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1 Polyphenol oxidases: an enzyme of bacteria and fungi

  • Santosh Kumar , Krishnendu Mondal , Nagendra Thakur und Sayak Das
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Polyphenol Oxidases
Ein Kapitel aus dem Buch Polyphenol Oxidases

Abstract

The enzyme polyphenol oxidase (PPO) found in bacteria and fungi catalyzes the oxidation of polyphenols to quinones. PPO is widely distributed in nature and serves an important part in the degradation of organic matters, as well as in the spoilage of fruit and vegetable products. The enzyme is commonly found in the cell walls of bacteria and fungi and is highly active in the presence of oxygen. PPO is a key factor in the browning of plants, as the oxidation of polyphenol leads to formation of brown pigments and the release of compounds that contribute to off-flavors and offodors. PPO has also been found to be involved in the synthesis of melanin in certain bacteria and fungi, as well as in the biosynthesis of plant defense compounds. In addition to its role in spoilage, PPO has been additionally reported to have a plethora of therapeutic benefits on human health. PPO has been demonstrated to possess antiinflammatory and antioxidant properties, as well as to contribute to the control of blood sugar levels. The enzyme has also been found to have a potential role in the prevention of certain diseases, including cancer and cardiovascular disease. This chapter, which discusses the potential of PPOs in both bacteria and fungi, was therefore prepared with the broad and future perspectives of the PPO enzyme in consideration. To better understand how bacteria and fungi contribute to the creation of the PPO enzyme is useful for biotechnology and the carbon cycling of natural ecosystems.

Abstract

The enzyme polyphenol oxidase (PPO) found in bacteria and fungi catalyzes the oxidation of polyphenols to quinones. PPO is widely distributed in nature and serves an important part in the degradation of organic matters, as well as in the spoilage of fruit and vegetable products. The enzyme is commonly found in the cell walls of bacteria and fungi and is highly active in the presence of oxygen. PPO is a key factor in the browning of plants, as the oxidation of polyphenol leads to formation of brown pigments and the release of compounds that contribute to off-flavors and offodors. PPO has also been found to be involved in the synthesis of melanin in certain bacteria and fungi, as well as in the biosynthesis of plant defense compounds. In addition to its role in spoilage, PPO has been additionally reported to have a plethora of therapeutic benefits on human health. PPO has been demonstrated to possess antiinflammatory and antioxidant properties, as well as to contribute to the control of blood sugar levels. The enzyme has also been found to have a potential role in the prevention of certain diseases, including cancer and cardiovascular disease. This chapter, which discusses the potential of PPOs in both bacteria and fungi, was therefore prepared with the broad and future perspectives of the PPO enzyme in consideration. To better understand how bacteria and fungi contribute to the creation of the PPO enzyme is useful for biotechnology and the carbon cycling of natural ecosystems.

Heruntergeladen am 3.10.2025 von https://www.degruyterbrill.com/document/doi/10.1515/9783111033525-001/html
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