Abstract

Biphenyl dehydrogenase, a member of short-chain dehydrogenase/reductase enzymes, catalyzes the second step of the biphenyl/polychlorinated biphenyls catabolic pathway in bacteria. To understand the molecular basis for the broad substrate specificity of Pandoraea pnomenusa strain B-356 biphenyl dehydrogenase (BphB(B-356)), the crystal structures of the apo-enzyme, the binary complex with NAD(+), and the ternary complexes with NAD(+)-2,3-dihydroxybiphenyl and NAD(+)-4,4'-dihydroxybiphenyl were determined at 2.2-, 2.5-, 2.4-, and 2.1-Å resolutions, respectively. A crystal structure representing an intermediate state of the enzyme was also obtained in which the substrate binding loop was ordered as compared with the apo and binary forms but it was displaced significantly with respect to the ternary structures. These five structures reveal that the substrate binding loop is highly mobile and that its conformation changes during ligand binding, starting from a disorganized loop in the apo state to a well organized loop structure in the ligand-bound form. Conformational changes are induced during ligand binding; forming a well defined cavity to accommodate a wide variety of substrates. This explains the biochemical data that shows BphB(B-356) converts the dihydrodiol metabolites of 3,3'-dichlorobiphenyl, 2,4,4'-trichlorobiphenyl, and 2,6-dichlorobiphenyl to their respective dihydroxy metabolites. For the first time, a combination of structural, biochemical, and molecular docking studies of BphB(B-356) elucidate the unique ability of the enzyme to transform the cis-dihydrodiols of double meta-, para-, and ortho-substituted chlorobiphenyls.

Highlights

  • BphBB-356 catalyzes the second step of the polychlorinated biphenyls (PCBs) catabolic pathway

  • Conformational changes are induced during ligand binding; forming a well defined cavity to accommodate a wide variety of substrates

  • Crystals of the BphBB-356-NADϩ complex were prepared by soaking protein crystals for 15 min at room temperature in a solution comprised of 22% (w/v) PEG-3350, 0.2 M sodium malonate, and 10 mM NADϩ

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Summary

Background

BphBB-356 catalyzes the second step of the PCB catabolic pathway. Result: Apo, binary, intermediate, and ternary structures were obtained. A crystal structure representing an intermediate state of the enzyme was obtained in which the substrate binding loop was ordered as compared with the apo and binary forms but it was displaced significantly with respect to the ternary structures. Conformational changes are induced during ligand binding; forming a well defined cavity to accommodate a wide variety of substrates This explains the biochemical data that shows BphBB-356 converts the dihydrodiol metabolites of 3,3؅-dichlorobiphenyl, 2,4,4؅-trichlorobiphenyl, and 2,6-dichlorobiphenyl to their respective dihydroxy metabolites. To get more insight into the binding mode of the ligand with BphB, we have compared the crystal structure of the apo form of BphBB-356 with that of its NADϩ-bound form (binary state) or of its ternary complex with its coenzyme-NADϩ and its product (2,3-dihydroxybiphenyl) or a product analog (4,4Ј-dihydroxybiphenyl). Our docking studies are consistent with the biochemical experiments that examine the ability of BphBB-356 to metabolize and accommodate a large range of chlorinated substrates

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