Burgie E Sethe, Thoden James B, Holden Hazel M
Department of Biochemistry, University of Wisconsin, Madison, Wisconsin 53706, USA.
Protein Sci. 2007 May;16(5):887-96. doi: 10.1110/ps.062711007.
Desosamine is a 3-(dimethylamino)-3,4,6-trideoxyhexose found in certain macrolide antibiotics such as the commonly prescribed erythromycin. Six enzymes are required for its biosynthesis in Streptomyces venezuelae. The focus of this article is DesV, which catalyzes the PLP-dependent replacement of a 3-keto group with an amino functionality in the fifth step of the pathway. For this study the three-dimensional structures of both the internal aldimine and the ketimine intermediate with glutamate were determined to 2.05 A resolution. DesV is a homodimer with each subunit containing 12 alpha-helical regions and 12 beta-strands that together form three layers of sheet. The structure of the internal aldimine demonstrates that the PLP-cofactor is held in place by residues contributed from both subunits (Asp 164 and Gln 167 from Subunit I and Tyr 221 and Asn 235 from Subunit II). When the ketimine intermediate is present in the active site, the loop defined by Gln 225 to Ser 228 from Subunit II closes down upon the active site. The structure of DesV is similar to another sugar-modifying enzyme referred to as PseC. This enzyme is involved in the biosynthesis of pseudaminic acid, which is a sialic acid-like nonulosonate found in the flagellin of Helicobacter pylori. In the case of PseC, however, the amino group is transferred to the C-4 rather than the C-3 position. Details concerning the structural analysis of DesV and a comparison of its molecular architecture to that of PseC are presented.
去氧氨基糖是一种3-(二甲基氨基)-3,4,6-三脱氧己糖,存在于某些大环内酯类抗生素中,如常用的红霉素。委内瑞拉链霉菌合成它需要六种酶。本文的重点是DesV,它在该途径的第五步催化依赖磷酸吡哆醛(PLP)的3-酮基被氨基官能团取代。在本研究中,内部醛亚胺和与谷氨酸形成的酮亚胺中间体的三维结构被确定为分辨率为2.05埃。DesV是一种同型二聚体,每个亚基包含12个α-螺旋区域和12条β-链,它们共同形成三层片层结构。内部醛亚胺的结构表明,PLP辅因子由两个亚基贡献的残基固定在位(亚基I的Asp 164和Gln 167以及亚基II的Tyr 221和Asn 235)。当酮亚胺中间体存在于活性位点时,亚基II中由Gln 225至Ser 228定义的环会在活性位点上关闭。DesV的结构与另一种称为PseC的糖修饰酶相似。这种酶参与假氨基糖酸的生物合成,假氨基糖酸是一种在幽门螺杆菌鞭毛蛋白中发现的类似唾液酸的非ulosonate。然而,在PseC的情况下,氨基被转移到C-位置4而不是C-3位置。本文介绍了关于DesV结构分析的详细信息以及其分子结构与PseC的比较。