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King's College London

Orientation of the Cardiac Myosin Regulatory Light Chain Determined by Polarized Fluorescence

Abstract

dc:description.abstract

The regulatory light chain (RLC) of myosin is a component of the lever arm of the<br/>myosin motor in muscle thick filaments. Phosphorylation of RLC by myosin light<br/>chain kinase (MLCK) modulates the force and speed of muscle contraction, but the mechanisms of RLC‐mediated regulation in striated muscles are less well<br/>understood than those of Ca2+‐dependent regulation via troponin in the thin<br/>filament.<br/>To help elucidate the role of RLC in muscle regulation, its orientation in the native<br/>environment of cardiac muscle cells was measured. Pairs of cysteine residues were genetically introduced into the N‐ and C‐terminal lobe of the human cardiac RLC.<br/>Each pair of cysteines was crosslinked with a bifunctional‐rhodamine (BSR). The<br/>pure BSR‐RLC conjugates were exchanged into demembranated trabeculae from rat ventricle, and the orientation of the BSR fluorescence dipole determined by<br/>polarized fluorescence.<br/>The orientations of the N‐lobe were similar to those determined from chicken<br/>gizzard RLC probes exchanged into skeletal muscle fibers indicating a conserved<br/>domain orientation. The orientation of the RLC C ‐ lobe was similar in relaxation,<br/>active isometric contraction and rigor, suggesting that either the orientation of the<br/>RLC is relatively insensitive to strong binding of myosin heads to actin, or that only a small fraction of myosin heads are strongly bound to the thin filament in both<br/>active isometric contraction and rigor. Bending between the two RLC lobes occurs<br/>in ‐ situ and may have a functional significance in cardiac muscle contraction and<br/>regulation.<br/>Expressed and purified catalytic subunit of human cardiac MLCK efficiently mono ‐<br/>phosphorylates cardiac RLC on serine 15 in a calcium/calmodulin dependent<br/>manner. Exchange of in ‐ vitro phosphorylated BSR‐RLCs into demembranated<br/>trabeculae to replace 10‐15% of native RLC showed that the orientation of<br/>phosphorylated RLC C ‐ lobe is similar to that of unphosphorylated RLCs.

Degree

thesis:*
Name dc:type.qualificationname
Doctor of Philosophy
Level dc:type.qualificationlevel
Doctoral Thesis
Grantor dc:publisher.institution
King's College London
Year dc:date.issued
2012

Author and committee

dc:creator, dc:contributor.*
Author dc:creator
  • Kampourakis, Thomas
Advisors dc:contributor.advisor
  • Irving, Malcolm
  • Gautel, Mathias Sebastian

Rights

Language dc:language
eng

Identifiers

dc:identifier.*
Identifier
oai:kclpure.kcl.ac.uk:studenttheses/f04760ad-8fc6-4926-b3c7-9c2a1bab7799
OAI identifier oai:identifier
oai:kclpure.kcl.ac.uk:studenttheses/f04760ad-8fc6-4926-b3c7-9c2a1bab7799

Chain of custody

source
Harvested from
King's College London
Base URL
kclpure.kcl.ac.uk/ws/oai
Last updated
2026-07-24
Source record
OAI-PMH GetRecord
related terms
citation

Kampourakis, Thomas. Orientation of the Cardiac Myosin Regulatory Light Chain Determined by Polarized Fluorescence. Doctoral Thesis thesis, King's College London, 2012. https://kclpure.kcl.ac.uk/portal/en/studentTheses/f04760ad-8fc6-4926-b3c7-9c2a1bab7799