TY - JOUR
T1 - A comprehensive measure of Golgi sphingolipid flux using NBD C6-ceramide
T2 - evaluation of sphingolipid inhibitors
AU - Lee, Allen H.
AU - Snider, Justin M.
AU - Moorthi, Sitapriya
AU - Coant, Nicolas
AU - Trayssac, Magali
AU - Canals, Daniel
AU - Clarke, Christopher J.
AU - Luberto, Chiara
AU - Hannun, Yusuf A.
N1 - Publisher Copyright:
© 2024 American Society for Biochemistry and Molecular Biology Inc.. All rights reserved.
PY - 2024/8
Y1 - 2024/8
N2 - Measurements of sphingolipid metabolism are most accurately performed by LC-MS. However, this technique is expensive, not widely accessible, and without the use of specific probes, it does not provide insight into metabolic flux through the pathway. Employing the fluorescent ceramide analogue NBD-C6-ceramide as a tracer in intact cells, we developed a comprehensive HPLC-based method that simultaneously measures the main nodes of ceramide metabolism in the Golgi. Hence, by quantifying the conversion of NBD-C6-ceramide to NBD-C6-sphingomyelin, NBD-C6-hexosylceramides, and NBD-C6-ceramide-1-phosphate (NBD-C1P), the activities of Golgi resident enzymes sphingomyelin synthase 1, glucosylceramide synthase, and ceramide kinase (CERK) could be measured simultaneously. Importantly, the detection of NBD-C1P allowed us to quantify CERK activity in cells, a usually difficult task. By applying this method, we evaluated the specificity of commonly used sphingolipid inhibitors and discovered that 1-phenyl-2-decanoylamino-3-morpholino-1-propanol, which targets glucosylceramide synthase, and fenretinide (4HPR), an inhibitor for dihydroceramide desaturase, also suppress CERK activity. This study demonstrates the benefit of an expanded analysis of ceramide metabolism in the Golgi, and it provides a qualitative and easy-to-implement method.
AB - Measurements of sphingolipid metabolism are most accurately performed by LC-MS. However, this technique is expensive, not widely accessible, and without the use of specific probes, it does not provide insight into metabolic flux through the pathway. Employing the fluorescent ceramide analogue NBD-C6-ceramide as a tracer in intact cells, we developed a comprehensive HPLC-based method that simultaneously measures the main nodes of ceramide metabolism in the Golgi. Hence, by quantifying the conversion of NBD-C6-ceramide to NBD-C6-sphingomyelin, NBD-C6-hexosylceramides, and NBD-C6-ceramide-1-phosphate (NBD-C1P), the activities of Golgi resident enzymes sphingomyelin synthase 1, glucosylceramide synthase, and ceramide kinase (CERK) could be measured simultaneously. Importantly, the detection of NBD-C1P allowed us to quantify CERK activity in cells, a usually difficult task. By applying this method, we evaluated the specificity of commonly used sphingolipid inhibitors and discovered that 1-phenyl-2-decanoylamino-3-morpholino-1-propanol, which targets glucosylceramide synthase, and fenretinide (4HPR), an inhibitor for dihydroceramide desaturase, also suppress CERK activity. This study demonstrates the benefit of an expanded analysis of ceramide metabolism in the Golgi, and it provides a qualitative and easy-to-implement method.
KW - CERK
KW - fenretinide
KW - Golgi apparatus
KW - HPLC
KW - NBD-ceramide
KW - PDMP
KW - sphingolipid metabolism
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U2 - 10.1016/j.jlr.2024.100584
DO - 10.1016/j.jlr.2024.100584
M3 - Article
C2 - 38925252
AN - SCOPUS:85202906967
SN - 0022-2275
VL - 65
JO - Journal of Lipid Research
JF - Journal of Lipid Research
IS - 8
M1 - 100584
ER -