Staphylococcus aureus N-terminus formylated δ-toxin tends to form amyloid fibrils, while the deformylated δ-toxin tends to form functional oligomer complexes

The community-associated Methicillin-resistant Staphylococcus aureus strain (CA-MRSA) is highly virulent and has become a major focus of public health professionals. Phenol-soluble modulins (PSM) are key factors in its increased virulence. δ-Toxin belongs to PSM family and has copious secretion in m...

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Main Authors: Xinyu Zhou, Yuling Zheng, Qingyu Lv, Decong Kong, Bin Ji, Xuelian Han, Dongsheng Zhou, Zeyu Sun, Li Zhu, Peng Liu, Hua Jiang, Yongqiang Jiang
Format: Article
Language:English
Published: Taylor & Francis Group 2021-01-01
Series:Virulence
Subjects:
Online Access:http://dx.doi.org/10.1080/21505594.2021.1928395
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spelling doaj-ffaee947920b447bba600cb8a06803a62021-06-02T08:43:39ZengTaylor & Francis GroupVirulence2150-55942150-56082021-01-011211418143710.1080/21505594.2021.19283951928395Staphylococcus aureus N-terminus formylated δ-toxin tends to form amyloid fibrils, while the deformylated δ-toxin tends to form functional oligomer complexesXinyu Zhou0Yuling Zheng1Qingyu Lv2Decong Kong3Bin Ji4Xuelian Han5Dongsheng Zhou6Zeyu Sun7Li Zhu8Peng Liu9Hua Jiang10Yongqiang Jiang11Institute of Microbiology and EpidemiologyInstitute of Microbiology and EpidemiologyInstitute of Microbiology and EpidemiologyInstitute of Microbiology and EpidemiologySchool of Electronic Information and Electrical Engineering, Shanghai Jiao Tong UniversityInstitute of Microbiology and EpidemiologyInstitute of Microbiology and EpidemiologyInstitute of Microbiology and EpidemiologyBeijing Institute of BiotechnologyInstitute of Microbiology and EpidemiologyInstitute of Microbiology and EpidemiologyInstitute of Microbiology and EpidemiologyThe community-associated Methicillin-resistant Staphylococcus aureus strain (CA-MRSA) is highly virulent and has become a major focus of public health professionals. Phenol-soluble modulins (PSM) are key factors in its increased virulence. δ-Toxin belongs to PSM family and has copious secretion in many S. aureus strains. In addition, δ-toxin exists in the S. aureus culture supernatant as both N-terminus formylated δ-toxin (fδ-toxin) and deformylated δ-toxin (dfδ-toxin) groups. Although δ-toxin has been studied for more than 70 years, its functions remain unclear. We isolated and purified PSMs from the supernatant of S. aureus MW2, and found fibrils and oligomers aggregates by Size Exclusion Chromatography. After analyzing PSM aggregates and using peptide simulations, we found that the difference in the monomer structure of fδ-toxin and dfδ-toxin might ultimately lead to differences in the aggregation ability: fδ-toxin and dfδ-toxin tend to form fibrils and oligomers respectively. Of note, we found that fδ-toxin fibrils enhanced the stability of biofilms, while dfδ-toxin oligomers promoted their dispersal. Additionally, oligomeric dfδ-toxin combined with PSMα to form a complex with enhanced functionality. Due to the different aggregation capabilities and functions of fδ-toxin and dfδ-toxin, we speculate that they may be involved in the regulation of physiological activities of S. aureus. Moreover, the dfδ-toxin oligomer not only provides a new form of complex in the study of PSMα, but also has significance as a reference in oligomer research pertaining to some human amyloid diseases.http://dx.doi.org/10.1080/21505594.2021.1928395staphylococcus aureusca-mrsaδ-toxinpsmαamyloid fibrilsoligomercomplexformylationdeformylation
collection DOAJ
language English
format Article
