Close Menu
The LinkxThe Linkx
  • Home
  • Technology
    • Gadgets
    • IoT
    • Mobile
    • Nanotechnology
    • Green Technology
  • Trending
  • Advertising
  • Social Media
    • Branding
    • Email Marketing
    • Video Marketing
  • Shop

Subscribe to Updates

Get the latest tech news from thelinkx.com about tech, gadgets and trendings.

Please enable JavaScript in your browser to complete this form.
Loading
What's Hot

I shrank down my Blu-ray collection (and not in the way you think)

June 12, 2026

Jet fuel made from captured carbon begins to flow from new plant

June 12, 2026

Hacking a Server-Grade NVIDIA GPU Into a Home Desktop

June 12, 2026
Facebook X (Twitter) Instagram
Facebook X (Twitter) Instagram Pinterest Vimeo
The LinkxThe Linkx
  • Home
  • Technology
    • Gadgets
    • IoT
    • Mobile
    • Nanotechnology
    • Green Technology
  • Trending
  • Advertising
  • Social Media
    • Branding
    • Email Marketing
    • Video Marketing
  • Shop
The LinkxThe Linkx
Home»Nanotechnology»N-Formylation modifies membrane damage associated with PSMα3 interfaci…
Nanotechnology

N-Formylation modifies membrane damage associated with PSMα3 interfaci…

Editor-In-ChiefBy Editor-In-ChiefFebruary 4, 2025No Comments2 Mins Read
Share Facebook Twitter Pinterest LinkedIn Tumblr Reddit Telegram Email
N-Formylation modifies membrane damage associated with PSMα3 interfaci…
Share
Facebook Twitter LinkedIn Pinterest Email


The virulence of Staphylococcus aureus, a multi-drug resistant pathogen, notably depends on the expression of the phenol soluble modulins α3 (PSMα3) peptides, able to self-assemble into amyloid-like cross-α fibrils. Despite remarkable advances evidencing the crucial, yet insufficient, role of fibrils in PSMα3 cytotoxic activities towards host cells, the relationship between its molecular structures, assembly propensities, and modes of action remains an open intriguing problem. In this study, combining atomic force microscopy (AFM) imaging and infrared spectroscopy, we first demonstrated in vitro that the charge provided by the N-terminal capping of PSMα3 alters its interactions with model membranes of controlled lipid composition without compromising its fibrillation kinetics or morphology. N-formylation eventually dictates PSMα3-membrane binding via electrostatic interactions with the lipid head groups. Furthermore, PSMα3 insertion within the lipid bilayer is favoured by hydrophobic interactions with the lipid acyl chains only in the fluid phase of membranes and not in the gel-like ordered domains. Strikingly, our real-time AFM imaging emphasizes how intermediate protofibrillar entities, formed along PSMα3 self-assembly and promoted at the membrane interface, likely disrupt membrane integrity via peptide accumulation and subsequent membrane thinning in a peptide concentration and lipid-dependent manner. Overall, our multiscale and multimodal approach sheds new light on the key roles of N-formylation and intermediate self-assembling entities, rather than mature fibrils, in dictating deleterious interactions of PSMα3 with membrane lipids, likely underscoring its ultimate cellular toxicity in vivo, and in turn S. aureus pathogenesis.



Source link

Damage interfaci.. membrane modifies NFormylation PSMα3
Share. Facebook Twitter Pinterest LinkedIn Tumblr Email
Previous ArticleBest 3D Printing Filament in 2025
Next Article Twitterrific team launches new ‘Tapestry’ iPhone app for Bluesky, Mast…
Editor-In-Chief
  • Website

Related Posts

Nanotechnology

Frequency Combs Bring Nanometer Accuracy to Battery Manufacturing

June 12, 2026
Nanotechnology

AI could uncover new physics faster but there’s a surprising catch

June 11, 2026
Nanotechnology

Synthesis and characterization of silver nanowires and their promising…

June 10, 2026
Add A Comment
Leave A Reply Cancel Reply

Top Posts

New IPA president Karen Martin delivers rousing call to creative actio…

April 1, 2025306 Views

100+ TikTok Statistics Updated for December 2024

December 4, 2024141 Views

How to Fix Cant Sign in Apple Account, Verification Code Not Received …

February 11, 2025112 Views
Stay In Touch
  • Facebook
  • YouTube
  • TikTok
  • WhatsApp
  • Twitter
  • Instagram
Latest Reviews

Subscribe to Updates

Get the latest tech news from thelinkx.com about tech, gadgets and trendings.

Please enable JavaScript in your browser to complete this form.
Loading
About Us

Welcome to TheLinkX – your trusted source for everything tech and gadgets! We’re passionate about exploring the latest innovations, diving deep into emerging trends, and helping you find the best tech products to suit your needs. Our mission is simple: to make technology accessible, engaging, and inspiring for everyone, from tech enthusiasts to casual users.

Our Picks

I shrank down my Blu-ray collection (and not in the way you think)

June 12, 2026

Jet fuel made from captured carbon begins to flow from new plant

June 12, 2026

Hacking a Server-Grade NVIDIA GPU Into a Home Desktop

June 12, 2026

Subscribe to Updates

Get the latest tech news from thelinkx.com about tech, gadgets and trendings.

Please enable JavaScript in your browser to complete this form.
Loading
  • About Us
  • Contact Us
  • Disclaimer
  • Privacy Policy
  • Terms and Conditions
© 2026 THELINKX.All Rights Reserved by LINKX INDUSTRIAL SOLUTIONS PTY LTD

Type above and press Enter to search. Press Esc to cancel.