keyword
https://read.qxmd.com/read/38601780/genome-mining-for-new-enzyme-chemistry
#21
REVIEW
Dinh T Nguyen, Douglas A Mitchell, Wilfred A van der Donk
A revolution in the field of biocatalysis has enabled scalable access to compounds of high societal values using enzymes. The construction of biocatalytic routes relies on the reservoir of available enzymatic transformations. A review of uncharacterized proteins predicted from genomic sequencing projects shows that a treasure trove of enzyme chemistry awaits to be uncovered. This Review highlights enzymatic transformations discovered through various genome mining methods and showcases their potential future applications in biocatalysis...
April 5, 2024: ACS Catalysis
https://read.qxmd.com/read/38598092/recombinant-amidases-recent-insights-and-its-applications-in-the-production-of-industrially-important-fine-chemicals
#22
REVIEW
Ananta Ganjoo, Vikash Babu
The current research for the synthesis of industrially important fine chemicals is more inclined towards developing enzyme-based processes. The biotransformation reactions wherein microbial cells/enzymes are used, have become essential in making the process efficient, green, and economical. Amongst industrially important enzymes, amidase is one of the most versatile tools in biocatalysis and biotransformation reactions. It shows broad substrate specificity and sturdy functional characteristics because of its promiscuous nature...
April 10, 2024: Molecular Biotechnology
https://read.qxmd.com/read/38597773/an-artificial-enzyme-for-asymmetric-nitrocyclopropanation-of-%C3%AE-%C3%AE-unsaturated-aldehydes-design-and-evolution
#23
JOURNAL ARTICLE
Ming-Zhu Yu, Ye Yuan, Zhen-Jie Li, Thittaya Kunthic, He-Xiang Wang, Chen Xu, Zheng Xiang
The introduction of an abiological catalytic group into the binding pocket of a protein host allows for the expansion of enzyme chemistries. Here, we report the generation of an artificial enzyme by genetic encoding of a non-canonical amino acid that contains a secondary amine side chain. The non-canonical amino acid and the binding pocket function synergistically to catalyze the asymmetric nitrocyclopropanation of α,β-unsaturated aldehydes by the iminium activation mechanism. The designer enzyme was evolved to an optimal variant that catalyzes the reaction in high yield with high diastereo- and enantioselectivity...
April 10, 2024: Angewandte Chemie
https://read.qxmd.com/read/38591336/detoxification-of-v-nerve-agents-assisted-by-a-microperoxidase-new-pathway-revealed-by-the-use-of-a-relevant-vx-simulant
#24
JOURNAL ARTICLE
Valmir Baptista da Silva, Jean-Pierre Mahy, Xavier Brazzolotto, Pierre-Yves Renard, Rémy Ricoux, Julien Legros
The biocatalyzed oxidative detoxification of the V-series simulant PhX, by mean of the microperoxidase AcMP11, affords the corresponding phosphonothioate as the prominent product instead of the classical P-S and P-O bond cleavage. While PhX is structurally very close to the live agent VX (the methyl group is replaced by a phenyl), assessment with other surrogates missing the nucleophilic amino function displayed more resistance under the same conditions with no phosphonothioate observed. These encouraging results highlight 1) the efficacy of AcMP11 microperoxidase to efficiently detoxify V-series organophosphorus nerve agents (OPNA), and 2) the necessity to use representative alkyl or aryl phosphonothioates simulants such as PhX bearing the appropriate side chain as well as the P-O and P-S cleavable bond to mimic accurately the V-series OPNA to prevent false positive or false negative results...
April 9, 2024: Chembiochem: a European Journal of Chemical Biology
https://read.qxmd.com/read/38584134/enhancing-pet-degrading-enzymes-a-combinatory-approach
#25
JOURNAL ARTICLE
Yvonne Joho, Santana Royan, Alessandro Caputo, Sophia Newton, Thomas Peat, Janet Newman, Colin Jackson, Albert Ardevol
Plastic waste has become a substantial environmental issue. A potential strategy to mitigate this problem is to use enzymatic hydrolysis of plastics to depolymerize post-consumer waste and allow it to be reused. Over the last few decades, the use of enzymatic PET-degrading enzymes has shown promise as a great solution for creating a circular plastic waste economy. PsPETase from Piscinibacter sakaiensis has been identified as an enzyme with tremendous potential for such applications. But to improve its efficiency, enzyme engineering has been applied aiming at enhancing its thermal stability, enzymatic activity, and ease of production...