sources DOAJ
author Xinyu Zhou
Yuling Zheng
Qingyu Lv
Decong Kong
Bin Ji
Xuelian Han
Dongsheng Zhou
Zeyu Sun
Li Zhu
Peng Liu
Hua Jiang
Yongqiang Jiang
spellingShingle Xinyu Zhou
Yuling Zheng
Qingyu Lv
Decong Kong
Bin Ji
Xuelian Han
Dongsheng Zhou
Zeyu Sun
Li Zhu
Peng Liu
Hua Jiang
Yongqiang Jiang
Staphylococcus aureus N-terminus formylated δ-toxin tends to form amyloid fibrils, while the deformylated δ-toxin tends to form functional oligomer complexes
Virulence
staphylococcus aureus
ca-mrsa
δ-toxin
psmα
amyloid fibrils
oligomer
complex
formylation
deformylation
author_facet Xinyu Zhou
Yuling Zheng
Qingyu Lv
Decong Kong
Bin Ji
Xuelian Han
Dongsheng Zhou
Zeyu Sun
Li Zhu
Peng Liu
Hua Jiang
Yongqiang Jiang
author_sort Xinyu Zhou
title Staphylococcus aureus N-terminus formylated δ-toxin tends to form amyloid fibrils, while the deformylated δ-toxin tends to form functional oligomer complexes
title_short Staphylococcus aureus N-terminus formylated δ-toxin tends to form amyloid fibrils, while the deformylated δ-toxin tends to form functional oligomer complexes
title_full Staphylococcus aureus N-terminus formylated δ-toxin tends to form amyloid fibrils, while the deformylated δ-toxin tends to form functional oligomer complexes
title_fullStr Staphylococcus aureus N-terminus formylated δ-toxin tends to form amyloid fibrils, while the deformylated δ-toxin tends to form functional oligomer complexes
title_full_unstemmed Staphylococcus aureus N-terminus formylated δ-toxin tends to form amyloid fibrils, while the deformylated δ-toxin tends to form functional oligomer complexes
title_sort staphylococcus aureus n-terminus formylated δ-toxin tends to form amyloid fibrils, while the deformylated δ-toxin tends to form functional oligomer complexes
publisher Taylor & Francis Group
series Virulence
issn 2150-5594
2150-5608
publishDate 2021-01-01
description The community-associated Methicillin-resistant Staphylococcus aureus strain (CA-MRSA) is highly virulent and has become a major focus of public health professionals. Phenol-soluble modulins (PSM) are key factors in its increased virulence. δ-Toxin belongs to PSM family and has copious secretion in many S. aureus strains. In addition, δ-toxin exists in the S. aureus culture supernatant as both N-terminus formylated δ-toxin (fδ-toxin) and deformylated δ-toxin (dfδ-toxin) groups. Although δ-toxin has been studied for more than 70 years, its functions remain unclear. We isolated and purified PSMs from the supernatant of S. aureus MW2, and found fibrils and oligomers aggregates by Size Exclusion Chromatography. After analyzing PSM aggregates and using peptide simulations, we found that the difference in the monomer structure of fδ-toxin and dfδ-toxin might ultimately lead to differences in the aggregation ability: fδ-toxin and dfδ-toxin tend to form fibrils and oligomers respectively. Of note, we found that fδ-toxin fibrils enhanced the stability of biofilms, while dfδ-toxin oligomers promoted their dispersal. Additionally, oligomeric dfδ-toxin combined with PSMα to form a complex with enhanced functionality. Due to the different aggregation capabilities and functions of fδ-toxin and dfδ-toxin, we speculate that they may be involved in the regulation of physiological activities of S. aureus. Moreover, the dfδ-toxin oligomer not only provides a new form of complex in the study of PSMα, but also has significance as a reference in oligomer research pertaining to some human amyloid diseases.
topic staphylococcus aureus
ca-mrsa
δ-toxin
psmα
amyloid fibrils
oligomer
complex
formylation
deformylation
url http://dx.doi.org/10.1080/21505594.2021.1928395
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