1uqu: Difference between revisions

From Proteopedia
Jump to navigationJump to search
OCA (talk | contribs)
No edit summary
OCA (talk | contribs)
No edit summary
Line 4: Line 4:


==Overview==
==Overview==
Trehalose is an unusual non-reducing disaccharide that plays a variety of, biological roles, from food storage to cellular protection from, environmental stresses such as desiccation, pressure, heat-shock, extreme, cold, and oxygen radicals. It is also an integral component of the, cell-wall glycolipids of mycobacteria. The primary enzymatic route to, trehalose first involves the transfer of glucose from a UDP-glucose donor, to glucose-6-phosphate to form alpha,alpha-1,1 trehalose-6-phosphate. This, reaction, in which the configurations of two glycosidic bonds are set, simultaneously, is catalyzed by the glycosyltransferase, trehalose-6-phosphate synthase (OtsA), which acts with retention of the, anomeric configuration of the UDP-sugar donor. The classification of, activated sugar-dependent glycosyltransferases into approximately 70, distinct families based upon amino acid sequence similarities places OtsA, in glycosyltransferase family 20 (see afmb.cnrs-mrs.fr/CAZY/). The recent, 2.4 A structure of Escherichia coli OtsA revealed a two-domain enzyme with, catalysis occurring at the interface of the twin beta/alpha/beta domains., Here we present the 2.0 A structures of the E. coli OtsA in complex with, either UDP-Glc or the non-transferable analogue, UDP-2-deoxy-2-fluoroglucose. Both complexes unveil the donor subsite, interactions, confirming a strong similarity to glycogen phosphorylases, and reveal substantial conformational differences to the previously, reported complex with UDP and glucose 6-phosphate. Both the relative, orientation of the two domains and substantial (up to 10 A) movements of, an N-terminal loop (residues 9-22) characterize the more open "relaxed", conformation of the binary UDP-sugar complexes reported here.
Trehalose is an unusual non-reducing disaccharide that plays a variety of biological roles, from food storage to cellular protection from environmental stresses such as desiccation, pressure, heat-shock, extreme cold, and oxygen radicals. It is also an integral component of the cell-wall glycolipids of mycobacteria. The primary enzymatic route to trehalose first involves the transfer of glucose from a UDP-glucose donor to glucose-6-phosphate to form alpha,alpha-1,1 trehalose-6-phosphate. This reaction, in which the configurations of two glycosidic bonds are set simultaneously, is catalyzed by the glycosyltransferase trehalose-6-phosphate synthase (OtsA), which acts with retention of the anomeric configuration of the UDP-sugar donor. The classification of activated sugar-dependent glycosyltransferases into approximately 70 distinct families based upon amino acid sequence similarities places OtsA in glycosyltransferase family 20 (see afmb.cnrs-mrs.fr/CAZY/). The recent 2.4 A structure of Escherichia coli OtsA revealed a two-domain enzyme with catalysis occurring at the interface of the twin beta/alpha/beta domains. Here we present the 2.0 A structures of the E. coli OtsA in complex with either UDP-Glc or the non-transferable analogue UDP-2-deoxy-2-fluoroglucose. Both complexes unveil the donor subsite interactions, confirming a strong similarity to glycogen phosphorylases, and reveal substantial conformational differences to the previously reported complex with UDP and glucose 6-phosphate. Both the relative orientation of the two domains and substantial (up to 10 A) movements of an N-terminal loop (residues 9-22) characterize the more open "relaxed" conformation of the binary UDP-sugar complexes reported here.


==About this Structure==
==About this Structure==
Line 14: Line 14:
[[Category: Escherichia coli]]
[[Category: Escherichia coli]]
[[Category: Single protein]]
[[Category: Single protein]]
[[Category: Davies, G.J.]]
[[Category: Davies, G J.]]
[[Category: Gibson, R.P.]]
[[Category: Gibson, R P.]]
[[Category: Roberts, S.]]
[[Category: Roberts, S.]]
[[Category: Tarling, C.A.]]
[[Category: Tarling, C A.]]
[[Category: Withers, S.G.]]
[[Category: Withers, S G.]]
[[Category: UPG]]
[[Category: UPG]]
[[Category: glycosyltransferase]]
[[Category: glycosyltransferase]]
Line 24: Line 24:
[[Category: transferase]]
[[Category: transferase]]


''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Sun Feb 3 10:03:54 2008''
''Page seeded by [http://oca.weizmann.ac.il/oca OCA ] on Thu Feb 21 15:27:22 2008''