April 7, 2024: Chembiochem: a European Journal of Chemical Biology
https://read.qxmd.com/read/38577433/continuous-flow-biocatalysis-synthesis-of-purine-nucleoside-esters-catalyzed-by-lipase-tl-im-from-thermomyces-lanuginosus
#26
JOURNAL ARTICLE
Shi-Yi Zhang, Guo-Neng Fu, Li-Hua Du, Hang Lin, Ao-Ying Zhang, Han-Jia Xie, Zhi-Kai Sheng, Miao-Miao Xue, Bing-Lin Yan, Yi Liu, Zhi-Xuan Ruan, Bing-Le Pan, Tong-Yao Zhou, Xi-Ping Luo
Purine nucleoside ester is one of the derivatives of purine nucleoside, which has antiviral and anticancer activities. In this work, a continuous flow synthesis of purine nucleoside esters catalyzed by lipase TL IM from Thermomyces lanuginosus was successfully achieved. Various parameters including solvent, reaction temperature, reaction time/flow rate and substrate ratio were investigated. The best yields were obtained with a continuous flow microreactor for 35 min at 50 °C with the substrate ratio of 1 : 5 (nucleosides to vinyl esters) in the solvent of tert -amyl alcohol...
April 3, 2024: RSC Advances
https://read.qxmd.com/read/38569221/rationally-engineering-ph-adaptation-of-acid-induced-arginine-decarboxylase-from-escherichia-coli-to-alkaline-environments-to-efficiently-biosynthesize-putrescine
#27
JOURNAL ARTICLE
Li Wang, Bo Ding, Xiangyang Hu, Guohui Li, Yu Deng
Acid-induced arginine decarboxylase AdiA is a typical homo-oligomeric protein biosynthesizing alkaline nylon monomer putrescine. However, upon loss of the AdiA decamer oligomeric state at neutral and alkaline conditions the activity also diminishes, obstructing the whole-cell biosynthesis of alkaline putrescine. Here, a structure cohesion strategy is proposed to change the pH adaptation of AdiA to alkaline environments based on the rational engineering of meridional and latitudinal oligomerization interfaces...
April 3, 2024: Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
https://read.qxmd.com/read/38568868/directed-evolution-and-immobilization-of-lactobacillus-brevis-alcohol-dehydrogenase-for-chemo-enzymatic-synthesis-of-rivastigmine
#28
JOURNAL ARTICLE
Guorong Su, Lu Ran, Chang Liu, Zhaoyang Qin, Huailong Teng, Shuke Wu
Rivastigmine is one of the several pharmaceuticals widely prescribed for the treatment of Alzheimer's disease. However, its practical synthesis still faces many issues, such as the involvement of toxic metals and harsh reaction conditions. Herein, we report a chemo-enzymatic synthesis of Rivastigmine. The key chiral intermediate was synthesized by an engineered alcohol dehydrogenase from Lactobacillus brevis (LbADH). A semi-rational approach was employed to improve its catalytic activity and thermal stability...
April 3, 2024: Chemistry: a European Journal
https://read.qxmd.com/read/38568785/multistep-biooxidation-of-5-hydroxymethyl-furfural-to-2-5-furandicarboxylic-acid-with-h2o2-by-unspecific-peroxygenases
#29
JOURNAL ARTICLE
Alexander Swoboda, Silvie Zwölfer, Zerina Duhović, Moritz Bürgler, Katharina Ebner, Anton Glieder, Wolfgang Kroutil
5-(Hydroxymethyl)furfural (HMF) is a key platform chemical derived from renewable biomass sources, holding great potential as starting material for the synthesis of valuable compounds, thereby replacing petrochemical-derived counterparts. Among these valorised compounds, 2,5-furandicarboxylic acid (FDCA) has emerged as a versatile building block. Here we demonstrate the biocatalytic synthesis of FDCA from HMF via a one-pot three-step oxidative cascade performed via two operative steps under mild reaction conditions employing two unspecific peroxygenases (UPOs) using hydrogen peroxide as the only oxidant...
April 3, 2024: ChemSusChem
https://read.qxmd.com/read/38566530/functionalizing-yeast-lipid-droplets-as-versatile-biomaterials
#30
JOURNAL ARTICLE
Ankita Suri, Kevin K Y Hu, Tayyaba Younas, Geoff Dumsday, Victoria S Haritos
Lipid droplets (LD) are dynamic cellular organelles of ≈1 µm diameter in yeast where a neutral lipid core is surrounded by a phospholipid monolayer and attendant proteins. Beyond the storage of lipids, opportunities for LD engineering remain underdeveloped but they show excellent potential as new biomaterials. In this research, LD from yeast Saccharomyces cerevisiae is engineered to display mCherry fluorescent protein, Halotag ligand binding protein, plasma membrane binding v-SNARE protein, and carbonic anhydrase enzyme via linkage to oleosin, an LD anchoring protein...
