TY - JOUR A1 - Zapf, Ludwig A1 - Finze, Maik T1 - The crystal structure of poly[(μ \(_3\)-imidazolato-κ \(^3\) N:N:N′)(tetrahydrofuran- κ \(^1\) O)lithium(I)], C\(_7\)H\(_{11}\)LiN\(_2\)O JF - Zeitschrift für Kristallographie - New Crystal Structures N2 - C\(_7\)H\(_{11}\)LiN\(_2\)O, monoclinic, P2\(_1\)/c (no. 14), a = 8.9067(1) angstrom, b = 8.6975(1) angstrom, c = 10.2398(1) angstrom, beta = 101.900(3)degrees, V = 770.491(15) angstrom(3), Z = 4, R-gt (F) = 0.0338, wR(ref) (F\(^2\)) = 0.0925, T = 100 K. KW - acid sphingomyelinase KW - antidepressants KW - major depression KW - regulatory T cells KW - sphingolipids Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-260745 VL - 236 IS - 5 ER - TY - JOUR A1 - Wiese, Teresa A1 - Dennstädt, Fabio A1 - Hollmann, Claudia A1 - Stonawski, Saskia A1 - Wurst, Catherina A1 - Fink, Julian A1 - Gorte, Erika A1 - Mandasari, Putri A1 - Domschke, Katharina A1 - Hommers, Leif A1 - Vanhove, Bernard A1 - Schumacher, Fabian A1 - Kleuser, Burkard A1 - Seibel, Jürgen A1 - Rohr, Jan A1 - Buttmann, Mathias A1 - Menke, Andreas A1 - Schneider-Schaulies, Jürgen A1 - Beyersdorf, Niklas T1 - Inhibition of acid sphingomyelinase increases regulatory T cells in humans JF - Brain Communications N2 - Genetic deficiency for acid sphingomyelinase or its pharmacological inhibition has been shown to increase Foxp3\(^+\) regulatory T-cell frequencies among CD4\(^+\) T cells in mice. We now investigated whether pharmacological targeting of the acid sphingomyelinase, which catalyzes the cleavage of sphingomyelin to ceramide and phosphorylcholine, also allows to manipulate relative CD4\(^+\) Foxp3\(^+\) regulatory T-cell frequencies in humans. Pharmacological acid sphingomyelinase inhibition with antidepressants like sertraline, but not those without an inhibitory effect on acid sphingomyelinase activity like citalopram, increased the frequency of Foxp3\(^+\) regulatory T cell among human CD4\(^+\) T cells in vitro. In an observational prospective clinical study with patients suffering from major depression, we observed that acid sphingomyelinase-inhibiting antidepressants induced a stronger relative increase in the frequency of CD4\(^+\) Foxp3\(^+\) regulatory T cells in peripheral blood than acid sphingomyelinase-non- or weakly inhibiting antidepressants. This was particularly true for CD45RA\(^-\) CD25\(^{high}\) effector CD4\(^+\) Foxp3\(^+\) regulatory T cells. Mechanistically, our data indicate that the positive effect of acid sphingomyelinase inhibition on CD4\(^+\) Foxp3\(^+\) regulatory T cells required CD28 co-stimulation, suggesting that enhanced CD28 co-stimulation was the driver of the observed increase in the frequency of Foxp3+ regulatory T cells among human CD4\(^+\) T cells. In summary, the widely induced pharmacological inhibition of acid sphingomyelinase activity in patients leads to an increase in Foxp3+ regulatory T-cell frequencies among CD4\(^+\) T cells in humans both in vivo and in vitro. KW - acid sphingomyelinase KW - antidepressants KW - major depression KW - regulatory T cells KW - sphingolipids Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-259868 VL - 3 IS - 2 ER - TY - THES A1 - Simonis, Alexander T1 - Untersuchungen zur funktionellen Relevanz der sauren Sphingomyelinase in der Infektionspathogenese von \(Neisseria\) \(meningitidis\) T1 - Functional analysis of the acid sphingomyelinase in the infection pathogenesis of \(Neisseria\) \(meningitidis\) N2 - Die Interaktion mit Gehirnendothelzellen stellt ein zentraler Schritt in der Infektionspathogenese von Neisseria meningitidis dar. In dieser Promotionsarbeit konnte gezeigt werden, dass die Infektion von menschlichen Gehirnendothelzellen mit N. meningitidis zu einer transienten Aktivierung der sauren Sphingomyelinase (ASM) gefolgt von einer vermehrten Ceramidproduktion führt. Als Antwort auf die Infektion mit N. meningitidis kommt es zu einer vermehrten Präsentation der ASM und von Ceramiden an der äusseren Seite der Plasmamembran und zu einer Ausbildung von großen Ceramid-reichen Membran-Domänen, welche mit cortical plaque assoziierten Proteinen kolokalisieren. Bei dieser N. meningitids vermittelten Aktivierung der ASM spielt das bakterielle Aussenmembranprotein Opc sowie die Aktivierung der Phosphatidylcholin-spezifische Phospholipase C über die Interaktion von Opc mit