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STAC3 binding to CaV1.1 II-III loop is nonessential but critically supports skeletal muscle excitation-contraction coupling
Wietske E. Tuinte, Enikő Török, Petronel Tuluc, Fabiana Fattori, Adele D’Amico, Marta Campiglio
Wietske E. Tuinte, Enikő Török, Petronel Tuluc, Fabiana Fattori, Adele D’Amico, Marta Campiglio
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Research Article Muscle biology Neuroscience

STAC3 binding to CaV1.1 II-III loop is nonessential but critically supports skeletal muscle excitation-contraction coupling

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Abstract

Skeletal muscle excitation-contraction (EC) coupling depends on the direct coupling between CaV1.1 on the sarcolemma and ryanodine receptor (RyR1) on the sarcoplasmic reticulum. A key regulator of this process is STAC3, a protein essential for both the functional expression of CaV1.1 and its conformational coupling with RyR1. Mutations in Stac3 cause STAC3 disorder, a congenital myopathy characterized by muscle weakness. STAC3 interacts with CaV1.1 in 2 key regions: the II-III loop and the proximal C-terminus. While the II-III loop has been previously found to be essential for skeletal muscle EC coupling, here we demonstrated that the interaction between STAC3 and the proximal C-terminus is necessary and sufficient for CaV1.1 functional expression and minimal EC coupling. In contrast, the interaction with the II-III loop is not essential for EC coupling, though it plays a facilitating role in enhancing the process. Supporting this finding, we identified a patient with STAC3 disorder carrying a mutation that deletes the domain of STAC3 involved in the II-III loop interaction. Collectively, our results established that STAC3 binding to CaV1.1 C-terminus is essential for its functional expression, whereas STAC3 interaction with the II-III loop serves to enhance the conformational coupling with RyR1.

Authors

Wietske E. Tuinte, Enikő Török, Petronel Tuluc, Fabiana Fattori, Adele D’Amico, Marta Campiglio

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Figure 7

Reconstitution of CaV1.1/Stac3-KO myotubes with both STAC3 fragments rescues EC coupling only if STAC3-CT is targeted to the channel complex.

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Reconstitution of CaV1.1/Stac3-KO myotubes with both STAC3 fragments res...
(A) Cartoon showing the STAC3 fragments reconstituted together with CaV1.1 in CaV1.1/Stac3-KO myotubes and relative representative calcium current and calcium release traces. (B) Average peak I-V relationships (left) and peak current amplitudes (right), 1-way ANOVA F (4, 38) = 8.255, ****P < 0.0001. The stars on the graph represent the results of Dunnett’s multiple-comparison test: ****P < 0.0001. (C) Average peak change in fluorescence normalized by baseline (ΔF/F0) as a function of test potential (left) and ΔF/F0 peak values (right), F (4, 38) = 10.89, ****P < 0.0001. Dunnett’s multiple-comparison test: STAC3-NT ***P = 0.0002, STAC3-NT + STAC3-CT ****P < 0.0001, STAC3-CT-β1a ****P < 0.0001, STAC3-NT + STAC3-CT-β1a P = 0.0648. STAC3 n = 10, STAC3-NT n = 6, STAC3-NT + STAC3-CT n = 10, STAC3-CT-β1a n = 9, STAC3-NT + STAC3-CT-β1a n = 8.

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