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- W227595274 abstract "Publisher Summary This chapter discusses L-threonine dehydrase as a model of allosteric control involving ligand-lnduced oligomerization. The threonine dehydrase system represents one of the simplest examples of allosteric behavior involving ligand-influenced oligomeric equilibria, and it can be established that this process functions in energy-linked control of threonine utilization. L-threonine dehydrase can be described as a system of three types of random binding equilibria: (1) dehydrase-substrate, (2) dehydrase-effector, and (3) dehydrase-dehydrase. These interactions can be looked upon as a series of 12 binding equilibria arranged as 6 linked functions among pairs of equilibria. The relationship among these can be depicted as a cube where M is monomer, D is dimer, A is the allosteric effector AMP, and T is threonine. For threonine dehydrase, the equilibrium constants for some of these binding processes are such that it is possible to study several of the equilibria in the virtual absence of others." @default.
- W227595274 created "2016-06-24" @default.
- W227595274 creator A5010288158 @default.
- W227595274 creator A5088563826 @default.
- W227595274 date "1975-01-01" @default.
- W227595274 modified "2023-09-26" @default.
- W227595274 title "L-Threonine Dehydrase as a Model of Allosteric Control Involving Ligand-lnduced Oligomerization" @default.
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- W227595274 doi "https://doi.org/10.1016/b978-0-12-152809-6.50010-x" @default.
- W227595274 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/1091415" @default.
- W227595274 hasPublicationYear "1975" @default.
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