Heparansulfat-Proteoglykane eine entscheidende Rolle. Die pharmakologische oder genetische Inhibition der ASM Funktion führt zu einer geringeren Invasivität der Meningokokken ohne dabei die Adhärenz zu beeinflussen. Im Einklang mit diesen Ergebnissen steht die Beobachtung, dass die geringere Invasivität von ausgewählten Isolaten des ST-11/ST-8 Komplex in menschlichen Gehirnendothelzellen direkt mit ihrer eingeschränkter Fähigkeit korreliert, die ASM zu aktivieren bzw. eine Ceramidproduktion zu induzieren. Schlussfolgernd ist die ASM Aktivierung und eine nachfolgende Ceramidproduktion essenziell für die Internalisierung von Opc-exprimierende Meningokokken in Gehirnendothelzellen und bietet einen Erklärungsansatz für die unterschiedliche Invasivität von verschiedenen N. meningitidis Stämmen. N2 - The interaction with brain endothelial cells is central to the pathogenicity of Neisseria meningitidis infections. Here, we show that N. meningitidis causes transient activation of acid sphingomyelinase (ASM) followed by ceramide release in brain endothelial cells. In response to N. meningitidis infection, ASM and ceramide are displayed at the outer leaflet of the cell membrane and condense into large membrane platforms which also colocalize with cortical plaque associated proteins. The outer membrane protein Opc and phosphatidylcholine-specific phospholipase C that is activated upon binding of the pathogen to heparan sulfate proteoglycans, are required for N. meningitidis-mediated ASM activation. Pharmacologic or genetic ablation of ASM abrogated meningococcal internalization without affecting bacterial adherence. In accordance, the restricted invasiveness of a defined set of pathogenic isolates of the ST-11/ST-8 clonal complex into brain endothelial cells directly correlated with their restricted ability to induce ASM and ceramide release. In conclusion, ASM activation and ceramide release are essential for internalization of Opc-expressing meningococci into brain endothelial cells, and this segregates with invasiveness of N. meningitidis strains. KW - Neisseria meningitidis KW - Ceramide KW - Sphingomyelinphosphodiesterase KW - Saure Sphingomyelinase KW - Gehirnendothelzellen KW - Ceramid-reiche Membrandomänen KW - acid sphingomyelinase KW - human brain microvascular endothelial cells KW - Ceramide-enriched membrane domains KW - Opc Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-143638 ER - TY - JOUR A1 - Krones, David A1 - Rühling, Marcel A1 - Becker, Katrin Anne A1 - Kunz, Tobias C. A1 - Sehl, Carolin A1 - Paprotka, Kerstin A1 - Gulbins, Erich A1 - Fraunholz, Martin T1 - Staphylococcus aureus α-Toxin Induces Acid Sphingomyelinase Release From a Human Endothelial Cell Line JF - Frontiers in Microbiology N2 - Staphylococcus aureus (S. aureus) is well known to express a plethora of toxins of which the pore-forming hemolysin A (α-toxin) is the best-studied cytolysin. Pore-forming toxins (PFT) permeabilize host membranes during infection thereby causing concentration-dependent effects in host cell membranes ranging from disordered ion fluxes to cytolysis. Host cells possess defense mechanisms against PFT attack, resulting in endocytosis of the breached membrane area and delivery of repair vesicles to the insulted plasma membrane as well as a concurrent release of membrane repair enzymes. Since PFTs from several pathogens have been shown to recruit membrane repair components, we here investigated whether staphylococcal α-toxin is able to induce these mechanisms in endothelial cells. We show that S. aureus α-toxin induced increase in cytosolic Ca2+ in endothelial cells, which was accompanied by p38 MAPK phosphorylation. Toxin challenge led to increased endocytosis of an extracellular fluid phase marker as well as increased externalization of LAMP1-positive membranes suggesting that peripheral lysosomes are recruited to the insulted plasma membrane. We further observed that thereby the lysosomal protein acid sphingomyelinase (ASM) was released into the cell culture medium. Thus, our results show that staphylococcal α-toxin triggers mechanisms in endothelial cells, which have been implicated in membrane repair after damage of other cell types by different toxins. KW - acid sphingomyelinase KW - staphylococcal alpha-toxin KW - sphingomyelinase release KW - lysosomal recruitment KW - Staphylococcus