The distinctive mechanical and structural signatures of residual force enhancement in myofibers.

Hessel, Anthony L; Kuehn, Michel N; Palmer, Bradley M; Nissen, Devin; Mishra, Dhruv; Joumaa, Venus; Freundt, Johanna K; Ma, Weikang et al. · Proc Natl Acad Sci U S A · 2024

basic_science · Level V

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Abstract

In muscle, titin proteins connect myofilaments together and are thought to be critical for contraction, especially during residual force enhancement (RFE) when steady-state force is elevated after an active stretch. We investigated titin's function during contraction using small-angle X-ray diffraction to track structural changes before and after 50% titin cleavage and in the RFE-deficient, <i>mdm</i> titin mutant. We report that the RFE state is structurally distinct from pure isometric contractions, with increased thick filament strain and decreased lattice spacing, most likely caused by elevated titin-based forces. Furthermore, no RFE structural state was detected in <i>mdm</i> muscle. We posit that decreased lattice spacing, increased thick filament stiffness, and increased non-cross-bridge forces are the major contributors to RFE. We conclude that titin directly contributes to RFE.

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