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Dive into the research topics where Barry Arthur Wexler is active.

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Featured researches published by Barry Arthur Wexler.


Synthetic Communications | 1998

Acetyl Chloride-Methanol as a Convenient Reagent for: A) Quantitative Formation of Amine Hydrochlorides B) Carboxylate Ester Formation C) Mild Removal of N-t-Boc-Protective Group.

A. Nudelman; Yosi Bechor; Eliezer Falb; Bilha Fischer; Barry Arthur Wexler; Abraham Nudelman

Abstract Hydrogen chloride qualitatively generated in situ by the addition of acetyl chloride to alcoholic solutions is a useful reagent for carboxylic acid esterification, N-t-Boc deprotection and phosphoramide solvolysis reactions.


Pesticide Science | 1999

The design and synthesis of inhibitors of dethiobiotin synthetase as potential herbicides

Alan Ralph Rendina; Wendy Sue Taylor; Katharine J. Gibson; George H. Lorimer; Dennis R. Rayner; Lockett Ba; Kevin T. Kranis; Barry Arthur Wexler; Dana Marcovici-Mizrahi; A. Nudelman; Abraham Nudelman; Eileen Marsilii; Hongji Chi; Zdislaw Wawrzak; Joseph C. Calabrese; Weijun Huang; Jia Jia; Gunter Schneider; Ylva Lindqvist; Guang Yang

Dethiobiotin synthetase (DTBS; E.C. 6.6.6.6), the penultimate enzyme in the biosynthesis of the essential vitamin biotin, is a new potential target for novel herbicides. Inhibitors were designed based on mechanistic and structural information. The in-vitro activities of these potential inhibitors versus the bacterial enzyme are reported here. Mimics of 7,8-diaminopelargonic acid (DAPA) or the DAPA carbamate reaction intermediate were substrates or partial substrates for the enzyme. Synergistic binding with ATP was noted with compounds which contained an amino functionality. NMR studies and X-ray structures confirmed that the inhibitors could be phosphorylated by the enzyme. Several series of potential inhibitors were designed to take advantage of this partial substrate activity by generating potentially more tightly bound phosphorylated inhibitors in situ. Structure-activity relationships for these series based on both substrate and inhibitory activity are described herein. An X-ray structure for one of these inhibitors is also discussed. Although considerable potential for inhibitors of this type was demonstrated, none of the compounds reported showed sufficient herbicidal activity to be a commercial proposition.


Archive | 1987

Herbicidal pyridine sulfonamides

Mary Ann Hanagan; Barry Arthur Wexler


Archive | 1987

Herbicidal heterocyclic sulfonamides

Barry Arthur Wexler


Pest Management Science | 2007

Aryl chain analogues of the biotin vitamers as potential herbicides. Part 3

Tali Ashkenazi; Dalia Pinkert; A. Nudelman; Ayala Widberg; Barry Arthur Wexler; Vernon A. Wittenbach; Dennis H. Flint; Abraham Nudelman


Archive | 1987

Herbicidal pyrazole sulfonamides

Barry Arthur Wexler


Archive | 1984

Herbicidal N-[(4,6-substituted pyrimidin-2-yl)aminocarbonyl]-substituted fused pyrazole-3-sulfonamides

Barry Arthur Wexler


Archive | 1987

Herbicidal pyridine N-oxide sulfonylureas

William Eldo Barnette; Thomas Robert Dean; Wallace Christian Petersen; Barry Arthur Wexler


Archive | 1986

Herbicidal 3-[[(4,6-dimethoxypyrimidine-2-yl)aminocarbonyl]aminosulfonylmethyl]-1,5 -dimethyl-1H-pyrazole-4-carboxylic acids, ethyl esters

Barry Arthur Wexler


Archive | 1987

As herbicidally active pyridine-sulfonamides.

Mary Ann Hanagan; Barry Arthur Wexler

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