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June 27, 2026Biophysical Reviews1 citationsOpen Access

Professor Roger Cooke’s vision for skeletal muscle’s super relaxed state: a conceptual paradigm shift for naturally managing metabolic diseases including obesity

CWClyde Wilson

Key Result

Shifting skeletal muscle myosin out of the super relaxed state into the relaxed state increases resting metabolic rate, offering a potential paradigm shift for managing metabolic diseases and obesity.

Key Points

  • The aim is to explore the discovery of the super relaxed state (SRX) and its implications for managing metabolic diseases.
  • Discussed key ideas regarding SRX function and regulation based on conversations with Roger Cooke.
  • Examined the structural differences between myosin in the SRX and RX.
  • Reviewed the potential health benefits associated with SRX and MYoD regulation.
  • The SRX state significantly lowers resting metabolic rate, enabling calorie burning at a slower rate.
  • Transitioning between RX and SRX allows a metabolic range of ~1000 kcal/day in humans.
  • Regular movement correlates with improved metabolic health, normalizing blood sugar levels in type-2 diabetics.

PICO

P
Population
Metabolic diseases including obesity
I
Intervention / Comparator
Modulation of the super relaxed state (SRX)

Abstract

Professor Roger Cooke is remembered for his extensive work on the structure–function relationships of motor proteins, including his landmark discovery of the super relaxed state (SRX). The SRX burns calories an order of magnitude slower than the (regular) relaxed state (RX). In skeletal muscle, this dramatically lowers resting metabolic rate, enabling animals to survive food scarcity, torpor, and hibernation. In humans, the ability of resting muscle to switch between the RX and SRX creates a dynamic metabolic range of ~ 1000 kilocalories (kcal) per day. In natural living systems, myosin in the SRX is mainly ordered within a structure called the interactive heads motif (IHM), whereas myosin in the RX is more disordered, referred to as the disordered relaxed state (DRX). An increased DRX persists after generating force, which is likely the main reason for the profound benefits of regular movement throughout the day. In humans, this includes normalizing blood sugar in type-2 diabetics and eliminating weight gain while overfeeding by 1000 kcal per day. The discovery of the SRX, therefore, creates a paradigm shift in our view of skeletal muscle, bridging the gap between how muscle generates metabolic control and force production. Here, I will describe the key ideas Roger shared with me during our research conversations in the last few years of his life, including thoughts on SRX function (particularly as it relates to the IHM, with insights from recent findings), its regulation (directly by ligands and indirectly by hormones), and its tremendous potential to improve human metabolic health.

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Cite This Study

Clyde Wilson (2026) conducted a review in Metabolic diseases including obesity. Modulation of the super relaxed state (SRX) was evaluated. Shifting skeletal muscle myosin out of the super relaxed state into the relaxed state increases resting metabolic rate, offering a potential paradigm shift for managing metabolic diseases and obesity.

synapsesocial.com/papers/6a3f6b48aea7db3c19540a7dhttps://doi.org/10.1007/s12551-026-01442-x
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1To lie or not to lie: Super-relaxing with myosins2021 · 107 citations
  2. 2Super-relaxed state of myosin in human skeletal muscle is fiber-type dependent2020 · 28 citations
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