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pH-Dependent Expression, Stability, and Activity of Malassezia restricta MrLip5 Lipase

Authors
Park, MinjiLee, Ji SuJung, Won HeeLee, Yang Won
Issue Date
Dec-2020
Publisher
KOREAN DERMATOLOGICAL ASSOC
Keywords
Lipase; Malassezia restricta; MrLip5; pH
Citation
ANNALS OF DERMATOLOGY, v.32, no.6, pp 473 - 480
Pages
8
Journal Title
ANNALS OF DERMATOLOGY
Volume
32
Number
6
Start Page
473
End Page
480
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/53892
DOI
10.5021/ad.2020.32.6.473
ISSN
1013-9087
2005-3894
Abstract
Background: The lipophilic yeasts Malassezia spp. are normally resident on the surface of the human body, and often associated with various skin diseases. Of the 18 known Malassezia spp., Malassezia restricta is the most predominantly identified Malassezia sp. found on the human skin. Malassezia possesses a large number of genes encoding lipases to degrade human sebum triglycerides into fatty acids, which are required not only for their growth, but also trigger skin diseases. Previously, we have shown that MrLIP5 (MRET_0930), one of the 12 lipase genes in the genome of M. restricta, and is the most frequently expressed lipase gene in the scalp of patients with dandruff. Objective: In this study, we aimed to analyze the activity, stability, and expression of MrLip5, with particular focus on pH. Methods: We heterologously expressed MrLip5 in Escherichia coli, and purified and analyzed its activity and expression under different pH conditions. Results: We found that MrLip5 was most active and stable and highly expressed under alkaline conditions, which is similar to that of the diseased skin surface. Conclusion: Our results suggest that the activity and expression of MrLip5 are pH-dependent, and that this lipase may play an essential role at the M. restricta-host interface during disease progression.
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생명공학대학 (시스템생명공학과)
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