首页> 外文期刊>Carbohydrate research >SYNTHESIS AND IRON BINDING STUDIES OF MYO-INOSITOL 1,2,3-TRISPHOSPHATE AND (+/-)-MYO-INOSITOL 1,2-BISPHOSPHATE, AND IRON BINDING STUDIES OF ALL MYO-INOSITOL TETRAKISPHOSPHATES
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SYNTHESIS AND IRON BINDING STUDIES OF MYO-INOSITOL 1,2,3-TRISPHOSPHATE AND (+/-)-MYO-INOSITOL 1,2-BISPHOSPHATE, AND IRON BINDING STUDIES OF ALL MYO-INOSITOL TETRAKISPHOSPHATES

机译:肌醇1,2,3-三磷酸酯和(+/-)-肌醇1,2-二磷酸酯的合成和铁结合研究以及所有肌醇四磷酸酯的铁结合研究

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摘要

The first syntheses of the natural products myo-inositol 1,2,3-trisphosphate and (+/-)-myo-inositol 1,2-bisphosphate are described. The protected key intermediates 4,5,6-tri-O-benzoyl-myo-inositol and (+/-)-3,4,5,6-tetra-O-benzyl-myo-inositol were phosphorylated with dibenzyl N,N-diisopropylphosphoramidite in the presence of 1H-tetrazole and subsequent oxidation of the phosphite. The crystal structures of the synthetic intermediates (+/-)-1-O-(tert-butyldiphenylsilyl)-2, 3-O-cyclohexylidene-myo-inositol and (+/-)-4,5,6-tri-O-benzoyl-1-O-(tert-butyldiphenylsilyl)- 2,3-O-cyclohexylidene-myo-inositol are reported. myo-Inositol 1,2,3-trisphosphate, (+/-)-myo-inositol 1,2-bisphosphate, and all isomeric myo-inositol tetrakisphosphates were evaluated for their ability to alter HO. production in the iron-catalysed Haber-Weiss reaction. The results demonstrated that a 1,2,3-grouping of phosphates in myo-inositol was necessary for inhibition, also that (+/-)-myo-inositol 1,2-bisphosphate potentiated HO. production. myo-Inositol 1,2,3-trisphosphate resembled myo-inositol hexakisphosphate (phytic acid) in its ability to act as a siderophore by promoting iron-uptake into Pseudomonas aeruginosa. [References: 53]
机译:描述了天然产物肌醇1,2,3-三磷酸和(+/-)-肌醇1,2-二磷酸的天然合成。受保护的关键中间体4,5,6-三-O-苯甲酰基-肌醇和(+/-)-3,4,5,6-四-O-苄基-肌醇被二苄基N,N磷酸化-二异丙基亚磷酰胺在1H-四唑的存在下,随后进行亚磷酸的氧化。合成中间体(+/-)-1-O-(叔丁基二苯基甲硅烷基)-2、3-O-亚环己基-肌醇和(+/-)-4,5,6-tri-O的晶体结构据报道有-苯甲酰基-1-O-(叔丁基二苯基甲硅烷基)-2,3-O-亚环己基-肌醇。评价了肌醇1,2,3-三磷酸,(+/-)-肌醇1,2-二磷酸酯和所有异构体肌醇四磷酸酯改变HO的能力。在铁催化的Haber-Weiss反应中生产。结果表明,肌醇中的1,2,3-磷酸基团是抑制所必需的,而且(+/-)-肌醇1,2-二磷酸增强HO。生产。肌醇1,2,3-三磷酸酯类似于肌醇六磷酸酯(植酸),其通过促进铁对铜绿假单胞菌的摄取而充当铁载体。 [参考:53]

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