nitrile hydratases
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Author(s):  
Edvan do Carmo Santos ◽  
Luiz Henrique Sales Menezes ◽  
Carolline Silva Santos ◽  
Paulo Vinicius Bispo Santana ◽  
Glêydison Amarante Soares ◽  
...  


Author(s):  
Shilei Sun ◽  
Jiangsheng Zhou ◽  
Jihong Jiang ◽  
Yijun Dai ◽  
Miaomiao Sheng


2021 ◽  
Vol 20 (1) ◽  
Author(s):  
Yun-Xiu Zhao ◽  
Li Wang ◽  
Ke-Xin Chen ◽  
Neng-Dang Jiang ◽  
Shi-Lei Sun ◽  
...  

Abstract Background Flonicamid (N-cyanomethyl-4-trifluoromethylnicotinamide, FLO) is a new type of pyridinamide insecticide that regulates insect growth. Because of its wide application in agricultural production and high solubility in water, it poses potential risks to aquatic environments and food chain. Results In the present study, Ensifer adhaerens CGMCC 6315 was shown to efficiently transform FLO into N-(4-trifluoromethylnicotinoyl) glycinamide (TFNG-AM) via a hydration pathway mediated by two nitrile hydratases, PnhA and CnhA. In pure culture, resting cells of E. adhaerens CGMCC 6315 degraded 92% of 0.87 mmol/L FLO within 24 h at 30 °C (half-life 7.4 h). Both free and immobilized (by gel beads, using calcium alginate as a carrier) E. adhaerens CGMCC 6315 cells effectively degraded FLO in surface water. PnhA has, to our knowledge, the highest reported degradation activity toward FLO, Vmax = 88.7 U/mg (Km = 2.96 mmol/L). Addition of copper ions could increase the enzyme activity of CnhA toward FLO by 4.2-fold. Structural homology modeling indicated that residue β-Glu56 may be important for the observed significant difference in enzyme activity between PnhA and CnhA. Conclusions Application of E. adhaerens may be a good strategy for bioremediation of FLO in surface water. This work furthers our understanding of the enzymatic mechanisms of biodegradation of nitrile-containing insecticides and provides effective transformation strategies for microbial remediation of FLO contamination.



2021 ◽  
Vol 157 ◽  
pp. 105141
Author(s):  
Leilei Guo ◽  
Wenlong Yang ◽  
Xi Cheng ◽  
Zhixia Fan ◽  
Ximeng Chen ◽  
...  


Molecules ◽  
2020 ◽  
Vol 25 (11) ◽  
pp. 2521 ◽  
Author(s):  
Birgit Grill ◽  
Maximilian Glänzer ◽  
Helmut Schwab ◽  
Kerstin Steiner ◽  
Daniel Pienaar ◽  
...  

Nitrile hydratases (NHase) catalyze the hydration of nitriles to the corresponding amides. We report on the heterologous expression of various nitrile hydratases. Some of these enzymes have been investigated by others and us before, but sixteen target proteins represent novel sequences. Of 21 target sequences, 4 iron and 16 cobalt containing proteins were functionally expressed from Escherichia coli BL21 (DE3) Gold. Cell free extracts were used for activity profiling and basic characterization of the NHases using the typical NHase substrate methacrylonitrile. Co-type NHases are more tolerant to high pH than Fe-type NHases. A screening for activity on three structurally diverse nitriles was carried out. Two novel Co-dependent NHases from Afipia broomeae and Roseobacter sp. and a new Fe-type NHase from Gordonia hydrophobica were very well expressed and hydrated methacrylonitrile, pyrazine-carbonitrile, and 3-amino-3-(p-toluoyl)propanenitrile. The Co-dependent NHases from Caballeronia jiangsuensis and Microvirga lotononidis, as well as two Fe-dependent NHases from Pseudomonades, were—in addition—able to produce the amide from cinnamonitrile. Summarizing, seven so far uncharacterized NHases are described to be promising biocatalysts.



2020 ◽  
Author(s):  
Matthew Cranswick ◽  
Brittany N. Mullen
Keyword(s):  


2020 ◽  
Author(s):  
Matthew Cranswick ◽  
Brittany N. Mullen
Keyword(s):  


2019 ◽  
Vol 46 (4) ◽  
pp. 4661-4673 ◽  
Author(s):  
K. Supreetha ◽  
Saroja Narsing Rao ◽  
D. Srividya ◽  
H. S. Anil ◽  
S. Kiran
Keyword(s):  


2017 ◽  
Vol 56 (21) ◽  
pp. 13390-13400 ◽  
Author(s):  
Mario Prejanò ◽  
Tiziana Marino ◽  
Carmen Rizzuto ◽  
Josè Carlos Madrid Madrid ◽  
Nino Russo ◽  
...  


PLoS ONE ◽  
2017 ◽  
Vol 12 (6) ◽  
pp. e0179833 ◽  
Author(s):  
Yao Lan ◽  
Xiaohuan Zhang ◽  
Zhongmei Liu ◽  
Li Zhou ◽  
Ruihua Shen ◽  
...  


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