Abstract

To investigate the role of the central helix of skeletal muscle troponin C (TnC), five deletion mutants (Dobrowolski, Z., Xu, G.Q., and Hitchcock-DeGregori, S.E. (1991) J. Biol. Chem. 266, 5703-5710) of chicken TnC in the D/E linker region (K87EDAKGKSEEE97), dEDA, dKG, dKGK, dSEEE, and dKED-AKGK, were assayed for their ability to regulate muscle contraction by testing their effectiveness in restoring force and Ca2+ regulation to TnC-depleted rabbit skinned skeletal muscle fibers. By comparison with rabbit skeletal TnC, wild-type TnC, and chicken TnC, all mutants except dKG equally restored force development and Ca2+ regulation to TnC-depleted skinned muscle fibers. In contrast, approximately 4 times more dKG than rabbit skeletal TnC was required to reach 50% force restoration. Also, the pCa50 for dKG activation of force was significantly decreased. Thus, most of the TnC mutants that we studied did not have significantly altered biological activity in the skinned fiber assay. However, the 2-residue deletion in the central helix (dKG) significantly affected TnC activity. This deletion would be expected to produce a 160 degree rotation in the alpha-helix versus 60 degrees for dKGK and dEDA, 40 degrees in dSEEE, and 20 degrees in dKEDAKGK. Therefore, the change in orientation of the two Ca2(+)-binding domains appears to be a major parameter affecting TnC activity. The shift in the Ca2+ dependence in force activation may result from the inability of the Ca2(+)-specific domain to properly interact with its binding site on troponin I, an interaction which is known to increase the affinity of TnC for Ca2+ (Potter, J.D., and Gergely, J. (1975) J. Biol. Chem. 250, 4628-4633). In addition, the length of the central helix of TnC, Gly92, and the negatively charged cluster, EEE, appear not to be crucial for TnC activity.

Highlights

  • troponin C (TnC) in the D/E linker region (KS7EDAKGKSEEEQ7)o, f the muscle (Adelstein and Eisenberg, 1980; Eisenberg and dEDA, dKG, dKGK, dSEEE, and dKED-AKGK, were Hill, 1985;Zot and Potter,1987)

  • The conformational changes assayed for their ability to regulmatuescle contraction by testing their effectiveness in restoring force and Ca2+regulation toTnC-depleted rabbit skinned skeletal muscle fibers

  • The shift in tChae2+ dependence in force activation may result from the inability of the Ca2+-specificdomain to properlyinteract with its binding site on troponin I, an interaction which is known to increase the affiniotyf TnC for Ca2+

Read more

Summary

Effect of Mutationsin Central Helix of Troponin C

The force/pCa relationship was determined by varying the pCa between 8.0 and 4.0. Force was measured by attaching thefunctionally skinned musclefibers to aforce transducer using stainlesssteel clamps (Guth and Potter, 1987).

RESULTS
MATERIALS ANDMETHODS
WTnC dKGK dKG dSEEE dDEA dKEDAKGK
DISCUSSION
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call