Abstract

Strict regulation of actin thin filament length is critical for the proper functioning of sarcomeres, the basic contractile units of myofibrils. It has been hypothesized that a molecular template works with actin filament capping proteins to regulate thin filament lengths. Nebulin is a giant protein ( approximately 800 kDa) in skeletal muscle that has been proposed to act as a molecular ruler to specify the thin filament lengths characteristic of different muscles. Tropomodulin (Tmod), a pointed end thin filament capping protein, has been shown to maintain the final length of the thin filaments. Immunofluorescence microscopy revealed that the N-terminal end of nebulin colocalizes with Tmod at the pointed ends of thin filaments. The three extreme N-terminal modules (M1-M2-M3) of nebulin bind specifically to Tmod as demonstrated by blot overlay, bead binding, and solid phase binding assays. These data demonstrate that the N terminus of the nebulin molecule extends to the extreme end of the thin filament and also establish a novel biochemical function for this end. Two Tmod isoforms, erythrocyte Tmod (E-Tmod), expressed in embryonic and slow skeletal muscle, and skeletal Tmod (Sk-Tmod), expressed late in fast skeletal muscle differentiation, bind on overlapping sites to recombinant N-terminal nebulin fragments. Sk-Tmod binds nebulin with higher affinity than E-Tmod does, suggesting that the Tmod/nebulin interaction exhibits isoform specificity. These data provide evidence that Tmod and nebulin may work together as a linked mechanism to control thin filament lengths in skeletal muscle.

Highlights

  • Strict regulation of actin thin filament length is critical for the proper functioning of sarcomeres, the basic contractile units of myofibrils

  • Using the saturation absorbance obtained by nonlinear regression analysis, as well as the values obtained for c and F in the previous series of experiments, we calculated the Ka values to be 0.227 ϫ 109 liters/mol for skeletal Tmod (Sk-Tmod) binding to M1-M2-M3 and 0.067 ϫ 109 liters/mol for erythrocyte Tmod (E-Tmod) binding to M1-M2-M3

  • The length distributions of the thin filaments in skeletal muscle are strikingly narrow and uniform, indicating that an intricate regulatory mechanism exists for precisely controlling tions of biotinlyated Sk-Tmod (C) or E-Tmod (D) for 4 h

Read more

Summary

The abbreviations used are

Tropomodulin; Sk-Tmod, skeletal Tmod; E-Tmod, erythrocyte Tmod; pNPP, p-nitrophenyl phosphate; ELISA, enzyme-linked immunosorbent assay; dcELISA, direct calibration ELISA. Tends to the extreme end of the thin filament and establish a novel biochemical function for this end. This study provides direct evidence to support the proposed model that the interaction of the capping protein, Tmod, with the molecular ruler, nebulin, may be pivotal for regulating actin filament assembly and length in skeletal muscle

EXPERIMENTAL PROCEDURES
RESULTS
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