April 2, 2024: Small
https://read.qxmd.com/read/38566472/discovery-and-directed-evolution-of-c-c-bond-formation-enzymes-for-the-biosynthesis-of-%C3%AE-hydroxy-%C3%AE-amino-acids-and-derivatives
#31
REVIEW
Qijia Chen, Jingmin Wang, Sisi Zhang, Xi Chen, Jianxiong Hao, Qiaqing Wu, Dunming Zhu
β-Hydroxy-α-amino acids (β-HAAs) have extensive applications in the pharmaceutical, chemical synthesis, and food industries. The development of synthetic methodologies aimed at producing optically pure β-HAAs has been driven by practical applications. Among the various synthetic methods, biocatalytic asymmetric synthesis is considered a sustainable approach due to its capacity to generate two stereogenic centers from simple prochiral precursors in a single step. Therefore, extensive efforts have been made in recent years to search for effective enzymes which enable such biotransformation...
April 2, 2024: Critical Reviews in Biotechnology
https://read.qxmd.com/read/38561968/biomimetic-chiral-nanomaterials-with-selective-catalysis-activity
#32
REVIEW
Honghui Cao, En Yang, Yoonseob Kim, Yuan Zhao, Wei Ma
Chiral nanomaterials with unique chiral configurations and biocompatible ligands have been booming over the past decade for their interesting chiroptical effect, unique catalytical activity, and related bioapplications. The catalytic activity and selectivity of chiral nanomaterials have emerged as important topics, that can be potentially controlled and optimized by the rational biochemical design of nanomaterials. In this review, chiral nanomaterials synthesis, composition, and catalytic performances of different biohybrid chiral nanomaterials are discussed...
April 1, 2024: Advanced Science (Weinheim, Baden-Wurttemberg, Germany)
https://read.qxmd.com/read/38559715/biocatalytic-hydrogen-borrowing-cascade-in-organic-synthesis
#33
REVIEW
Zong-Xiao Liu, Ya-Dong Gao, Li-Cheng Yang
Biocatalytic hydrogen borrowing represents an environmentally friendly and highly efficient synthetic method. This innovative approach involves converting various substrates into high-value-added products, typically via a one-pot, two/three-step sequence encompassing dehydrogenation (intermediate transformation) and hydrogenation processes employing the hydride shuffling between NAD(P)+ and NAD(P)H. Represented key transformations in hydrogen borrowing include stereoisomer conversion within alcohols, conversion between alcohols and amines, conversion of allylic alcohols to saturated carbonyl counterparts, and α,β-unsaturated aldehydes to saturated carboxylic acids, etc...
March 25, 2024: JACS Au
https://read.qxmd.com/read/38558334/lipolytic-production-from-solid-state-fermentation-of-the-filamentous-fungus-penicillium-polonicum-and-its-applicability-as-biocatalyst-in-the-synthesis-of-ethyl-oleate
#34
JOURNAL ARTICLE
Jéssyca Ketterine Carvalho, Cíntia Krüger, Maruhen Amir Datsch Silveira, Pitágoras Augusto Piana, Maria Luiza Fernandes Rodrigues, Adriana Fiorini Rosado, Rosemeire Aparecida da Silva de Lucca, Marcia Regina Fagundes-Klen, Edson Antônio da Silva, Cleide Viviane Buzanello, Joel Gustavo Teleken, Ricardo Antonio Zanella
Lipases represent versatile biocatalysts extensively employed in transesterification reactions for ester production. Ethyl oleate holds significance in biodiesel production, serving as a sustainable alternative to petroleum-derived diesel. In this study, our goal was to prospect lipase and assess its efficacy as a biocatalyst for ethyl oleate synthesis. For quantitative analysis, a base medium supplemented with Rhodamine B, olive oil, and Tween 80 was used. Solid-state fermentation utilized crambe seeds of varying particle sizes and humidity levels as substrates...
April 1, 2024: Environmental Science and Pollution Research International
https://read.qxmd.com/read/38556813/precision-engineering-the-co-immobilization-of-enzymes-for-cascade-biocatalysis
#35
JOURNAL ARTICLE
Zhiyuan Luo, Li Qiao, Haomin Chen, Zhili Mao, Shujiao Wu, Bianqin Ma, Tian Xie, Anming Wang, Xiaolin Pei, Roger A Sheldon
The design and orderly layered co-immobilization of multiple enzymes on resin particles remain challenging. Herein, the SpyTag/SpyCatcher binding pair was fused to the N-terminus of an alcohol dehydrogenase (ADH) and an aldo-keto reductase (AKR), respectively. A non-canonical amino acid (ncAA), i.e. p-azido-L-phenylalanine (p-AzF), as the anchor for covalent bonding enzymes, was genetically inserted into pre-selected sites in the AKR and ADH. Employing the two bioorthogonal counterparts of SpyTag/SpyCatcher and azido-alkynyl for the immobilization of AKR and ADH enabled the sequential dual-enzyme coating on porous microspheres...
