Synthesis of <i>p</i>-Aminophenyl Aryl H-Phosphinic Acids and Esters via Cross-Coupling Reactions:  Elaboration to Phosphinic Acid Pseudopeptide Analogues of Pteroyl Glutamic Acid and Related Antifolates

Синтез арил-H-фосфиновых кислот и эфиров p-аминофенила посредством реакций кросс-сочетания: получение псевдопептидных аналогов птероилглутаминовой кислоты и родственных антифолатов на основе фосфиновых кислот
James K. Coward, Yonghong Yang
2007-06-28

H-phosphinic acidsaryl phosphinic acid analoguesfolate antifolatespalladium-catalyzed cross-couplingreductive amination
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 PIII 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 N2-acetyl or N2-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 PIII species derived from p-aminophenyl phosphinic acid derivatives is significantly reduced compared to that of the unsubstituted counterpart.
1
Alkylation with bromomethyl pteridines or pyridopyrimidines, followed by deprotection, gives phosphinic acid analogues of folic acid and related antifolates.
2
Conjugate addition of in situ generated PIII species or phosphorus anions to 2-methylene glutarate esters constructs p-aminobenzoyl glutamic acid phosphinic analogues.
3
For larger-scale folate and 5-deazafolate analogue synthesis, reductive amination with protected formylpterins or formylpyridopyrimidines is preferred; p-aminophenyl substitution reduces aniline and PIII nucleophilicity.
4
Pd-catalyzed cross-coupling of anilinium hypophosphite with para-substituted aryl halides produces suitably protected p-aminophenyl H-phosphinic acids or esters.
5
Using tetraalkyl orthosilicate during coupling selectively provides H-phosphinic esters, whereas its absence affords the free phosphinic acids.

p-aminophenyl aryl H-phosphinic acids and esters and their folate/antifolate pseudopeptide analogues

Their synthesis by Pd-catalyzed cross-coupling and subsequent conjugate addition or alkylation/reductive amination, including the reduced nucleophilicity of the aniline nitrogen and derived PIII species

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2007-06-28
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James K. Coward
Yonghong Yang
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