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Dive into the research topics where Linda L. Wotring is active.

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Featured researches published by Linda L. Wotring.


Nucleosides, Nucleotides & Nucleic Acids | 1987

Triciribine (TCN), A Novel Tricyclic Adenosine Analog with Anticancer Activity

Linda L. Wotring; Joseph L. Roti; Jerry L. Hudson; Joan E. Passiatore; Katherine Z. Borysko; Richard D. Newcomb; Leroy B. Townsend

Abstract Triciribine shows promise as an antitumor drug and is currently in clinical trials. In L1210 cells in vitro, triciribine lethality is associated with inhibition of DNA synthesis, a G1(-S) cell progression block and slowing of progression of cells through s phase.


Nucleosides, Nucleotides & Nucleic Acids | 1992

Synthesis, Antiproliferative, and Antiviral Evaluation of Certain Acyclic 6-Substituted Pyrrolo[2,3-D]-pyrimidine Nucleoside Analogs Related to Sangivamycin and Toyocamycin

Eric E. Swayze; William M. Shannon; Robert W. Buckheit; Linda L. Wotring; John C. Drach; Leroy B. Townsend

Abstract A number of 6-substituted 7-[(2-hydroxyethoxy)methyl]pyrrolo[2,3-d]pyrimidine and 7-[(1,3-dihydroxy-2-propoxy)methyl]pyrrolo[2,3-d]pyrimidine derivatives related to the nucleoside antibiotics toyocamycin and sangivamycin were prepared and tested for their biological activity. Treatment of 2-amino-5-bromo-3,4-dicyanopyrrole (2) with triethylorthoformate, followed by alkylation via the sodium salt method with either 2-(acetoxyethoxy)methyl bromide or (1,3-diacetoxy-2-propoxy)methyl bromide, furnished the corresponding N-substituted pyrroles 3a and 3b. These compounds were then smoothly converted to the requisite deprotected 4-amino-6-bromopyrrolo[2,3-d]-pyrimidine-5-carbonitriles 5a and 5b (toyocamycin analogs) by methanolic ammonia. The 6-amino-derivatives were obtained by a displacement of the bromo group with liquid ammonia. Conventional functional group transformations involving the 5-cyano group furnished the 5-carboxamide (sangivamycin) and 5-thioamide analogs. Compounds substituted at the 7-...


Nucleosides, Nucleotides & Nucleic Acids | 1994

Synthesis and Biological Activity of 4-Amino-1-(β-D-ribofuranosyl)imidazo[4,5-d]pyridazin-7-one

David A. Berry; Linda L. Wotring; John C. Drach; Leroy B. Townsend

Abstract The Lewis acid catalyzed ribosylation of 5(4)-cyano-4(5)-(5-methyl-1,2,4-oxadiazol-3-yl)-1H-imidazole (2) with 1-O-acetyl-2,3,5-tri-O-benzoyl-B-D-ribose gave only 4-(5-methyl-1,2,4-oxadiazol-3-yl)-1-(2,3,5-tri-O-benzoy 1-B-D-ribofuranosyl)imidazole-5-carbonitrile (3). Treatment of 3 with methanolic ammonia gave 4-(5-methyl-1,2,4-oxadiazol-3-yl)-1-(6-D-ribofuranosyl)imidazole-5-carbonitrile (4). Treatment of 4 with hydrogen peroxide in ammonia gave -(5-methyl-1,2,4-oxadiazol-3-yl)-1-(B-D-ribofuranosyl)imidazole-5-carboxamide (5). When 5 was treated with sodium hydride in dimthyl-sulfoxide a rearrangement (mononuclear heterocyclic rearrangement, m.h.r.) occurred to give a modest 17% yield of 4-acetamido-1-(B-D ribofuranosyl)imidazo[4,5-d]pyridazin-7-one (6). Treatment of 6 with aqueous ammonia gave4-amino-l-(B-D-ribofuranosyl)imidazo[4,5-d]pyridazin-7-one (1). The synthesis of compound 1 using the m.h.r. for the preparation of a single regioisomer of the imidazo[4,5-d]pyridazin-7-one ring system, h...