March 31, 2024: Angewandte Chemie
https://read.qxmd.com/read/38551819/engineering-compositionally-uniform-yeast-whole-cell-biocatalysts-with-maximized-surface-enzyme-density-for-cellulosic-biofuel-production
#36
JOURNAL ARTICLE
Xiao Yin Ma, Bryan Coleman, Ponnandy Prabhu, Margaret Yang, Fei Wen
In recent decades, whole-cell biocatalysis has played an increasingly important role in the food, pharmaceutical, and energy sector. One promising application is the use of ethanologenic yeast displaying minicellulosomes on the cell surface to combine cellulose hydrolysis and fermentation into a single step for consolidated bioprocessing. However, cellulosic ethanol production using existing yeast whole-cell biocatalysts (yWCBs) has not reached industrial feasibility due to their inefficient cellulose hydrolysis...
March 29, 2024: ACS Synthetic Biology
https://read.qxmd.com/read/38547011/excelzyme-a-swiss-university-industry-collaboration-for-accelerated-biocatalyst-development
#37
JOURNAL ARTICLE
Sumire Honda Malca, Peter Stockinger, Nadine Duss, Daniela Milbredt, Hans Iding, Rebecca Buller
Excelzyme, an enzyme engineering platform located at the Zurich University of Applied Sciences, is dedicated to accelerating the development of tailored biocatalysts for large-scale industrial applications. Leveraging automation and advanced computational techniques, including machine learning, efficient biocatalysts can be generated in short timeframes. Toward this goal, Excelzyme systematically selects suitable protein scaffolds as the foundation for constructing complex enzyme libraries, thereby enhancing sequence and structural biocatalyst diversity...
March 27, 2024: Chimia
https://read.qxmd.com/read/38542946/synthesis-and-bioactive-properties-of-the-novel-coloured-compound-obtained-via-the-laccase-mediated-transformation-of-5-aminosalicylic-acid
#38
JOURNAL ARTICLE
Jolanta Polak, Marcin Grąz, Katarzyna Szałapata, Justyna Kapral-Piotrowska, Kamila Wlizło, Marcin Polak, Anna Jarosz-Wilkołazka
Biocatalysis processes based on oxidoreductases, such as fungal laccase, are important for discovering new organic compounds with broad structures and potential applications. They include bioactive compounds, which can be obtained through laccase-mediated oxidation of organic substrates having hydroxyl and/or amino groups especially, e.g., 5-aminosalicylic acid (5-ASA) is characterised for its potential for oxidation by a fungal laccase obtained from a Cerrena unicolor strain. The biotransformation process was optimised in terms of the buffer and co-solvent concentration, buffer pH value, and laccase activity...
March 15, 2024: Molecules: a Journal of Synthetic Chemistry and Natural Product Chemistry
https://read.qxmd.com/read/38542941/enzymatic-synthesis-of-new-acetoacetate-ursodeoxycholic-acid-hybrids-as-potential-therapeutic-agents-and-useful-synthetic-scaffolds-as-well
#39
JOURNAL ARTICLE
Valentina Venturi, Elena Marchesi, Daniela Perrone, Valentina Costa, Martina Catani, Simona Aprile, Lindomar Alberto Lerin, Federico Zappaterra, Pier Paolo Giovannini, Lorenzo Preti
Ursodeoxycholic acid (UDCA) and acetoacetate are natural compounds present in the human intestine and blood, respectively. A number of studies highlighted that besides their well-known primary biological roles, both compounds possess the ability to influence a variety of cellular processes involved in the etiology of various diseases. These reasons suggested the potential of acetoacetate-UDCA hybrids as possible therapeutic agents and prompted us to develop a synthetic strategy to selectively derivatize the hydroxyl groups of the bile acid with acetoacetyl moieties...
March 15, 2024: Molecules: a Journal of Synthetic Chemistry and Natural Product Chemistry
https://read.qxmd.com/read/38539226/raman-spectroscopy-and-one-dimensional-convolutional-neural-network-modeling-as-a-real-time-monitoring-tool-for-in-vitro-transaminase-catalyzed-synthesis-of-a-pharmaceutically-relevant-amine-precursor
#40
JOURNAL ARTICLE
Julie Østerby Madsen, Sebastian Olivier Nymann Topalian, Mikkel Fog Jacobsen, Tommy Skovby, Krist V Gernaey, Allan S Myerson, John Woodley
Raman spectroscopy has been used to measure the concentration of a pharmaceutically relevant model amine intermediate for positive allosteric modulators of nicotinic acetylcholine receptor in a ω-transaminase-catalyzed conversion. A model based on a one-dimensional convolutional neural network was developed to translate raw data augmented Raman spectra directly into substrate concentrations, with which the conversion from ketone to amine by ω-transaminase could be determined over time. The model showed very good predictive capabilities, with R2 values higher than 0...
March 27, 2024: Biotechnology Progress
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