Hexameric Assembly of the Bifunctional Methylerythritol 2,4-Cyclodiphosphate Synthase and Protein-Protein Associations in the Deoxy-xylulose-dependent Pathway of Isoprenoid Precursor Biosynthesis
The bifunctional methylerythritol 4-phosphate cytidylyltransferase methylerythritol 2,4-cyclodiphosphate synthase (IspDF) is unusual in that it catalyzes nonconsecutive reactions in the 1-deoxy- d -xylulose 5-phosphate (DOXP) pathway of isoprenoid precursor biosynthesis. The crystal structure of Isp...
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Veröffentlicht in: | The Journal of biological chemistry 2004-12, Vol.279 (50), p.52753-52761 |
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Sprache: | eng |
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Zusammenfassung: | The bifunctional methylerythritol 4-phosphate cytidylyltransferase methylerythritol 2,4-cyclodiphosphate synthase (IspDF)
is unusual in that it catalyzes nonconsecutive reactions in the 1-deoxy- d -xylulose 5-phosphate (DOXP) pathway of isoprenoid precursor biosynthesis. The crystal structure of IspDF from the bacterial
pathogen Campylobacter jejuni reveals an elongated hexamer with D 3 symmetry compatible with the dimeric 2 C -methyl- d -erythritol-4-phosphate cytidylyltransferase and trimeric 2 C -methyl- d -erythritol-2,4-cyclodiphosphate synthase monofunctional enzymes. Complex formation of IspDF with 4-diphosphocytidyl-2 C -methyl- d -erythritol kinase (IspE), the intervening enzyme activity in the pathway, has been observed in solution for the enzymes from
C. jejuni and Agrobacterium tumefaciens . The monofunctional enzymes (2 C -methyl- d -erythritol-4-phosphate cytidylyltransferase, IspE, and 2 C -methyl- d -erythritol-2,4-cyclodiphosphate synthase) involved in the DOXP biosynthetic pathway of Escherichia coli also show physical associations. We propose that complex formation of the three enzymes at the core of the DOXP pathway can
produce an assembly localizing 18 catalytic centers for the early stages of isoprenoid biosynthesis. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.M408895200 |