Nucleosides, Nucleotides & Nucleic Acids | 1994

Synthesis and biological activity of the novel adenosine analogs; 3-amino-6-(β-D-ribofuranosyl)pyrazolo[3,4-c]pyrazole and 3-amino-1-methyl-6-(β-D-ribofuranosyl)pyrazolo[3,4-c]pyrazole

David A. Berry; Linda L. Wotring; John C. Drach; Leroy B. Townsend

Abstract Chemical modification of the 4-nitrile group in 5-amino-1-(2,3,5-tri-O-benzyl-β-D-ribofuranosyl)pyrazole-4-carbonitrile (1) afforded 5-amino-4-(5-methyl-1,2,4-oxadiazol-3-yl)-1-(2,3,5-tri-O-benzyl-β-D-ribofuran osyl)pyrazole (3). The methylation of 3, via a three step procedure, gave 5-methylamino-4-(5-methyl-1,2,4-oxadiazol-3-yl)-1-(2,3,5-tri-O-benzyl-β-D-ribofuranosyl)pyrazole (3a). The mononuclear heterocyclic rearrangement (m.h.r) of 3 and 3a, provided a convenient route to the novel azapentalene adenosine analogs 3-amino-6-(β-D-ribofuranosyl)pyrazolo[3,4-c]pyrazole (6) and 3-amino-1-methyl-6-(β-D-ribofuranosyl)pyrazolo[3,4-c]pyrazole (6a), respectively. Compound 6 exhibited no cytotoxicity when screened in vitro against either mouse L1210 leukemic cells or human foreskin fibroblasts. Nor was it active against human cytomegalovirus. Compound 6a was designed and prepared to investigate the possibility that the lack of biological activity of 6 might be due to annular tautomerization limiting th...


Journal of Medicinal Chemistry | 1993

Synthesis of 2,4-disubstituted thiazoles and selenazoles as potential antitumor and antifilarial agents: 1. Methyl 4-(isothiocyanatomethyl)thiazole-2-carbamates, -selenazole-2- carbamates, and related derivatives.

Yatendra Kumar; Rachel Green; Katherine Z. Borysko; Dean S. Wise; Linda L. Wotring; Leroy B. Townsend


Journal of Medicinal Chemistry | 1981

Pyrazolopyrimidine nucleosides. 12. Synthesis and biological activity of certain pyrazolo[3,4-d]pyrimidine nucleosides related to adenosine.

Ganapati A. Bhat; Jean Louis G. Montero; Raymond P. Panzica; Linda L. Wotring; Leroy B. Townsend


Journal of Medicinal Chemistry | 1989

Synthesis, cytotoxicity, and antiviral activity of some acyclic analogues of the pyrrolo[2,3-d]pyrimidine nucleoside antibiotics tubercidin, toyocamycin, and sangivamycin

Pranab K. Gupta; Sylvia Daunert; M. Reza Nassiri; Linda L. Wotring; John C. Drach; Leroy B. Townsend


Journal of Medicinal Chemistry | 1993

Synthesis of 2,4-disubstituted thiazoles and selenazoles as potential antifilarial and antitumor agents. 2. 2-Arylamido and 2-alkylamido derivatives of 2-amino-4-(isothiocyanatomethyl)thiazole and 2-amino-4-(isothiocyanatomethyl)selenazole.

Yatendra Kumar; Rachel Green; Dean S. Wise; Linda L. Wotring; Leroy B. Townsend


Cancer Research | 1980

Thioguanine-induced s and g2 blocks and their significance to the mechanism of cytotoxicity.

Linda L. Wotring; Joseph L. Roti Roti


Journal of Medicinal Chemistry | 2000

Deoxy sugar analogues of triciribine: correlation of antiviral and antiproliferative activity with intracellular phosphorylation.

Anthony R. Porcari; Roger G. Ptak; Katherine Z. Borysko; Julie M. Breitenbach; Sauro Vittori; Linda L. Wotring; John C. Drach; Leroy B. Townsend

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Dean S. Wise

University of New Mexico

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Joseph L. Roti Roti

Washington University in St. Louis

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Rachel Green

Johns Hopkins University School of Medicine

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