Claudia Matthaeus @cmatthaeus.bsky.social · 11/12/2025To bring everything together: We propose a new model for caveolae mediated lipid trafficking - extracellular dietary lipids like fatty acids trigger caveolae endocytosis and migration to the endosomes, where they fuse and then are transferred to lipid droplets to support lipid accumulation. 110
Claudia Matthaeus @cmatthaeus.bsky.social · 11/12/2025Lastly we asked : why do lipid droplets need caveolin1 ? Why does caveolin1 accumulate to lipid droplets during lipid uptake? We looked closely at caveolin1 positive and negative lipid droplets and measured robust size differences - Caveolin1 positive LDs are bigger! 6/n 100
Claudia Matthaeus @cmatthaeus.bsky.social · 11/12/2025So how these caveolin1 positive lipid droplets look like? Do they have caveolae vesicles in close contact? NO! We used correlative FIB-SEM and observed no caveolae vesicles at the targeted lipid droplets - so caveolin1 is there all alone. 5/n 120
Claudia Matthaeus @cmatthaeus.bsky.social · 11/12/2025So we looked into caveolae -lipid droplet trafficking and observed that caveolin1 at first accumulates in the endosome. When we impair endosome maturation we can block caveolin1 accumulation to lipid droplets. We tested this in various ways! Fun fact: lysosomes seems not involved in this trafficking 100
Claudia Matthaeus @cmatthaeus.bsky.social · 11/12/2025So where caveolae go in the cell? Lipid droplets! We tracked caveolae by using a marker protein called caveolin1, and we can see a nice coat surrounding the lipid droplets. 💥 It was also already reported before that caveolae proteins end up at the lipid droplets. But why? And how? 3/n 101
Claudia Matthaeus @cmatthaeus.bsky.social · 11/12/2025When dietary lipids like oleic acid or cholesterol are added to cells, caveolae at the plasma membrane shift their curvature to a highly invaginated - almost vesicle-like state within 1 hour. In this highly invaginated curvature caveolae only have a small neck that allows caveolae endocytosis. 2/n 110
Claudia Matthaeus @cmatthaeus.bsky.social · 13/02/2025I am excited to share our first Pt replica EM images. It took us a little while, but now we have establish the unroofing, drying and Pt coating workflow 🎉 Great work by our postdoc Luis Wong Dilworth! The image below shows the cytosolic membrane leaflet of a fibroblast 👇 2387
Claudia Matthaeus @cmatthaeus.bsky.social · 28/11/2024Hello new followers 🖖 I like looking at the plasma membrane by high res microscopy. Here, you see a platinum replica EM of a fibroblast plasma membrane with clathrin dome (in the center) and caveolae (small invaginations on the side) 2578
Claudia Matthaeus @cmatthaeus.bsky.social · 15/11/2024Lipid droplets for everyone! #fluorescencefriday 2486
Claudia Matthaeus @cmatthaeus.bsky.social · 07/10/2023Caveolae‘s big brother : clathrin! Here we can see beautiful clathrin lattices deforming the plasma membrane lipids to a dome. Some of them will end up as spheres that can be internalized into the cell (this process is called endocytosis) 261
Claudia Matthaeus @cmatthaeus.bsky.social · 06/10/2023Caveolae are small plasma membrane invaginations (50-100 nm) found in many cell types. Here you can see the typical shape and coat structure of caveolae - in particular the cavin protein stripe coat is visible. (We are looking from the inside of a cell to the plasma membrane) 161
Claudia Matthaeus @cmatthaeus.bsky.social · 05/10/2023Hello Blue sky, I like caveolae and lipid droplets 1275