Trifunctional sphingomyelin derivatives enable nanoscale resolution of sphingomyelin turnover in physiological and infection processes via expansion microscopy

Author:

Rühling MarcelORCID,Kersting LouiseORCID,Wagner FabienneORCID,Schumacher FabianORCID,Wigger Dominik,Helmerich Dominic A.,Pfeuffer Tom,Elflein Robin,Kappe Christian,Sauer MarkusORCID,Arenz ChristophORCID,Kleuser BurkhardORCID,Rudel ThomasORCID,Fraunholz MartinORCID,Seibel JürgenORCID

Abstract

AbstractSphingomyelin is a key molecule of sphingolipid metabolism, and its enzymatic breakdown is associated with various infectious diseases. Here, we introduce trifunctional sphingomyelin derivatives that enable the visualization of sphingomyelin distribution and sphingomyelinase activity in infection processes. We demonstrate this by determining the activity of a bacterial sphingomyelinase on the plasma membrane of host cells using a combination of Förster resonance energy transfer and expansion microscopy. We further use our trifunctional sphingomyelin probes to visualize their metabolic state during infections with Chlamydia trachomatis and thereby show that chlamydial inclusions primarily contain the cleaved forms of the molecules. Using expansion microscopy, we observe that the proportion of metabolized molecules increases during maturation from reticulate to elementary bodies, indicating different membrane compositions between the two chlamydial developmental forms. Expansion microscopy of trifunctional sphingomyelins thus provides a powerful microscopy tool to analyze sphingomyelin metabolism in cells at nanoscale resolution.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Springer Science and Business Media LLC

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