recombinant bacterially expressed human cardiac RLC (PC recon ). RLC depletion reduced unloaded actin filament velocity by 58% and enhanced the myosin‐based isometric force ~2‐fold. No significant change between PC and PC depl preparations was observed in the maximal rate of actin‐activated myosin ATPase activity. Reconstitution of PC depl myosin with human RLC partially restored the velocity and force levels to near untreated values. The reduction in unloaded velocity after RLC extraction is consistent with the myosin neck acting as a lever, while the enhancement in isometric force can be directly related to enhancement of unitary force. The force data are consistent with a model in which the neck region behaves as a cantilevered beam.—Pant, K., Watt, J., Greenberg, M., Jones, M., Szczesna‐Cordary, D., Moore, J. R. Removal of the cardiac myosin regulatory light chain increases isometric force production. FASEB J . 23, 3571–3580 (2009). www.fasebj.org