aureus Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-244843 SN - 1664-302X VL - 12 ER - TY - THES A1 - Hollmann, Claudia Beate T1 - Einfluss der sauren Sphingomyelinase auf anti-virale T-Zellantworten im Masernvirus-Infektionsmodell T1 - Role of the acid sphingomyelinase in anti-viral T cell responses in a measles virus infection model N2 - Die saure Sphingomyelinase (Asm), ein Enzym des Sphingolipidmetabolismus, spaltet Sphingomyelin zu Ceramid und Phosopocholin. Aktiviert wird die Asm unter anderem durch Stimulation des CD28 Rezeptors. CD28 Signale werden auch für die Aktivierung von konventionellen T-Zellen (Tconv) und für die Kostimulation benötigt und sind essentiell für die Differenzierung von regulatorischen T-Zellen (Treg) im Thymus und deren Erhalt in der Peripherie. Wir konnten zeigen, dass sich Tconv und Treg Zellen hinsichtlich der Asm unterscheiden. Treg haben eine höhere "basale" Asm Aktivität, widergespiegelt im höheren Ceramidgehalt und haben eine niedrigere Lipidordnung als Tconv Zellen. Die Abwesenheit der Asm in defizienten Mäusen bewirkt einen relativen Anstieg der Treg-Frequenz innerhalb der CD4+ T-Zellen. Außerdem führt die Asm-Defizienz in Treg Zellen zu einer erhöhten Umsatzrate des immunsupprimierenden Moleküls CTLA-4 und zu einer verstärkten Suppressivität von Treg Zellen aus Asm-/- Mäusen gegenüber Wildtyp Zellen. Ein Anstieg in der Treg-Frequenz, äquivalent zur genetischen Defizienz, kann auch durch Inhibition der Asm, d. h. durch Wirkstoffe wie Amitriptylin und Desipramin erreicht werden. Es konnte gezeigt werden, dass die Inhibitorbehandlung die absolute Anzahl der Tconv Zellen selektiv verringert, da Treg Zellen gegenüber dem Asm Inhibitor-induzierten Zelltod resistenter sind. Mechanistisch erklärbar sind die Unterschiede gegenüber den proapoptotischen Inhibitoreffekten zwischen Tconv und Treg Zellen dadurch, dass Treg Zellen durch die Anwesenheit von IL-2 geschützt sind. In Abwesenheit von IL-2 sterben die Treg Zellen ebenfalls. Die gezielte Veränderung des Verhältnisses von Treg zu Tconv durch den Einsatz von Asm-inhibitorischen Medikamenten kann hilfreich bei der therapeutischen Behandlung von inflammatorischen- und Autoimmunerkrankungen sein. Inwiefern die Asm für die Funktion von T-Zellen in der anti-viralen Immunantwort entscheidend ist, wurde im Masernvirus-Infektionsmodell näher untersucht. In Asm-/- Mäusen und Amitriptylin-behandelten Mäusen konnte gezeigt werden, dass in Abwesenheit der Asm die Kontrolle der Masernvirusinfektion verschlechtert ist. Treg sind auch hier von entscheidender Bedeutung, da die Asm-abhängige, verstärkte Masernvirusinfektion bei Fehlen der Asm nur in Gegenwart von Treg auftritt. In der akuten Phase gibt es in Asm-/- Mäusen weniger masernvirusspezifische T-Zellen und dadurch eine verringerte Beseitigung der Viruslast. In der chronischen Phase ist die Anzahl masernvirusspezifischer T-Zellen zwischen WT und Asm-/- Mäusen vergleichbar. In Letzteren ist allerdings die Anzahl und Frequenz von T-Zellen im Gehirn infizierter Mäuse noch deutlich erhöht, was die verstärkte Maserninfektion widerspiegelt. Zusammenfassend zeigt sich, dass die Asm die Funktion von Treg moduliert und einen Einfluss auf das Verhältnis von Tconv und Treg zueinander hat. Im Masernvirus-Infektionsmodell kann die Veränderung des Tconv zu Treg Verhältnisses in Abwesenheit der Asm ursächlich für die verringerte Viruskontrolle sein. Die Asm Inhibitor-induzierte Treg-Aktivierung und die Beeinflussung des Treg zu Tconv Verhältnisses können wiederum für therapeutische Zwecke genutzt werden, wie beispielsweise bei Multipler Sklerose und Rheumatoider Arthritis. N2 - The acid sphingomyelinase (Asm), an enzyme of the sphingolipid metabolism, hydrolyses sphingomyelin into ceramide and phosphocholine. Besides other stimuli the Asm is activated by ligation of the costimulatory molecule CD28. CD28 signaling is necessary to activate conventional T-cells (Tconv) and is crucial for the differentiation and maintenance of thymus-derived regulatory T-cells (Treg). We could demonstrate that Tconv and Treg cells differ with respect to Asm activity. Treg cells have an increased "basal" Asm activity resulting in an elevated level of ceramide and show a decreased lipid order compared to Tconv cells. The absence of Asm leads to a relative increase in Treg frequency