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Induction of Fetal Hemoglobin by Propionic and Butyric Acid Derivatives: Correlations between Chemical Structure and Potency of Hb F Induction

机译:丙酸和丁酸衍生物对胎儿血红蛋白的诱导:Hb F诱导的化学结构和效能之间的关系

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摘要

Short-chain fatty acids (C2-C9) induce fetal hemoglobin synthesis in primary cell cultures, primates, and patients. We carried out experiments to test whether relationships exist between chemical structure and the Hb F-inducing potential of several short-chain fatty acid derivatives. BFUe cultures were performed in the presence of propionic and butyric congeners, covering the full spectrum of substitutions of these molecules, including polar and non-polar groups, esters, and double bonds. We found that the fetal hemoglobin inducibility is related to the chemical structure of the inducing compound. This structure–activity relation depends on the length of carbon chain, the nature of the substitutions, and the position of more potent substitutions on the carbon chain. It appears that substitutions enhancing the inducibility of these compounds are (with decreasing potency): methyl > phenyl > hydroxy ≫ amino groups. Placement of these substitutions at a position distal to the carboxyl group enhances γ-globin inducibility. Presence of the carboxyl group is prerequisite for γ-globin inducibility.
机译:短链脂肪酸(C2-C9)在原代细胞培养,灵长类动物和患者中诱导胎儿血红蛋白合成。我们进行了实验,以测试几种短链脂肪酸衍生物的化学结构与Hb F诱导潜力之间是否存在关系。 BFUe培养是在丙酸和丁酸同类物存在下进行的,涵盖了这些分子的全部取代范围,包括极性和非极性基团,酯和双键。我们发现胎儿血红蛋白的诱导能力与诱导化合物的化学结构有关。这种结构-活性关系取决于碳链的长度,取代的性质以及更有效的取代在碳链上的位置。看来增强这些化合物的诱导能力的取代是(效力降低):甲基>苯基>羟基≫氨基。将这些取代基放置在远离羧基的位置可增强γ-球蛋白的诱导性。羧基的存在是γ-珠蛋白诱导能力的前提。

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