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Structural insights into the role of NahX from Pseudomonas sp. MC1 in the naphthalene degradation pathway

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Title
Structural insights into the role of NahX from Pseudomonas sp. MC1 in the naphthalene degradation pathway
Other Titles
나프탈렌 분해 기작에서의 Pseudomonas sp. MC1 균주 유래의 NahX 단백질의 역할에 대한 구조적 이해
Authors
Son, Jonghyeon
Park, Ae Kyung
Shin, Seung Chul
Kim, Dockyu
Kim, Han-Woo
Keywords
HbpSHemeIronNahXNaphthalenePseudomonas sp. MC1
Issue Date
2024-12
Citation
Son, Jonghyeon, et al. 2024. "Structural insights into the role of NahX from Pseudomonas sp. MC1 in the naphthalene degradation pathway". BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 742(0): 0-0.
Abstract
Polycyclic aromatic hydrocarbons (PAHs) are among the most widespread organic pollutants known for their carcinogenic and mutagenic properties. There is a growing interest in understanding the degradation and detoxification processes of these substances using biological approaches. The bacterium Pseudomonas sp. MC1 contains a metabolic plasmid (81 kb) that encodes enzymes involved in the conversion of naphthalene (the simplest and most soluble PAH) to salicylate. Therein, nahX is a part of the lower naphthalene degradation operon and encodes a 140-amino acid protein. However, the function of NahX remains unclear. To understand its function more clearly, we first determined the three-dimensional structure of NahX. It has a fold similar to that of HbpS, which acts as a sensory component in response to oxidative stress. Biochemical studies have also shown that NahX and HbpS exhibit heme degradation activity and bind to iron ions. Heme degradation and ironsequestering activity protect bacteria against oxidative stress. Previous studies have shown that oxidative stress occurs during naphthalene degradation. Therefore, we postulate that NahX has a defense mechanism against the oxidative stress that may occur during naphthalene metabolism.
URI
https://repository.kopri.re.kr/handle/201206/16247
DOI
http://dx.doi.org/10.1016/j.bbrc.2024.151120
Type
Article
Station
King Sejong Station
Indexed
SCIE
Appears in Collections  
2024-2024, 극지 유래 생물자원을 활용한 항생제 후보물질 개발 (24-24) / 이준혁 (PM24030)
2024-2025, 환북극권 동토 환경 미생물로부터 난분해 유기 물질 분해 효소 개발 (24-25) / 김한우 (PN24014)
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