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Initiation of rubber biosynthesis: In vitro comparisons of benzophenone-modified diphosphate analogues in three rubber-producing species
Authors:Xie Wenshuang  McMahan Colleen M  Degraw Amanda J  Distefano Mark D  Cornish Katrina  Whalen Maureen C  Shintani David K
Institution:a University of Nevada, Department of Biochemistry and Molecular Biology/MS200, Reno, NV 89557, United States
b USDA-ARS, Western Regional Research Center, 800 Buchanan Street, Albany, CA 94710, United States
c University of Minnesota, Department of Chemistry A-8 139 Smith Hall, 207 Pleasant Street SE, Minneapolis, MN 55455, United States
d Yulex Corporation, 37860 West Smith-Enke Road, Maricopa, AZ 85238, United States
Abstract:Natural rubber, cis-1,4-polyisoprene, is a vital industrial material synthesized by plants via a side branch of the isoprenoid pathway by the enzyme rubber transferase. While the specific structure of this enzyme is not yet defined, based on activity it is probably a cis-prenyl transferase. Photoactive functionalized substrate analogues have been successfully used to identify isoprenoid-utilizing enzymes such as cis- and trans-prenyltransferases, and initiator binding of an allylic pyrophosphate molecule in rubber transferase has similar features to these systems. In this paper, a series of benzophenone-modified initiator analogues were shown to successfully initiate rubber biosynthesis in vitro in enzymatically-active washed rubber particles from Ficus elastica, Heveabrasiliensis and Parthenium argentatum.Rubber transferases from all three species initiated rubber biosynthesis most efficiently with farnesyl pyrophosphate. However, rubber transferase had a higher affinity for benzophenone geranyl pyrophosphate (Bz-GPP) and dimethylallyl pyrophosphate (Bz-DMAPP) analogues with ether-linkages than the corresponding GPP or DMAPP. In contrast, ester-linked Bz-DMAPP analogues were less efficient initiators than DMAPP. Thus, rubber biosynthesis depends on both the size and the structure of Bz-initiator molecules. Kinetic studies thereby inform selection of specific probes for covalent photolabeling of the initiator binding site of rubber transferase.
Keywords:Parthenium argentatum  Guayule  Ficus elastica  Hevea brasiliensis  Photoaffinity labeling  Benzophenone  Allylic pyrophosphate  Farnesyl pyrophosphate  Rubber transferase  Cis-prenyltransferase
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