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Tumor Targeting with Novel 6-Substituted Pyrrolo [2,3-d] Pyrimidine Antifolates with Heteroatom Bridge Substitutions via Cellular Uptake by Folate Receptor ? and the Proton-Coupled Folate Transporter and Inhibition of de Novo Purine Nucleotide Biosynthesis.


ABSTRACT: Targeted antifolates with heteroatom replacements of the carbon vicinal to the phenyl ring in 1 by N (4), O (8), or S (9), or with N-substituted formyl (5), acetyl (6), or trifluoroacetyl (7) moieties, were synthesized and tested for selective cellular uptake by folate receptor (FR) ? and ? or the proton-coupled folate transporter. Results show increased in vitro antiproliferative activity toward engineered Chinese hamster ovary cells expressing FRs by 4-9 over the CH2 analogue 1. Compounds 4-9 inhibited de novo purine biosynthesis and glycinamide ribonucleotide formyltransferase (GARFTase). X-ray crystal structures for 4 with FR? and GARFTase showed that the bound conformations of 4 required flexibility for attachment to both FR? and GARFTase. In mice bearing IGROV1 ovarian tumor xenografts, 4 was highly efficacious. Our results establish that heteroatom substitutions in the 3-atom bridge region of 6-substituted pyrrolo[2,3-d]pyrimidines related to 1 provide targeted antifolates that warrant further evaluation as anticancer agents.

SUBMITTER: Golani LK 

PROVIDER: S-EPMC5018213 | biostudies-literature | 2016 Sep

REPOSITORIES: biostudies-literature

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Tumor Targeting with Novel 6-Substituted Pyrrolo [2,3-d] Pyrimidine Antifolates with Heteroatom Bridge Substitutions via Cellular Uptake by Folate Receptor α and the Proton-Coupled Folate Transporter and Inhibition of de Novo Purine Nucleotide Biosynthesis.

Golani Lalit K LK   Wallace-Povirk Adrianne A   Deis Siobhan M SM   Wong Jennifer J   Ke Jiyuan J   Gu Xin X   Raghavan Sudhir S   Wilson Mike R MR   Li Xinxin X   Polin Lisa L   de Waal Parker W PW   White Kathryn K   Kushner Juiwanna J   O'Connor Carrie C   Hou Zhanjun Z   Xu H Eric HE   Melcher Karsten K   Dann Charles E CE   Matherly Larry H LH   Gangjee Aleem A  

Journal of medicinal chemistry 20160826 17


Targeted antifolates with heteroatom replacements of the carbon vicinal to the phenyl ring in 1 by N (4), O (8), or S (9), or with N-substituted formyl (5), acetyl (6), or trifluoroacetyl (7) moieties, were synthesized and tested for selective cellular uptake by folate receptor (FR) α and β or the proton-coupled folate transporter. Results show increased in vitro antiproliferative activity toward engineered Chinese hamster ovary cells expressing FRs by 4-9 over the CH2 analogue 1. Compounds 4-9  ...[more]

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