The Role of L-DOPA on Melanization and Mycelial Production in Malassezia Furfur

Melanins are synthesized by organisms of all biological kingdoms and comprise a heterogeneous class of natural pigments. Certain of these polymers have been implicated in the pathogenesis of several important human fungal pathogens. This study investigated whether the fungal skin pathogen Malassezia...

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Main Authors: Youngchim S., Nosanchuk J.D., Pornsuwan S., Kajiwara S., Vanittanakom N.
Format: Article
Language:English
Published: 2014
Online Access:http://www.scopus.com/inward/record.url?eid=2-s2.0-84878762102&partnerID=40&md5=ea4fcb719cd29f37561caf8afcea537b
http://cmuir.cmu.ac.th/handle/6653943832/4097
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spelling th-cmuir.6653943832-40972014-08-30T02:35:40Z The Role of L-DOPA on Melanization and Mycelial Production in Malassezia Furfur Youngchim S. Nosanchuk J.D. Pornsuwan S. Kajiwara S. Vanittanakom N. Melanins are synthesized by organisms of all biological kingdoms and comprise a heterogeneous class of natural pigments. Certain of these polymers have been implicated in the pathogenesis of several important human fungal pathogens. This study investigated whether the fungal skin pathogen Malassezia furfur produces melanin or melanin-like compounds. A melanin-binding monoclonal antibody (MAb) labelled in vitro cultivated yeast cells of M. furfur. In addition, melanization of Malassezia yeasts and hyphae was detected by anti-melanin MAb in scrapings from patients with pityriasis versicolor. Treatment of Malassezia yeasts with proteolytic enzymes, denaturant and concentrated hot acid yielded dark particles and electron spin resonance spectroscopy revealed that these particles contained a stable free radical compound, consistent with their identification as melanins. Malassezia yeasts required phenolic compounds, such as L-DOPA, in order to synthesize melanin. L-DOPA also triggered hyphal formation in vitro when combined with kojic acid, a tyrosinase inhibitor, in a dose-dependent manner. In this respect, L-DOPA is thought to be an essential substance that is linked to both melanization and yeast-mycelial transformation in M. furfur. In summary, M. furfur can produce melanin or melanin-like compounds in vitro and in vivo, and the DOPA melanin pathway is involved in cell wall melanization. © 2013 Youngchim et al. 2014-08-30T02:35:40Z 2014-08-30T02:35:40Z 2013 Article 19326203 10.1371/journal.pone.0063764 23762233 http://www.scopus.com/inward/record.url?eid=2-s2.0-84878762102&partnerID=40&md5=ea4fcb719cd29f37561caf8afcea537b http://cmuir.cmu.ac.th/handle/6653943832/4097 English
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
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language English
description Melanins are synthesized by organisms of all biological kingdoms and comprise a heterogeneous class of natural pigments. Certain of these polymers have been implicated in the pathogenesis of several important human fungal pathogens. This study investigated whether the fungal skin pathogen Malassezia furfur produces melanin or melanin-like compounds. A melanin-binding monoclonal antibody (MAb) labelled in vitro cultivated yeast cells of M. furfur. In addition, melanization of Malassezia yeasts and hyphae was detected by anti-melanin MAb in scrapings from patients with pityriasis versicolor. Treatment of Malassezia yeasts with proteolytic enzymes, denaturant and concentrated hot acid yielded dark particles and electron spin resonance spectroscopy revealed that these particles contained a stable free radical compound, consistent with their identification as melanins. Malassezia yeasts required phenolic compounds, such as L-DOPA, in order to synthesize melanin. L-DOPA also triggered hyphal formation in vitro when combined with kojic acid, a tyrosinase inhibitor, in a dose-dependent manner. In this respect, L-DOPA is thought to be an essential substance that is linked to both melanization and yeast-mycelial transformation in M. furfur. In summary, M. furfur can produce melanin or melanin-like compounds in vitro and in vivo, and the DOPA melanin pathway is involved in cell wall melanization. © 2013 Youngchim et al.
format Article
author Youngchim S.
Nosanchuk J.D.
Pornsuwan S.
Kajiwara S.
Vanittanakom N.
spellingShingle Youngchim S.
Nosanchuk J.D.
Pornsuwan S.
Kajiwara S.
Vanittanakom N.
The Role of L-DOPA on Melanization and Mycelial Production in Malassezia Furfur
author_facet Youngchim S.
Nosanchuk J.D.
Pornsuwan S.
Kajiwara S.
Vanittanakom N.
author_sort Youngchim S.
title The Role of L-DOPA on Melanization and Mycelial Production in Malassezia Furfur
title_short The Role of L-DOPA on Melanization and Mycelial Production in Malassezia Furfur
title_full The Role of L-DOPA on Melanization and Mycelial Production in Malassezia Furfur
title_fullStr The Role of L-DOPA on Melanization and Mycelial Production in Malassezia Furfur
title_full_unstemmed The Role of L-DOPA on Melanization and Mycelial Production in Malassezia Furfur
title_sort role of l-dopa on melanization and mycelial production in malassezia furfur
publishDate 2014
url http://www.scopus.com/inward/record.url?eid=2-s2.0-84878762102&partnerID=40&md5=ea4fcb719cd29f37561caf8afcea537b
http://cmuir.cmu.ac.th/handle/6653943832/4097
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