We compared the interactions of purines and purine analogues with representative fungal and bacterial members of the widespread Nucleobase-Ascorbate Transporter (NAT) family. These are: UapA, a well-studied xanthine-uric acid transporter of A. nidulans, Xut1, a novel transporter from C. albicans, described for the first time in this work, and YgfO, a recently characterized xanthine transporter from E. coli. Using transport inhibition experiments with 64 different purines and purine-related analogues, we describe a kinetic approach to build models on how NAT proteins interact with their substrates. UapA, Xut1 and YgfO appear to bind several substrates via interactions with both the pyrimidine and imidazol rings. Fungal homologues interact with the pyrimidine ring of xanthine and xanthine analogues via H-bonds, principally with N1-H and =O6, and to a lower extent with =O2. The E. coli homologue interacts principally with N3-H and =O2, and less strongly with N1-H and =O6. The basic interaction with the imidazol ring appears to be via a H-bond with N9. Interestingly, while all three homologues recognize xanthines with similar high affinities, interaction with uric acid or/and oxypurinol is transporter-specific. UapA recognizes uric acid with high affinity, principally via three H-bonds with =O2, =O6 and =O8. Xut1 has a 13-fold reduced affinity for uric acid, based on a different set of interactions involving =O8, and probably H atoms from positions N1, N3, N7 or N9. YgfO does not recognize uric acid at all. Both Xut1 and UapA recognize oxypurinol, but use different interactions reflected in a nearly 26-fold difference in their affinities for this drug, while YgfO interacts with this analogue very inefficiently.
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Aktuelle Urol
March 2025
Klinik und Poliklinik für Urologie, Universitätsklinikum Carl Gustav Carus, TU Dresden, Dresden, Germany.
The incidence and prevalence of urolithiasis are increasing in industrialized countries. In particular, an increase has been observed among young adults and women. The gender gap is closing, and gender equality (1:1) with regard to urolithiasis has already been documented for the USA.
View Article and Find Full Text PDFPhytomedicine
March 2025
Lab of Food Function and Nutrigenomics, College of Food Science and Technology, Hunan Agricultural University, Changsha 410128, China. Electronic address:
Background: Hyperuricemia (HUA) is a metabolic disease disturbing human health caused by the overproduction or underexcretion of uric acid (UA). Astragalus is the root of Astragalus membranaceus (Fisch.) Bunge, has notable regulatory effect on chronic nephritis, proteinuria and spontaneous sweating, suggesting it could be a potential anti-HUA agent.
View Article and Find Full Text PDFBackground: The association between Down syndrome (DS) and hyperuricemia has been described for a long time. The cut-off points for hyperuricemia should be determined as the upper limits of the uric acid (UA) level according to age- and gender-specific reference UA values prepared for children with DS.
Methods: This study included 238 children (140 males and 98 females) with DS, below 21 years of age, who visited our medical center from May 1991 to June 31, 2018.
BMC Public Health
March 2025
The Comprehensive Breast Care Center, The Second Affiliated Hospital of Xi'an Jiaotong University, Xi'an, Shaanxi, China.
Background: Smoking is a well-documented risk factor for numerous chronic diseases, and cessation is correlated with enhanced health outcomes. Nonetheless, the precise effects of smoking cessation on the health status of older adults with chronic conditions in China have not been thoroughly quantified.
Objective: This study aims to quantitatively assess the correlations between smoking cessation and enhancements in the health outcomes of elderly Chinese individuals with chronic diseases.
Poult Sci
March 2025
School of Animal Technology and Innovation, Institute of Agricultural Technology, Suranaree University of Technology, Nakhon Ratchasima, 30000, Thailand. Electronic address:
This research aimed to investigate the optimization of lipid-based nanoparticles to improve the utilization of n-3 PUFA source in chicken diets. Three groups of slow-growing Korat chickens were reared under the same conditions and fed a diet containing 6 % rice bran oil (RBO, control group), 3 % tuna oil (3 % TO) and 3 % tuna oil in targeted lipid-based nanoparticles (3 % TO-TNP). The growth performance, carcass composition, meat quality, fatty acid profile of breast and thigh meat, hematological and plasma biochemical parameters were evaluated.
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