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Decaprenylphosphoryl Arabinofuranose, the Donor of the D-arabinofuranosyl Residues of Mycobacterial Arabinan, is Formed Via a Two-step Epimerization of Decaprenylphosphoryl Ribose

Overview
Journal J Bacteriol
Specialty Microbiology
Date 2005 Nov 18
PMID 16291675
Citations 74
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Abstract

The major cell wall polysaccharide of mycobacteria is a branched-chain arabinogalactan in which arabinan chains are attached to the 5 carbon of some of the 6-linked galactofuranose residues; these arabinan chains are composed exclusively of D-arabinofuranose (Araf) residues. The immediate precursor of the polymerized Araf is decaprenylphosphoryl-D-Araf, which is derived from 5-phosphoribose 1-diphosphate (pRpp) in an undefined manner. On the basis of time course, feedback, and chemical reduction experiment results we propose that decaprenylphosphoryl-Araf is synthesized by the following sequence of events. (i) pRpp is transferred to a decaprenyl-phosphate molecule to form decaprenylphosphoryl-beta-D-5-phosphoribose. (ii) Decaprenylphosphoryl-beta-D-5-phosphoribose is dephosphorylated to form decaprenylphosphoryl-beta-D-ribose. (iii) The hydroxyl group at the 2 position of the ribose is oxidized and is likely to form decaprenylphosphoryl-2-keto-beta-D-erythro-pentofuranose. (iv) Decaprenylphosphoryl-2-keto-beta-D-erythro-pentofuranose is reduced to form decaprenylphosphoryl-beta-D-Araf. Thus, the epimerization of the ribosyl to an arabinosyl residue occurs at the lipid-linked level; this is the first report of an epimerase that utilizes a lipid-linked sugar as a substrate. On the basis of similarity to proteins implicated in the arabinosylation of the Azorhizobium caulidans nodulation factor, two genes were cloned from the Mycobacterium tuberculosis genome and expressed in a heterologous host, and the protein was purified. Together, these proteins (Rv3790 and Rv3791) are able to catalyze the epimerization, although neither protein individually is sufficient to support the activity.

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References
1.
Giraud M, Leonard G, Field R, Berlind C, Naismith J . RmlC, the third enzyme of dTDP-L-rhamnose pathway, is a new class of epimerase. Nat Struct Biol. 2000; 7(5):398-402. DOI: 10.1038/75178. View

2.
Huang H, Scherman M, DHaeze W, Vereecke D, Holsters M, Crick D . Identification and active expression of the Mycobacterium tuberculosis gene encoding 5-phospho-{alpha}-d-ribose-1-diphosphate: decaprenyl-phosphate 5-phosphoribosyltransferase, the first enzyme committed to decaprenylphosphoryl-d-arabinose synthesis. J Biol Chem. 2005; 280(26):24539-43. DOI: 10.1074/jbc.M504068200. View

3.
Allard S, Giraud M, Naismith J . Epimerases: structure, function and mechanism. Cell Mol Life Sci. 2001; 58(11):1650-65. PMC: 11337284. DOI: 10.1007/PL00000803. View

4.
Klutts J, Hatanaka K, Pan Y, Elbein A . Biosynthesis of d-arabinose in Mycobacterium smegmatis: specific labeling from d-glucose. Arch Biochem Biophys. 2002; 398(2):229-39. DOI: 10.1006/abbi.2001.2723. View

5.
Takayama K, Goldman D . Enzymatic synthesis of mannosyl-1-phosphoryl-decaprenol by a cell-free system of Mycobacterium tuberculosis. J Biol Chem. 1970; 245(23):6251-7. View