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D-threo-tetrahydrobiopterin is synthesized via 1'-oxo-2'-D-hydroxypropyl-tetrahydropterin in Dictyostelium discoideum Ax2
Authors:Choi Yong Kee  Park Jung Soon  Kong Jin Seon  Morio Takahiro  Park Young Shik
Affiliation:School of Biotechnology and Biomedical Science, Inje University, Kimhae 621-749, Korea.
Abstract:
The biosynthesis of D-threo-tetrahydrobiopterin (DH4, tetrahydrodictyopterin) in Dictyostelium discoideum Ax2 was investigated through the mutant disrupted in the gene encoding sepiapterin reductase (SR) by insertional inactivation. The mutant cells, being completely devoid of SR protein, showed 18.1% of L-erythro-tetrahydrobiopterin (BH4) and 0.6% of DH4 productions in the wild type cells. The mutant cells were also identified to excrete D- and L-sepiapterin, which were presumed to originate from intracellular 1'-oxo-2'-D-hydroxypropyl- and 1'-oxo-2'-L-hydroxypropyl-tetrahydropterin (H4-pterin), respectively. Furthermore, in a coupled assay with Dictyostelium SR, the mutant cell extract exhibited a novel enzyme activity converting 6-pyruvoyltetrahydropterin to 1'-oxo-2'-D-hydroxypropyl-H4-pterin. These results are clear demonstration of the in vivo synthesis of DH4 via 1'-oxo-2'-D-hydroxypropyl-H4-pterin as well as an alternative synthesis of BH4 and DH4 in the complete absence of SR.
Keywords:AR, aldose reductase   BH4, l-erythro-tetrahydrobiopterin   CR, carbonyl reductase   Dic-SR, Dictyostelium SR   DH4, d-threo-tetrahydrobiopterin   GTP, guanosine 5′-triphosphate   GTPCH, GTP cyclohydrolase I   H2-NTP, dihydroneopterin triphosphate   H4-pterin, tetrahydropterin   PPH4, 6-pyruvoyltetrahydropterin   PTPS, 6-pyruvoyltetrahydropterin synthase   SR, sepiapterin reductase
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