1gx4: Difference between revisions

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==Overview==
==Overview==
Bovine alpha-1,3-galactosyltransferase (alpha3GT) catalyzes the synthesis, of the alpha-galactose (alpha-Gal) epitope, the target of natural human, antibodies. It represents a family of enzymes, including the histo blood, group A and B transferases, that catalyze retaining glycosyltransfer, reactions of unknown mechanism. An initial study of alpha3GT in a crystal, form with limited resolution and considerable disorder suggested the, possible formation of a beta-galactosyl-enzyme covalent intermediate, (Gastinel, L. N., Bignon, C., Misra, A. K., Hindsgaul, O., Shaper, J. H., and Joziasse, D. H. (2001) EMBO J. 20, 638-649). Highly ordered structures, are described for complexes of alpha3GT with donor substrate, UDP-galactose, UDP- glucose, and two acceptor substrates, lactose and, N-acetyllactosamine, at resolutions up to 1.46 A. Structural and, calorimetric binding studies suggest an obligatory ordered binding of, donor and acceptor substrates, linked to a donor substrate-induced, conformational change, and the direct participation of UDP in acceptor, binding. The monosaccharide-UDP bond is cleaved in the structures, containing UDP-galactose and UDP-glucose, producing non-covalent complexes, containing buried beta-galactose and alpha-glucose. The location of these, monosaccharides and molecular modeling suggest that binding of a distorted, conformation of UDP-galactose may be important in the catalytic mechanism, of alpha3GT.
Bovine alpha-1,3-galactosyltransferase (alpha3GT) catalyzes the synthesis of the alpha-galactose (alpha-Gal) epitope, the target of natural human antibodies. It represents a family of enzymes, including the histo blood group A and B transferases, that catalyze retaining glycosyltransfer reactions of unknown mechanism. An initial study of alpha3GT in a crystal form with limited resolution and considerable disorder suggested the possible formation of a beta-galactosyl-enzyme covalent intermediate (Gastinel, L. N., Bignon, C., Misra, A. K., Hindsgaul, O., Shaper, J. H., and Joziasse, D. H. (2001) EMBO J. 20, 638-649). Highly ordered structures are described for complexes of alpha3GT with donor substrate, UDP-galactose, UDP- glucose, and two acceptor substrates, lactose and N-acetyllactosamine, at resolutions up to 1.46 A. Structural and calorimetric binding studies suggest an obligatory ordered binding of donor and acceptor substrates, linked to a donor substrate-induced conformational change, and the direct participation of UDP in acceptor binding. The monosaccharide-UDP bond is cleaved in the structures containing UDP-galactose and UDP-glucose, producing non-covalent complexes containing buried beta-galactose and alpha-glucose. The location of these monosaccharides and molecular modeling suggest that binding of a distorted conformation of UDP-galactose may be important in the catalytic mechanism of alpha3GT.


==About this Structure==
==About this Structure==
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[[Category: Bos taurus]]
[[Category: Bos taurus]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Transferred entry: 2.4.1.87]]
[[Category: Transferred entry: 2 4.1 87]]
[[Category: Acharya, K.R.]]
[[Category: Acharya, K R.]]
[[Category: Boix, E.]]
[[Category: Boix, E.]]
[[Category: Brew, K.]]
[[Category: Brew, K.]]
[[Category: Swaminathan, G.J.]]
[[Category: Swaminathan, G J.]]
[[Category: Zhang, Y.]]
[[Category: Zhang, Y.]]
[[Category: GOL]]
[[Category: GOL]]
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[[Category: transferase]]
[[Category: transferase]]


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