Abstract

Prenyltransferases catalyze the consecutive condensations of isopentenyl diphosphate to produce linear polyprenyl diphosphates. Each enzyme forms the final product with a specific chain length. The product specificity of an enzyme is thought to be determined by the structure around the unknown path through which the product elongates in the enzyme. To explore the path, we introduced a few mutations at the 5th, the 8th, and/or the 11th positions before the first aspartate-rich motif of geranylgeranyl-diphosphate synthase or farnesyl-diphosphate synthase. The side chains of these amino acids are situated on the same side of an alpha-helix. In geranylgeranyl-diphosphate synthase, a single mutated enzyme (F77S) mainly produces a C25 product (Ohnuma, S.-I., Hirooka, K., Hemmi, H., Ishida, C., Ohto, C., and Nishino, T. (1996) J. Biol. Chem. 271, 18831-18837). A double mutated enzyme (L74G and F77G) mainly produces a C35 compound with significant amounts of C30 and C40. A triple mutated enzyme (I71G, L74G, and F77G) mainly produces a C40 compound with C35 and C45. Mutated farnesyl-diphosphate synthases also show similar patterns. These findings indicate that the elongating product passages on a surface of the side chains of the mutated amino acids, the original bulky amino acids had blocked the elongation, and the path is conserved in prenyltransferases. Moreover, the fact that some double and triple mutated enzymes can also form small amounts of products longer than C50 indicates that the paths in these mutated enzymes can partially access the outer surface of the enzymes.

Highlights

  • Prenyltransferases catalyze the consecutive condensations of isopentenyl diphosphate to produce linear polyprenyl diphosphates

  • Design of Double Mutated GGPP Synthases—In our previous study, we made two mutated GGPP synthases that have the replacement of phenylalanine by serine or leucine at position 77, which is the 5th position before first aspartate-rich motif (FARM) [22]

  • Assuming that a growing polyprenyl diphosphate elongates along the ␣-helix and that the elimination of the blocking side chain of the amino acid situated at one pitch of ␣-helix distant from the fifth amino acid before FARM enables the mutated enzyme to catalyze the synthesis of products longer than C30, we constructed several double mutated GGPP synthases; the first mutation is at the fifth amino acid before FARM, the second mutation is at the third or the fourth amino acid before the first mutation (Fig. 2)

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Summary

A Pathway Where Polyprenyl Diphosphate Elongates in Prenyltransferase

INSIGHT INTO A COMMON MECHANISM OF CHAIN LENGTH DETERMINATION OF PRENYLTRANSFERASES. Access the most updated version of this article at http://www.jbc.org/content/273/41/26705. Alerts: When this article is cited When a correction for this article is posted. This article cites 41 references, 20 of which can be accessed free at http://www.jbc.org/content/273/41/26705.full.html#ref-list-1

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