首页> 外文期刊>The Journal of Organic Chemistry >Synthesis of p-aminophenyl aryl h-phosphinic acids and esters via cross-coupling reactions: Elaboration to phosphinic acid pseudopeptide analogues of pteroyl glutamic acid and related antifolates
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Synthesis of p-aminophenyl aryl h-phosphinic acids and esters via cross-coupling reactions: Elaboration to phosphinic acid pseudopeptide analogues of pteroyl glutamic acid and related antifolates

机译:通过交叉偶联反应合成对氨基苯基芳基h-次膦酸和酯:精制蝶酰基谷氨酸的次膦酸假肽类似物和相关的抗叶酸剂

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The synthesis of suitably protected p-aminophenyl H-phosphinic acids and esters from the corresponding para-substituted aryl halides has been accomplished via the Pd-catalyzed cross-coupling reaction of anilinium hypophosphite, either in the absence or presence of a tetraalkyl orthosilicate, to provide the free H-phosphinic acid or the corresponding ester, respectively. Subsequent conjugate addition of either a P-III species or phosphorus anion, generated in situ from either the free H-phosphinic acid or ester, to a 2-methylene glutaric acid ester provided the aryl phosphinic acid analogue of p-aminobenzoyl glutamic acid. Alkylation of these suitably protected p-aminophenyl phosphinic acid esters with a 6-(bromomethyl)pteridine or the corresponding (bromomethyl)pyridopyrmidine, followed by hydrolytic removal of protecting groups, provided the target aryl phosphinic acid analogues of folic acid and related antifolates. Alternatively, for the synthesis of the folate or 5-deazafolate analogues on a slightly larger scale, reductive amination with either N-2-acetyl or N-2-pivaloyl-6-formylpterin or the corresponding formylpyridopyrmidine and the same suitably protected p-aminophenyl phosphinic acid esters, followed by removal of protecting groups, is preferred. In the course of this research, it was observed that the nucleophilicity of both the aniline nitrogen and various P-III species derived from p-aminophenyl phosphinic acid derivatives is significantly reduced compared to that of the unsubstituted counterpart.
机译:由相应的对位取代的芳基卤化物合成适当保护的对氨基苯基H-次膦酸和酯,是通过在不存在或存在正硅酸四烷基酯的情况下,通过次磷酸苯胺的亚磷酸苯酯的钯催化交叉偶联反应完成的。分别提供游离的H-次膦酸或相应的酯。随后将由游离的H-次膦酸或酯原位生成的P-III物种或磷阴离子共轭加成至2-亚甲基戊二酸酯,提供了对氨基苯甲酰基谷氨酸的芳基次膦酸类似物。将这些适当保护的对氨基苯基次膦酸酯与6-(溴甲基)哌啶或相应的(溴甲基)吡啶吡啶烷基化,然后水解除去保护基,得到叶酸和相关抗叶酸的目标芳基次膦酸类似物。或者,为了以稍大的规模合成叶酸或5-脱氮叶酸酯类似物,用N-2-乙酰基或N-2-新戊酰基-6-甲酰基蝶呤或相应的甲酰基吡啶并吡啶和相同的适当保护的对氨基苯基进行还原胺化次膦酸酯,然后除去保护基是优选的。在该研究过程中,观察到与未取代的对应物相比,苯胺氮和衍生自对氨基苯基次膦酸衍生物的各种P-III物质的亲核性均显着降低。

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