1h7h: Difference between revisions

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==Overview==
==Overview==
The enzyme CMP-Kdo synthetase (CKS) catalyzes the activation of the sugar, Kdo (2-keto-3-deoxy-manno-octonic acid) by forming a monophosphate, diester. CKS is a pharmaceutical target because CMP-Kdo is used in the, biosynthesis of lipopolysaccharides that are vital for Gram-negative, bacteria. We have refined the structure of the unligated capsule-specific, CKS from Escherichia coli at 1.8 A resolution (1 A=0.1 nm) and we have, established the structures of its complexes with the substrate CTP, with, CDP and CMP as well as with the product analog CMP-NeuAc (CMP-sialate) by, X-ray diffraction analyses at resolutions between 2.1 A and 2.5 A. The, N-terminal domains of the dimeric enzyme bind CTP in a peculiar, nucleotide-binding fold, whereas the C-terminal domains form the dimer, interface. The observed binding geometries together with the amino acid, variabilities during evolution and the locations of a putative Mg(2+) and, of a very strongly bound water molecule suggest a pathway for the, catalysis. The N-terminal domain shows sequence homology with the, CMP-NeuAc synthetases. Moreover, the chain fold and the substrate-binding, position of CKS resemble those of other enzymes processing, nucleotide-sugars.
The enzyme CMP-Kdo synthetase (CKS) catalyzes the activation of the sugar Kdo (2-keto-3-deoxy-manno-octonic acid) by forming a monophosphate diester. CKS is a pharmaceutical target because CMP-Kdo is used in the biosynthesis of lipopolysaccharides that are vital for Gram-negative bacteria. We have refined the structure of the unligated capsule-specific CKS from Escherichia coli at 1.8 A resolution (1 A=0.1 nm) and we have established the structures of its complexes with the substrate CTP, with CDP and CMP as well as with the product analog CMP-NeuAc (CMP-sialate) by X-ray diffraction analyses at resolutions between 2.1 A and 2.5 A. The N-terminal domains of the dimeric enzyme bind CTP in a peculiar nucleotide-binding fold, whereas the C-terminal domains form the dimer interface. The observed binding geometries together with the amino acid variabilities during evolution and the locations of a putative Mg(2+) and of a very strongly bound water molecule suggest a pathway for the catalysis. The N-terminal domain shows sequence homology with the CMP-NeuAc synthetases. Moreover, the chain fold and the substrate-binding position of CKS resemble those of other enzymes processing nucleotide-sugars.


==About this Structure==
==About this Structure==
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[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Jelakovic, S.]]
[[Category: Jelakovic, S.]]
[[Category: Schulz, G.E.]]
[[Category: Schulz, G E.]]
[[Category: CDP]]
[[Category: CDP]]
[[Category: cmp-kdo synthetase]]
[[Category: cmp-kdo synthetase]]
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[[Category: sugar-activating enzymes]]
[[Category: sugar-activating enzymes]]


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