Key result
A common allosteric mechanism is proposed for active transport, muscle contraction, and ribosomal translocation where ATP or GTP serves as both effector and substrate.
Population
Theoretical models of active transport, muscle contraction, and ribosomal translocation
Design
Other
Authors
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Hypothesis-generating for shared allosteric mechanisms; leaves open validation before any cardiovascular application.
This theoretical paper proposes a unifying allosteric mechanism for cellular movement and transport processes driven by ATP or GTP.
Terrell L. Hill (1969) studied this question. A common allosteric mechanism is proposed for active transport, muscle contraction, and ribosomal translocation where ATP or GTP serves as both effector and substrate.
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