Subcellular extraction and enzyme characterisation of polyphenol oxidase and peroxidase in Cinnamon myrtle

Polyphenol oxidase (PPO) and peroxidase (POD) from Backhousia myrtifolia leaf and floral tissues were characterised. PPO from both tissues showed maximum activity at pH 6.0 and 10.0 at 25 °C, whereas POD activity optima were at pH 5.0 and 9.0 at 25 °C for leaf tissues. The same pH optima for POD act...

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書誌詳細
出版年:Acta Physiologiae Plantarum
第一著者: 2-s2.0-85007481401
フォーマット: 論文
言語:English
出版事項: Polish Academy of Sciences 2017
オンライン・アクセス:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85007481401&doi=10.1007%2fs11738-016-2339-8&partnerID=40&md5=4bffc24d318cfd7ea6e4c882d34ce899
id Sommano S.; Kumpoun W.; Yusuf N.A.
spelling Sommano S.; Kumpoun W.; Yusuf N.A.
2-s2.0-85007481401
Subcellular extraction and enzyme characterisation of polyphenol oxidase and peroxidase in Cinnamon myrtle
2017
Acta Physiologiae Plantarum
39
1
10.1007/s11738-016-2339-8
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85007481401&doi=10.1007%2fs11738-016-2339-8&partnerID=40&md5=4bffc24d318cfd7ea6e4c882d34ce899
Polyphenol oxidase (PPO) and peroxidase (POD) from Backhousia myrtifolia leaf and floral tissues were characterised. PPO from both tissues showed maximum activity at pH 6.0 and 10.0 at 25 °C, whereas POD activity optima were at pH 5.0 and 9.0 at 25 °C for leaf tissues. The same pH optima for POD activity were evident at 20 °C for floral tissues. With regard to substrate specificity, B. myrtifolia PPOs were of both monophenolase (tyrosine) and diphenolase (l-DOPA) types. POD activity was highest when catechol was used as a substrate for oxidisation. Km ranged from 0.6 to 1.0 mM with l-DOPA as the substrate for PPO, and from 0.1 to 0.4 mM with H2O2 and constant catechol (10 mM) as substrates for POD. In both tissues types, glutathione was a non-competitive inhibitor to PPO at the lower concentrations of 0.1–1 mM, but was uncompetitive at the higher concentrations of 10.0 mM. Sodium azide at concentrations ranging from 0.005 to 0.5 mM was a competitive inhibitor to POD. Subcellular extraction methods showed that PPO and POD were localised in the membrane fraction. Cationic native PAGE performed for both enzymes was only able to detect PPO activity. Using Western blot analyses, low molecular weight PPO isozymes from leaf tissue were identified (<10 kDa). Five POD isozymes (20–80 kDa) were detected in both tissue types. These ‘isoform’ patterns were investigated by two-dimensional gel electrophoresis (2DGE). PPOs were mainly neutral (pI 6–7), while POD isoforms had acidic, neutral and alkaline forms. © 2016, Franciszek Górski Institute of Plant Physiology, Polish Academy of Sciences, Kraków.
Polish Academy of Sciences
1375881
English
Article

author 2-s2.0-85007481401
spellingShingle 2-s2.0-85007481401
Subcellular extraction and enzyme characterisation of polyphenol oxidase and peroxidase in Cinnamon myrtle
author_facet 2-s2.0-85007481401
author_sort 2-s2.0-85007481401
title Subcellular extraction and enzyme characterisation of polyphenol oxidase and peroxidase in Cinnamon myrtle
title_short Subcellular extraction and enzyme characterisation of polyphenol oxidase and peroxidase in Cinnamon myrtle
title_full Subcellular extraction and enzyme characterisation of polyphenol oxidase and peroxidase in Cinnamon myrtle
title_fullStr Subcellular extraction and enzyme characterisation of polyphenol oxidase and peroxidase in Cinnamon myrtle
title_full_unstemmed Subcellular extraction and enzyme characterisation of polyphenol oxidase and peroxidase in Cinnamon myrtle
title_sort Subcellular extraction and enzyme characterisation of polyphenol oxidase and peroxidase in Cinnamon myrtle
publishDate 2017
container_title Acta Physiologiae Plantarum
container_volume 39
container_issue 1
doi_str_mv 10.1007/s11738-016-2339-8
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85007481401&doi=10.1007%2fs11738-016-2339-8&partnerID=40&md5=4bffc24d318cfd7ea6e4c882d34ce899
description Polyphenol oxidase (PPO) and peroxidase (POD) from Backhousia myrtifolia leaf and floral tissues were characterised. PPO from both tissues showed maximum activity at pH 6.0 and 10.0 at 25 °C, whereas POD activity optima were at pH 5.0 and 9.0 at 25 °C for leaf tissues. The same pH optima for POD activity were evident at 20 °C for floral tissues. With regard to substrate specificity, B. myrtifolia PPOs were of both monophenolase (tyrosine) and diphenolase (l-DOPA) types. POD activity was highest when catechol was used as a substrate for oxidisation. Km ranged from 0.6 to 1.0 mM with l-DOPA as the substrate for PPO, and from 0.1 to 0.4 mM with H2O2 and constant catechol (10 mM) as substrates for POD. In both tissues types, glutathione was a non-competitive inhibitor to PPO at the lower concentrations of 0.1–1 mM, but was uncompetitive at the higher concentrations of 10.0 mM. Sodium azide at concentrations ranging from 0.005 to 0.5 mM was a competitive inhibitor to POD. Subcellular extraction methods showed that PPO and POD were localised in the membrane fraction. Cationic native PAGE performed for both enzymes was only able to detect PPO activity. Using Western blot analyses, low molecular weight PPO isozymes from leaf tissue were identified (<10 kDa). Five POD isozymes (20–80 kDa) were detected in both tissue types. These ‘isoform’ patterns were investigated by two-dimensional gel electrophoresis (2DGE). PPOs were mainly neutral (pI 6–7), while POD isoforms had acidic, neutral and alkaline forms. © 2016, Franciszek Górski Institute of Plant Physiology, Polish Academy of Sciences, Kraków.
publisher Polish Academy of Sciences
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