among CD4+ T-cells in Asmdeficient mice. Furthermore, the Asm deficiency results in an increased turnover rate of the immunosuppressive molecule CTLA-4 and strengthens the suppressive capacity of Treg cells from Asm-/- mice compared to wild type Treg cells. An increase of the Treg cell frequency, equivalent to that seen with genetic deficiency, can be achieved by drugs like amitriptyline and desipramine too. The inhibitor treatment selectively decreases the absolute numbers of Tconv cells as Treg cells are more resistant towards Asm inhibitor induced cell death. The mechanistic explanation for the difference concerning the proapotptotic effects of Asm inhibitors between Treg and Tconv cells is that Treg cells are protected by IL-2. In the absence of IL-2 Treg cells die too. Therapeutically shifting the balance of Treg and Tconv cells by Asminhibiting drugs can be beneficial in inflammatory and autoimmune diseases. Whether the Asm is necessary for the function of T-cells during anti-viral immune responses was investigated in a measles virus infection model. In Asm-/- mice and amitriptyline treated mice control of the measles virus was impaired. Treg cells are of critical relevance as the Asm dependent boost in measles infection was only visible in the presence of Treg cells. During the acute phase of infection less measles virus specific T-cells were present leading to a decreased clearance of virus from the brains of Asm-/- mice. In the chronic phase the number of measles virus specific Tcell was comparable between wt and Asm-/- mice. But in the latter the number and frequency of T-cells in brains of infected mice was increased, which mirrors the enhanced measles virus infection. In conclusion, the Asm modulates the function of Treg cells and influences the Treg- Tconv ratio. The changed Treg-Tconv ratio in the absence of Asm expression might be responsible for the reduced virus control in the measles virus infection model. Additionally, the Asm inhibitor induced Treg cell activation and its effects on the Treg- Tconv ratio can be used for therapeutical approaches in diseases like multiple sclerosis or rheumatoid arthritis. KW - saure Sphingomyelinase KW - Treg KW - Masernvirus KW - Sphingomyelin KW - Ceramid KW - acid sphingomyelinase KW - regulatory t cells KW - measles virus KW - ceramide Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-153807 ER - TY - JOUR A1 - Geiger, Nina A1 - Kersting, Louise A1 - Schlegel, Jan A1 - Stelz, Linda A1 - Fähr, Sofie A1 - Diesendorf, Viktoria A1 - Roll, Valeria A1 - Sostmann, Marie A1 - König, Eva-Maria A1 - Reinhard, Sebastian A1 - Brenner, Daniela A1 - Schneider-Schaulies, Sibylle A1 - Sauer, Markus A1 - Seibel, Jürgen A1 - Bodem, Jochen T1 - The acid ceramidase is a SARS-CoV-2 host factor JF - Cells N2 - SARS-CoV-2 variants such as the delta or omicron variants, with higher transmission rates, accelerated the global COVID-19 pandemic. Thus, novel therapeutic strategies need to be deployed. The inhibition of acid sphingomyelinase (ASM), interfering with viral entry by fluoxetine was reported. Here, we described the acid ceramidase as an additional target of fluoxetine. To discover these effects, we synthesized an ASM-independent fluoxetine derivative, AKS466. High-resolution SARS-CoV-2–RNA FISH and RTqPCR analyses demonstrate that AKS466 down-regulates viral gene expression. It is shown that SARS-CoV-2 deacidifies the lysosomal pH using the ORF3 protein. However, treatment with AKS488 or fluoxetine lowers the lysosomal pH. Our biochemical results show that AKS466 localizes to the endo-lysosomal replication compartments of infected cells, and demonstrate the enrichment of the viral genomic, minus-stranded RNA and mRNAs there. Both fluoxetine and AKS466 inhibit the acid ceramidase activity, cause endo-lysosomal ceramide elevation, and interfere with viral replication. Furthermore, Ceranib-2, a specific acid ceramidase inhibitor, reduces SARS-CoV-2 replication and, most importantly, the exogenous supplementation of C6-ceramide interferes with viral replication. These results support the hypotheses that the acid ceramidase is a SARS-CoV-2 host factor. KW - SARS-CoV-2 KW - ceramides KW - ceramidase KW - fluoxetine KW - acid sphingomyelinase Y1 - 2022 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-286105 SN - 2073-4409 VL - 11 IS - 16 ER -