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potassium (E)-4-(3-bromophenyl)-2-oxobut-3-enoate is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1267589-63-8

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1267589-63-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1267589-63-8 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,2,6,7,5,8 and 9 respectively; the second part has 2 digits, 6 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 1267589-63:
(9*1)+(8*2)+(7*6)+(6*7)+(5*5)+(4*8)+(3*9)+(2*6)+(1*3)=208
208 % 10 = 8
So 1267589-63-8 is a valid CAS Registry Number.

1267589-63-8Relevant academic research and scientific papers

Potassium 2-oxo-3-enoates as Effective and Versatile Surrogates for α, β-Unsaturated Aldehydes in NHC-Catalyzed Asymmetric Reactions

Gao, Yaru,Ma, Yafei,Xu, Chen,Li, Lin,Yang, Tianjian,Sima, Guoqing,Fu, Zhenqian,Huang, Wei

, p. 479 - 484 (2018)

Potassium 2-oxo-3-enoates, which are readily prepared at scale and easily stored, have been found to be effective and versatile surrogates for α,β-unsaturated aldehydes in NHC-catalyzed asymmetric reactions. Promoted by chiral N-heterocyclic carbenes combined with LiCl, these easy-to-handle solid salts could release of CO2 and then undergo asymmetric reactions via homoenolate and α, β-unsaturated acyl azolium intermediate. The reactions have broad substrate scopes with high enantioselectivities. (Figure presented.).

Structure-Activity Relationship Studies of α-Ketoamides as Inhibitors of the Phospholipase A and Acyltransferase Enzyme Family

Zhou, Juan,Mock, Elliot D.,Al Ayed, Karol,Di, Xinyu,Kantae, Vasudev,Burggraaff, Lindsey,Stevens, Anna F.,Martella, Andrea,Mohr, Florian,Jiang, Ming,Van Der Wel, Tom,Wendel, Tiemen J.,Ofman, Tim P.,Tran, Yvonne,De Koster, Nicky,Van Westen, Gerard J.P.,Hankemeier, Thomas,Van Der Stelt, Mario

, p. 9340 - 9359 (2020/10/19)

The phospholipase A and acyltransferase (PLAAT) family of cysteine hydrolases consists of five members, which are involved in the Ca2+-independent production of N-acylphosphatidylethanolamines (NAPEs). NAPEs are lipid precursors for bioactive N-acylethanolamines (NAEs) that are involved in various physiological processes such as food intake, pain, inflammation, stress, and anxiety. Recently, we identified α-ketoamides as the first pan-active PLAAT inhibitor scaffold that reduced arachidonic acid levels in PLAAT3-overexpressing U2OS cells and in HepG2 cells. Here, we report the structure-activity relationships of the α-ketoamide series using activity-based protein profiling. This led to the identification of LEI-301, a nanomolar potent inhibitor for the PLAAT family members. LEI-301 reduced the NAE levels, including anandamide, in cells overexpressing PLAAT2 or PLAAT5. Collectively, LEI-301 may help to dissect the physiological role of the PLAATs.

Facile synthesis of substituted diaryl sulfones: Via a [3 + 3] benzannulation strategy

Tang, Xiang-Zheng,Tong, Lang,Liang, Hua-Ju,Liang, Jie,Zou, Yong,Zhang, Xue-Jing,Yan, Ming,Chan, Albert S. C.

supporting information, p. 3560 - 3563 (2018/05/26)

A base-mediated [3 + 3] benzannulation strategy for the conversion of 1,3-bis(sulfonyl)propenes and β,γ-unsaturated α-ketoesters to diaryl sulfones has been developed. This method provides facile, metal-free and efficient access to highly substituted diaryl sulfones in good to excellent yields. In addition, the sulfonyl group could be easily removed or converted to other functional groups via an organostannane intermediate.

A mild method for indium(III)-catalyzed 1,4-hydrosilylation of α,β-enone esters with triethylsilane and trifluoroacetic acid

Xing, Ping,Zang, Wei,Huang, Zuo-Gang,Zhan, Yue-Xiong,Zhu, Chuan-Jun,Jiang, Biao

supporting information, p. 2269 - 2273 (2012/10/30)

A chemo- and stereoselective 1,4-hydrosilylation of α,β-enone esters was developed using triethylsilane and trifluoroacetic acid under indium chloride catalysis. Georg Thieme Verlag Stuttgart ? New York.

Organocatalytic Functionalization of carboxylic acids: Isothiourea- catalyzed asymmetric intra- and intermolecular Michael addition-lactonizations

Belmessieri, Dorine,Morrill, Louis C.,Simal, Carmen,Slawin, Alexandra M. Z.,Smith, Andrew D.

supporting information; experimental part, p. 2714 - 2720 (2011/04/23)

Tetramisole promotes the catalytic asymmetric intramolecular Michael addition-lactonization of a variety of enone acids, giving carbo- and heterocyclic products with high diastereo- and enantiocontrol (up to 99:1 dr, up to 99% ee) that are readily derivatized to afford functionalized indene and dihydrobenzofuran carboxylates. Chiral isothioureas also promote the catalytic asymmetric intermolecular Michael addition-lactonization of arylacetic acids and α-keto-β,γ-unsaturated esters, giving anti-dihydropyranones with high diastereo- and enantiocontrol (up to 98:2 dr, up to 99% ee).

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