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Role of Multienzyme Complexes in the Integration of Cellular Metabolism
Journal of Theoretical Biology, 1988A large number of degradation processes provide the energetic needs of the living organism and its need of “building materials.” The synthesis of biomacromolecules is a result of numerous biosynthetic reactions. The striking peculiarity of the living system lies in the existence of rather fine and effective regulatory mechanisms that bring each ...
B. Kurganov
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ACS Synthetic Biology, 2021
2'-Fucosyllactose (2'-FL) has been widely used as a nutritional additive in infant formula due to its multifarious nutraceutical and pharmaceutical functions in neonate health.
L. Wan+5 more
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2'-Fucosyllactose (2'-FL) has been widely used as a nutritional additive in infant formula due to its multifarious nutraceutical and pharmaceutical functions in neonate health.
L. Wan+5 more
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Nature Inspired Multienzyme Immobilization: Strategies and Concepts.
ACS Applied Bio Materials, 2021In a biological system, the spatiotemporal arrangement of enzymes in a dense cellular milieu, subcellular compartments, membrane-associated enzyme complexes on cell surfaces, scaffold-organized proteins, protein clusters, and modular enzymes have ...
N. Dubey, B. Tripathi
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Research progress and the biotechnological applications of multienzyme complex
Applied Microbiology and Biotechnology, 2021The multienzyme complex system has become a research focus in synthetic biology due to its highly efficient overall catalytic ability and has been applied to various fields. Multienzyme complexes are formed by cascading complexes, which are multiple functionally related enzymes that continuously and efficiently catalyze the production of substrates ...
Yi Jiang+6 more
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Multienzyme complex for carbon dioxide fixation
Biochemistry, 1975Acetyl-coenzyme A carboxylase from Euglena gracilis strain Z was isolated as a component of a multienzyme complex which includes phosphoenolpyruvate carboxylase and malate dehydrogenase. The multienzyme complex was shown to exist in crude extracts and was purified to a homogeneous protein with a molecular weight of 360,000 by gel filtration.
Mary Lou Ernst-Fonberg, Jack S. Wolpert
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A Multienzyme Bioreactor Based on a Chitinase Complex
Прикладная биохимия и микробиология, 2014A heterogeneous biocatalyst containing a complex of chitinolytic enzymes isolated from the culture medium of bacteria Clostridium paraputrificum on the surface of macroporous monolithic minidisc was obtained. The complex of chitinolytic enzymes was immobilized on the polymer matrix using a multistep method involving the introduction of an intermediate ...
Tatiana B. Tennikova+4 more
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The pyruvate dehydrogenase multienzyme complex
Current Opinion in Structural Biology, 1992Abstract During the review period, several structures of component enzymes and domains of enzymes of this multienzyme complex were determined. Three structures of the flavoprotein component, dihydrolipoamide dehydrogenase, became available. The structure of the core component, dihydrolipoyl acetyltransferase, can in principle be constructed from the ...
Richard N. Perham+2 more
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Regulation of the Pyruvate Dehydrogenase Multienzyme Complex
Annual Review of Nutrition, 1993To maximize catalytic efficiency in metabolic pathways of both prokaryotic and eUkaryotic cells, enzymatic components are occasionally clustered or complexed physically. Organization of multiple catalytic functions into a single enzyme complex can be accomplished in two ways.
Denis B. Buxton+3 more
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[41] Purification of multienzyme complexes
1990Publisher Summary This chapter discusses the use of enzymes of nucleotide metabolism to illustrate procedures for the purification and characterization or multi-enzyme complexes. A significant result of these procedures is the successful use of ammonium sulfate precipitation to concentrate and enrich each of the three complexes.
Christopher K. Mathews, Paul A. Srere
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The Pyruvate Dehydrogenase Multienzyme Complex
Angewandte Chemie International Edition in English, 1975AbstractThe three enzymes pyruvate dehydrogenase, dihydrolipoamide transacetylase, and dihydrolipoamide dehydrogenase constitute the pyruvate dehydrogenase multienzyme complex of E. coli; in mammals the complex also contains a kinase and a phosphatase.
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