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Intracellular sphingosine releases calcium from lysosomes
by
Riezman, Howard
, Porter, Forbes D
, Höglinger, Doris
, Schultz, Carsten
, Platt, Frances M
, Haberkant, Per
, Aguilera-Romero, Auxiliadora
, Galione, Antony
in
Autophagy
/ Basic Helix-Loop-Helix Leucine Zipper Transcription Factors
/ caged compound
/ Calcium (extracellular)
/ Calcium (intracellular)
/ Calcium - metabolism
/ Calcium Channels - metabolism
/ Calcium homeostasis
/ Calcium phosphates
/ Calcium signalling
/ Cell Biology
/ Cells, Cultured
/ Endosomes
/ Homeostasis
/ Human Biology and Medicine
/ Humans
/ Intracellular
/ lipid localization
/ Lysosomes
/ Lysosomes - drug effects
/ Lysosomes - metabolism
/ Niemann-Pick disease
/ Niemann-Pick type C
/ Sphingosine - metabolism
/ Sphingosine 1-phosphate
/ two-pore channel 1
2015
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Intracellular sphingosine releases calcium from lysosomes
by
Riezman, Howard
, Porter, Forbes D
, Höglinger, Doris
, Schultz, Carsten
, Platt, Frances M
, Haberkant, Per
, Aguilera-Romero, Auxiliadora
, Galione, Antony
in
Autophagy
/ Basic Helix-Loop-Helix Leucine Zipper Transcription Factors
/ caged compound
/ Calcium (extracellular)
/ Calcium (intracellular)
/ Calcium - metabolism
/ Calcium Channels - metabolism
/ Calcium homeostasis
/ Calcium phosphates
/ Calcium signalling
/ Cell Biology
/ Cells, Cultured
/ Endosomes
/ Homeostasis
/ Human Biology and Medicine
/ Humans
/ Intracellular
/ lipid localization
/ Lysosomes
/ Lysosomes - drug effects
/ Lysosomes - metabolism
/ Niemann-Pick disease
/ Niemann-Pick type C
/ Sphingosine - metabolism
/ Sphingosine 1-phosphate
/ two-pore channel 1
2015
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Intracellular sphingosine releases calcium from lysosomes
by
Riezman, Howard
, Porter, Forbes D
, Höglinger, Doris
, Schultz, Carsten
, Platt, Frances M
, Haberkant, Per
, Aguilera-Romero, Auxiliadora
, Galione, Antony
in
Autophagy
/ Basic Helix-Loop-Helix Leucine Zipper Transcription Factors
/ caged compound
/ Calcium (extracellular)
/ Calcium (intracellular)
/ Calcium - metabolism
/ Calcium Channels - metabolism
/ Calcium homeostasis
/ Calcium phosphates
/ Calcium signalling
/ Cell Biology
/ Cells, Cultured
/ Endosomes
/ Homeostasis
/ Human Biology and Medicine
/ Humans
/ Intracellular
/ lipid localization
/ Lysosomes
/ Lysosomes - drug effects
/ Lysosomes - metabolism
/ Niemann-Pick disease
/ Niemann-Pick type C
/ Sphingosine - metabolism
/ Sphingosine 1-phosphate
/ two-pore channel 1
2015
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Journal Article
Intracellular sphingosine releases calcium from lysosomes
2015
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Overview
To elucidate new functions of sphingosine (Sph), we demonstrate that the spontaneous elevation of intracellular Sph levels via caged Sph leads to a significant and transient calcium release from acidic stores that is independent of sphingosine 1-phosphate, extracellular and ER calcium levels. This photo-induced Sph-driven calcium release requires the two-pore channel 1 (TPC1) residing on endosomes and lysosomes. Further, uncaging of Sph leads to the translocation of the autophagy-relevant transcription factor EB (TFEB) to the nucleus specifically after lysosomal calcium release. We confirm that Sph accumulates in late endosomes and lysosomes of cells derived from Niemann-Pick disease type C (NPC) patients and demonstrate a greatly reduced calcium release upon Sph uncaging. We conclude that sphingosine is a positive regulator of calcium release from acidic stores and that understanding the interplay between Sph homeostasis, calcium signaling and autophagy will be crucial in developing new therapies for lipid storage disorders such as NPC. Sphingosine is a small fat molecule that has been suggested to act as a signal inside cells. Individuals with a rare neurodegenerative disease called Niemann-Pick disease type C accumulate sphingosine and other fat molecules in cell compartments called lysosomes. Intriguingly, this fat accumulation is accompanied by an altered movement of calcium ions in and out of lysosomes. In healthy cells, an increase in calcium ion levels can trigger a process called autophagy, in which proteins and other cell components are destroyed in a controlled manner. This is thought to be caused by the release of calcium ions from lysosomes, which stimulates a protein called TFEB to move into the nucleus of the cell to activate genes involved in autophagy. Two proteins on the surface of lysosomes called TPC1 and TPC2 are believed to act as channels that can release calcium ions from lysosomes. However, it was not clear how sphingosine could disrupt calcium ion movements in patients with Niemann-Pick disease type C. Here, Hoeglinger et al. have used a new approach to understand how calcium ions and sphingosine are linked in both healthy and diseased cells. The experiments use a form of sphingosine called “caged sphingosine” that is only activated when it is exposed to a flash of light, which makes it possible to increase the levels of this molecule in cells in a precise way. Hoeglinger et al. found that sphingosine triggered the release of calcium ions from lysosomes. This release required the TPC1 protein and resulted in TFEB moving into the cell nucleus. Further experiments confirm that sphingosine accumulates in the lysosomes of cells taken from patients with Niemann-Pick disease type C. In these cells, the activation of caged sphingosine resulted in a much smaller release of calcium ions from lysosomes than that observed in healthy cells. Together, Hoeglinger et al.’s findings show that sphingosine acts as a signal to trigger the release of calcium ions from lysosomes, which in turn promotes autophagy. The next challenge is to find out exactly how sphingosine opens the calcium ion channels.
Publisher
eLife Sciences Publications Ltd,eLife Sciences Publications, Ltd
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