The effects of ceramide analogs on the uptake of markers for fluid-pha
se (horseradish peroxidase, HRP) and receptor-mediated (low density li
poprotein, LDL) endocytosis were studied in Chinese hamster fibroblast
s. N-Hexanoyl-D-erythro-sphingosine (C-6-Cer) decreased the uptake of
HRP in a dose-dependent manner. Internalization was inhibited >40% wit
h 25 mu M C-6-Cer, relative to controls, and was apparent within 5 min
. Internalization of HRP was also inhibited by other Cer analogs and b
y treatment with agents that raise levels of endogenous Cer (sphingomy
elinase or the glycosphingolipid synthesis inhibitor, 1-phenyl-2-decan
oylamino-3-morpholino-1-propanol (PDMP)), but not by N-hexanoyl-D-eryt
hro-sphinganine (C-6-dihydro-Cer) or sphingosine. Internal of LDL was
also inhibited by C-6-Cer in a concentration dependent manner, but was
less pronounced than the effect on HRP internalization (10% versus 40
% inhibition with 25 mu M C-6-Cer), suggesting that ceramide might aff
ect fluid-phase and receptor-mediated endocytosis to different extents
. C-6-Cer also slowed HRP and LDL transport from endosomes to lysosome
s as studied by analysis of endocytic vesicles on Percoll density grad
ients and induced a redistribution of endocytic organelles as determin
ed by fluorescence microscopy of intact cells using appropriate marker
s. This resulted in decreased degradation of I-125-Iabeled LDL in the
presence of C-6-Cer. These results suggest that endogenous ceramide ma
y modulate endocytosis.