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Št. zadetkov: 5
Izvirni znanstveni članek
Oznake: biocatalysis;biodegradation;protein engineering;polyethylene terephthalate;hydrolases;
Enzymatic degradation is a promising green approach to bioremediation and recycling of the polymer poly(ethylene terephthalate) (PET). In the past few years, several PET-hydrolysing enzymes (PHEs) have been discovered, and new variants have been evolved by protein engineering. Here, we report on a s ...
Leto: 2022 Vir: Repozitorij Univerze v Novi Gorici (RUNG)
Izvirni znanstveni članek
Oznake: green technology;improved LCC;polyethylene terephthalate;biodegradation;rational design;
Enzymatic degradation of poly(ethylene terephthalate) (PET) is becoming a reality because of the identification of novel PET‐hydrolysing enzymes (PHEs) and the engineering of evolved enzyme variants. Here, improved variants of leaf‐branch compost cutinase (LCC), a thermostable enzyme isolated by a m ...
Leto: 2023 Vir: Repozitorij Univerze v Novi Gorici (RUNG)
Pregledni znanstveni članek
Oznake: circular bioeconomy;biotechnology;solid waste management;biodegradation;synthetic plastic;
The accumulation of synthetic plastic waste in the environment has become a global concern. Microbial enzymes (purified or as whole-cell biocatalysts) represent emerging biotechnological tools for waste circularity; they can depolymerize materials into reusable building blocks, but their contributio ...
Leto: 2023 Vir: Repozitorij Univerze v Novi Gorici (RUNG)
Izvirni znanstveni članek
Oznake: proteins;nanocomposite;black soldier fly;organic waste;flexible electronics;
Printed and flexible electronics hold the potential to revolutionize the world of electronic devices. A primary focus today is their circularity, which can be achieved by using biobased materials. In this study, electrically conductive bionanocomposite materials suitable for flexible electronics wer ...
Leto: 2025 Vir: Repozitorij Univerze v Novi Gorici (RUNG)
Izvirni znanstveni članek
Oznake: bioinformatic analysis;evolutionary analysis;enzymatic mechanism;kinetics;succinic semialdehyde dehydrogenase;succinic semialdehyde dehydrogenase deficiency;
Human succinic semialdehyde dehydrogenase is a mitochondrial enzyme fundamental in the neurotransmitter γ‐aminobutyric acid catabolism. It catalyzes the NAD+‐dependent oxidative degradation of its derivative, succinic semialdehyde, to succinic acid. Mutations in its gene lead to an inherited neurome ...
Leto: 2025 Vir: Repozitorij Univerze v Novi Gorici (RUNG)
Št. zadetkov: 5
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