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Head-to-Head Prenyl Synthases in Pathogenic Bacteria.


ABSTRACT: Many organisms contain head-to-head isoprenoid synthases; we investigated three such types of enzymes from the pathogens Neisseria meningitidis, Neisseria gonorrhoeae, and Enterococcus hirae. The E.?hirae enzyme was found to produce dehydrosqualene, and we solved an inhibitor-bound structure that revealed a fold similar to that of CrtM from Staphylococcus aureus. In contrast, the homologous proteins from Neisseria spp. carried out only the first half of the reaction, yielding presqualene diphosphate (PSPP). Based on product analyses, bioinformatics, and mutagenesis, we concluded that the Neisseria proteins were HpnDs (PSPP synthases). The differences in chemical reactivity to CrtM were due, at least in part, to the presence of a PSPP-stabilizing arginine in the HpnDs, decreasing the rate of dehydrosqualene biosynthesis. These results show that not only S.?aureus but also other bacterial pathogens contain head-to-head prenyl synthases, although their biological functions remain to be elucidated.

SUBMITTER: Schwalen CJ 

PROVIDER: S-EPMC5569891 | biostudies-literature | 2017 Jun

REPOSITORIES: biostudies-literature

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Head-to-Head Prenyl Synthases in Pathogenic Bacteria.

Schwalen Christopher J CJ   Feng Xinxin X   Liu Weidong W   O-Dowd Bing B   Ko Tzu-Ping TP   Shin Christopher J CJ   Guo Rey-Ting RT   Mitchell Douglas A DA   Oldfield Eric E  

Chembiochem : a European journal of chemical biology 20170425 11


Many organisms contain head-to-head isoprenoid synthases; we investigated three such types of enzymes from the pathogens Neisseria meningitidis, Neisseria gonorrhoeae, and Enterococcus hirae. The E. hirae enzyme was found to produce dehydrosqualene, and we solved an inhibitor-bound structure that revealed a fold similar to that of CrtM from Staphylococcus aureus. In contrast, the homologous proteins from Neisseria spp. carried out only the first half of the reaction, yielding presqualene diphosp  ...[more]

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