One‐step reductive amination of 5‐hydroxymethylfurfural into 2,5‐bis(aminomethyl)furan over Raney Ni

ChemSusChem ◽  
2021 ◽  
Author(s):  
Zuojun Wei ◽  
Yuran Cheng ◽  
Kou Zhou ◽  
Yue Zeng ◽  
En Yao ◽  
...  

Author(s):  
Feifei Tong ◽  
Zongmin Qin ◽  
Hongyue Wang ◽  
Yingying Jiang ◽  
Junkuan Li ◽  
...  

Chiral amino alcohols are prevalent synthons in pharmaceuticals and synthetic bioactive compounds. The efficient synthesis of chiral amino alcohols using ammonia as the sole amino donor under mild conditions is highly desired and challenging in organic chemistry and biotechnology. Our previous work explored a panel of engineered amine dehydrogenases (AmDHs) derived from amino acid dehydrogenase (AADH), enabling the one-step synthesis of chiral amino alcohols via the asymmetric reductive amination of α-hydroxy ketones. Although the AmDH-directed asymmetric reduction is in a high stereoselective manner, the activity is yet fully excavated. Herein, an engineered AmDH derived from a leucine dehydrogenase from Sporosarcina psychrophila (SpAmDH) was recruited as the starting enzyme, and the combinatorial active-site saturation test/iterative saturation mutagenesis (CAST/ISM) strategy was applied to improve the activity. After three rounds of mutagenesis in an iterative fashion, the best variant wh84 was obtained and proved to be effective in the asymmetric reductive amination of 1-hydroxy-2-butanone with 4-fold improvements in kcat/Km and total turnover number (TTN) values compared to those of the starting enzyme, while maintaining high enantioselectivity (ee >99%) and thermostability (T5015 >53°C). In preparative-scale reaction, the conversion of 100 and 200 mM 1-hydroxy-2-butanone catalyzed by wh84 was up to 91–99%. Insights into the source of an enhanced activity were gained by the computational analysis. Our work expands the catalytic repertoire and toolbox of AmDHs.



2019 ◽  
Vol 10 (16) ◽  
pp. 4509-4514 ◽  
Author(s):  
Zitong Wu ◽  
Shaozhi Du ◽  
Guorui Gao ◽  
Wenkun Yang ◽  
Xiongyu Yang ◽  
...  

Direct asymmetric reductive amination utilizing secondary amines as an efficient tool for one-step construction of tertiary chiral amines.



Synlett ◽  
1995 ◽  
Vol 1995 (10) ◽  
pp. 1079-1080 ◽  
Author(s):  
Sukanta Bhattacharyya ◽  
Arindam Chatterjee ◽  
John S. Williamson
Keyword(s):  


2017 ◽  
Vol 87 (6) ◽  
pp. 1323-1326 ◽  
Author(s):  
O. I. Artyushin ◽  
E. V. Sharova ◽  
N. M. Vinogradova ◽  
G. K. Genkina ◽  
A. A. Moiseeva ◽  
...  
Keyword(s):  


2020 ◽  
Vol 75 (2) ◽  
pp. 106-109
Author(s):  
O. I. Artyushin ◽  
V. K. Brel ◽  
A. A. Moiseeva
Keyword(s):  


Catalysts ◽  
2019 ◽  
Vol 9 (4) ◽  
pp. 305 ◽  
Author(s):  
Jenő Gacs ◽  
Wuyuan Zhang ◽  
Tanja Knaus ◽  
Francesco G. Mutti ◽  
Isabel W.C.E. Arends ◽  
...  

The consecutive photooxidation and reductive amination of various alcohols in a cascade reaction were realized by the combination of a photocatalyst and several enzymes. Whereas the photocatalyst (sodium anthraquinone-2-sulfonate) mediated the light-driven, aerobic oxidation of primary and secondary alcohols, the enzymes (various ω-transaminases) catalyzed the enantio-specific reductive amination of the intermediate aldehydes and ketones. The system worked in a one-pot one-step fashion, whereas the productivity was significantly improved by switching to a one-pot two-step procedure. A wide range of aliphatic and aromatic compounds was transformed into the enantiomerically pure corresponding amines via the photo-enzymatic cascade.



2011 ◽  
Vol 52 (12) ◽  
pp. 1310-1312 ◽  
Author(s):  
Péter Falus ◽  
Zoltán Boros ◽  
Gábor Hornyánszky ◽  
József Nagy ◽  
Ferenc Darvas ◽  
...  


Synthesis ◽  
2020 ◽  
Author(s):  
Yanping Xia ◽  
Lu Ouyang ◽  
Jianhua Liao ◽  
Xiao Yang ◽  
Renshi Luo

Hydrogenation of C=C bond and reductive amination is important transformation utilized in chemistry. An efficient and facile one-pot transfer hydrogenation of C=C bond and reductive amination of C=N bond of enones and amines was reported using the iridium complexes as catalysts and formic acid as hydrogen source in aqueous medium, which shows environmentally friendly. In this catalytic system, a wide range of α-alkylated amine compounds were obtained in excellent yields by one-pot transfer hydrogenation of C=C bond and reductive amination. The practical application of this protocol is characterized by gram-scale transformation.



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