A C-terminal phosphatase module conserved in vertebrate CMP-sialic acid synthetases provides a tetramerization interface for the physiologically active enzyme
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Dickmanns, Achim
Haselhorst, Thomas
Schaper, Wiebke
Stummeyer, Katharina
Tiralongo, Joe
Weinhold, Birgit
Gerardy-Schahn, Rita
von Itzstein, Mark
Ficner, Ralf
Muenster-Kuehnel, Anja-K
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Abstract
The biosynthesis of sialic acid-containing glycoconjugates is crucial for the development of vertebrate life. Cytidine monophosphate-sialic acid synthetase (CSS) catalyzes the metabolic activation of sialic acids. In vertebrates, the enzyme is chimeric, with the N-terminal domain harboring the synthetase activity. The function of the highly conserved C-terminal domain (CSS-CT) is unknown. To shed light on its biological function, we solved the X-ray structure of murine CSS-CT to 1.9 Šresolution. CSS-CT is a stable shamrock-like tetramer that superimposes well with phosphatases of the haloacid dehalogenase superfamily. However, a region found exclusively in vertebrate CSS-CT appears to block the active-site entrance. Accordingly, no phosphatase activity was observed in vitro, which points toward a nonenzymatic function of CSS-CT. A computational three-dimensional model of full-length CSS, in combination with in vitro oligomerization studies, provides evidence that CSS-CT serves as a platform for the quaternary organization governing the kinetic properties of the physiologically active enzyme as demonstrated in kinetic studies.
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Journal of Molecular Biology
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393
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1
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Medicinal and biomolecular chemistry
Characterisation of biological macromolecules
Biochemistry and cell biology
Microbiology