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3-fluoroazetidinecarboxylic acids and trans,trans-3,4-difluoroproline as peptide scaffolds: inhibition of pancreatic cancer cell growth by a fluoroazetidine iminosugar

机译:3-氟氮杂环丁烷羧酸和反式,反式-3,4-二氟脯氨酸作为肽支架:氟氮杂环丁烷亚氨基糖抑制胰腺癌细胞的生长

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摘要

Reverse aldol opening renders amides of 3-hydroxyazetidinecarboxylic acids (3-OH-Aze) unstable above pH 8. Aze, found in sugar beet, is mis-incorporated for proline in peptides in humans and is associated with multiple sclerosis and teratogenesis. Aze-containing peptides may be oxygenated by prolyl hydroxylases resulting in potential damage of the protein by a reverse aldol of the hydroxyazetidine; this, rather than changes in conformation, may account for the deleterious effects of Aze. This paper describes the synthesis of 3-fluoro-Aze amino acids as hydroxy-Aze analogues which are not susceptible to aldol cleavage. 4-(Azidomethyl)-3-fluoro-Aze and 3,4-difluoroproline are new peptide building blocks. trans,trans-2,4-Dihydroxy-3-fluoroazetidine, an iminosugar, inhibits the growth of pancreatic cancer cells to a similar degree as gemcitabine.
机译:反向羟醛开放使3-羟氮杂环丁烷羧酸的酰胺(3-OH-Aze)在pH值8以上不稳定。糖用甜菜中发现的Aze被误掺入人体肽中的脯氨酸中,并与多发性硬化症和致畸作用有关。含氮杂的肽可能被脯氨酰羟化酶氧化,导致蛋白质被羟氮杂环丁烷的反向羟醛破坏。这可能是造成Aze有害影响的原因,而不是构象的变化。本文描述了3-氟-Aze氨基酸作为羟基-Aze类似物的合成方法,该方法不易被羟醛裂解。 4-(叠氮甲基)-3-氟-Aze和3,4-二氟脯氨酸是新的肽构建基。亚氨基糖trans,trans-2,4-Dihydroxy-3-fluoroazetidine可抑制胰腺癌细胞的生长,其程度与吉西他滨相似。

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