Characterization of the Interaction between the N-Terminal Extension of Human Cardiac Troponin I and Troponin C
- 6 March 2004
- journal article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 43 (13) , 4020-4027
- https://doi.org/10.1021/bi036128l
Abstract
The N-terminal extension of cardiac troponin I (TnI) is bisphosphorylated by protein kinase A in response to beta-adrenergic stimulation. How this signal is transmitted between TnI and troponin C (TnC), resulting in accelerated Ca(2+) release, remains unclear. We recently proposed that the unphosphorylated extension interacts with the N-terminal domain of TnC stabilizing Ca(2+) binding and that phosphorylation prevents this interaction. We now use (1)H NMR to study the interactions between several N-terminal fragments of TnI, residues 1-18 (I1-18), residues 1-29 (I1-29), and residues 1-64 (I1-64), and TnC. The shorter fragments provide unambiguous information on the N-terminal regions of TnI that interact with TnC: I1-18 does not bind to TnC whereas the C-terminal region of unphosphorylated I1-29 does bind. Bisphosphorylation greatly weakens this interaction. I1-64 contains the phosphorylatable N-terminal extension and a region that anchors I1-64 to the C-terminal domain of TnC. I1-64 binding to TnC influences NMR signals arising from both domains of TnC, providing evidence that the N-terminal extension of TnI interacts with the N-terminal domain of TnC. TnC binding to I1-64 broadens NMR signals from the side chains of residues immediately C-terminal to the phosphorylation sites. Binding of TnC to bisphosphorylated I1-64 does not broaden these NMR signals to the same extent. Circular dichroism spectra of I1-64 indicate that bisphosphorylation does not produce major secondary structure changes in I1-64. We conclude that bisphosphorylation of cardiac TnI elicits its effects by weakening the interaction between the region of TnI immediately C-terminal to the phosphorylation sites and TnC either directly, due to electrostatic repulsion, or via localized conformational changes.Keywords
This publication has 16 references indexed in Scilit:
- Structure of the core domain of human cardiac troponin in the Ca2+-saturated formNature, 2003
- The Importance of the Carboxyl-terminal Domain of Cardiac Troponin C in Ca2+-sensitive Muscle RegulationJournal of Biological Chemistry, 2000
- The Ordered Phosphorylation of Cardiac Troponin I by the cAMP‐Dependent Protein Kinase Structural Consequences and Functional ImplicationsEuropean Journal of Biochemistry, 1997
- Reconstitution of skinned cardiac fibres with human recombinant cardiac troponin‐I mutants and troponin‐CFEBS Letters, 1995
- The Effects of Phosphorylation of Cardiac Troponin-I on Its Interactions with Actin and Cardiac Troponin-CEuropean Journal of Biochemistry, 1995
- Overexpression of Human Cardiac Troponin‐I and Troponin‐C in Escherichia coli and Their Purification and CharacterisationEuropean Journal of Biochemistry, 1994
- Time-resolved tryptophan emission study of cardiac troponin IBiophysical Journal, 1992
- A common motif of two adjacent phosphoserines in bovine, rabbit and human cardiac troponin IFEBS Letters, 1990
- 1H‐NMR study of mobility and conformational constraints within the proline‐rich N‐terminal of the LC1 alkali light chain of skeletal myosinEuropean Journal of Biochemistry, 1986
- The relationship between biological activity and primary structure of troponin I from white skeletal muscle of the rabbitBiochemical Journal, 1976