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(DPEPhos)Ni(mesityl)Br: An Air-Stable Pre-Catalyst for Challenging Suzuki-Miyaura Cross-Couplings Leading to Unsymmetrical Biheteroaryls

The successful application of (DPEPhos)Ni(mesityl)Br (C1) as a pre-catalyst in the Suzuki-Miyaura cross-coupling of heteroaryl chlorides or bromides and heteroaryl boronic acids is reported. The use of C1 in this context allows for such reactions to be conducted under mild conditions (2 mol% Ni, 25 C), including cross-couplings leading to unsymmetrical biheteroaryls. Successful transformations of this type involving problematic pyridinyl boronic acid substrates (10 mol% Ni, 60 C) are also described.

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Three-component coupling reactions of isoquinolines, dimethyl acetylenedicarboxylate and indoles: a facile synthesis of 3-indolyl-1,2-dihydro-2-isoquinolinyl-2-butenedioate

A three-component coupling of isoquinolines, dimethyl acetylenedicarboxylate (DMAD) and indoles is achieved for the first time to produce dimethyl (E)-2-[1-(1H-3-indolyl)-1,2-dihydro-2-isoquinolinyl]-2-butenedioates in excellent yields and with high selectivity. The reaction proceeds smoothly at room temperature without a catalyst. Quinoline, DMAD and indole also undergo smooth coupling to furnish dimethyl (E)-2-[2-(1H-3-indolyl)-1,2-dihydro-1-quinolinyl]-2-butenedioate under similar conditions. This method is very useful to functionalize both indoles and aza-aromatic compounds in a one-pot operation.

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2-substituted 1,2-benzisothiazole derivatives and their use as serotonin antagonists (5-HT1A, 5HT1B and 5-HT1D)

where the substituents have the meanings indicated in the description, their preparation and use as serotonin antagonists.

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An efficient synthesis of 4-aryl-1,2,3,4-tetrahydroisoquinolines

An efficient synthesis of 4-aryl substituted 1,2,3,4-tetrahydroisoquinolines is described. Suzuki coupling of 4-bromoisoquinoline with arylboronic acids gives the 4-arylisoquinolines which can be reduced with NaBH3CN to the 1,2,3,4-tetrahydroisoquinolines.

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A reagent for the one-step preparation of potassium acyltrifluoroborates (KATs) from aryl- and heteroarylhalides

Potassium acyltrifluoroborates (KATs) are fascinating functional groups whose further exploration is limited by poor synthetic access. Documented herein is the design and synthesis of a new reagent for their one-step preparation from aryl- and heteroarylhalides. The reagent is a stable, soluble zwitterion prepared by S-alkylation of a novel thioformamide trifluoroboronate. The KATs are prepared by adding one equivalent of nBuLi to a mixture of the aryl halide and the reagent at -78 C. This protocol is suitable for the preparation of KATs containing pyridines, esters, nitro groups, and halides.

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Gold(III) chloride-catalyzed three-component reaction: A facile synthesis of alkynyl derivatives of 1,2-dihydroquinolines and isoquinolines

(Chemical Equation Presented) Gold(III) chloride is found to be an effective catalyst for the addition of alkynes on activated quinoline/ isoquinolines to produce a series of alkynyl-substituted 1,2-dihydroquinolines and isoquinolines in a single-step operation. The easy availability of starting materials, convenient synthetic procedure, operational simplicity, and high regioselectivity makes this strategy very useful for the preparation of enyne derivatives of aza-aromatic compounds.

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Efficient asymmetric synthesis of Tryptophan Analogues having useful Photophysical properties

Two new fluorescent probes of protein structure and dynamics have been prepared by concise asymmetric syntheses using the Schoellkopf chiral auxiliary. The site-specific incorporation of one probe into dihydrofolate reductase is reported. The utility of these tryptophan derivatives lies in their absorption and emission maxima which differ from those of tryptophan, as well as in their large Stokes shifts and high molar absorptivities.

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Palladium-catalysed direct diarylations of pyrazoles with aryl bromides: A one step access to 4,5-diarylpyrazoles

The palladium-catalysed direct arylation of pyrazoles with aryl halides, using PdCl(C3H5)(dppb)/KOAc catalyst, reveals a similar reactivity of C4 and C5 CH bonds of pyrazoles, whereas the C3 CH bond is almost unreactive, and gives access in one step to a variety of 4,5-diarylpyrazoles. This CH bond functionalisation reaction tolerates a variety of substituents on the aryl bromide such as nitro, cyano, formyl, propionyl, ester, chloro, fluoro or trifluoromethyl groups.

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INHIBITORS OF SARM1

The present disclosure provides compounds and methods useful for inhibiting SARM1 and/or treating and/or preventing neurodegenerative disease or axonal degeneration. The provided SARM1 inhibitors may reduce or inhibit binding of NAD+ by SARM1. Alternatively, provided SARM1 inhibitors bind to SARM1 within a pocket comprising one or more catalytic residues (e.g., a catalytic cleft of SARM1).

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5- substituted tetralones as inhibitors of ras farnesyl trransferase

The present invention provides novel 5-substituted tetralones of Formulas (I), (II), (III) and (IV) and pharmaceutically acceptable salts, esters, amides, and prodrugs thereof, which are useful for treating and preventing uncontrolled or abnormal proliferation of tissues, such as cancer, atherosclerosis, restenosis, and psoriasis. Specifically, the present invention relates to compounds that inhibit the farnesyl transferase enzyme. 1

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