Ceramidase: Difference between revisions

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== Role of Ceramide and CerN in Bacterial Infections ==
== Role of Ceramide and CerN in Bacterial Infections ==
Sphingolipids play key role in eukaryotic cell membrane structure and function.<ref name="Complex">PMID:15289826</ref><ref name="Principles">PMID:18216770</ref> Additionally, sphingolipids act as signaling molecules for eukaryotic processes such as proliferation, apoptosis, inflammation, cell migration, and pathogen defense.<ref name="Principles">PMID:18216770</ref> Ceramide is considered as the central molecule in sphingolipid metabolism, as it can be converted to more complex sphingolipids or be broken down for the production of sphingosine and sphingosine-1-phosphate (Seitz and Gulbins).<ref name="Gulbins">PMID:34064516</ref> <ref name="Seitz">PMID:25720061</ref> <ref name="man">PMID:29863195</ref> Eukaryotes utilize ceramide in the formation of [https://en.wikipedia.org/wiki/Lipid_raft/ lipid rafts], lipid-protein platforms that alter the biophysical properties of cell membranes as well as localize receptors for signal amplification.<ref name="Principles">PMID:18216770</ref> <ref name="Seitz">PMID:25720061</ref> '''Sphingosine''' and '''sphingosine-1-phosphate''', the products of ceramide catabolism, are important for pathogen defense by functioning as a '''potent anti-microbial''' and '''activating signal for host-immune responses''', respectively.<ref name="Gulbins">PMID:34064516</ref>  
Sphingolipids play key role in eukaryotic cell membrane structure and function.<ref name="Complex">PMID:15289826</ref><ref name="Principles">PMID:18216770</ref> Additionally, sphingolipids act as signaling molecules for eukaryotic processes such as '''proliferation, apoptosis, inflammation, cell migration, and pathogen defense'''.<ref name="Principles">PMID:18216770</ref> Ceramide is considered as the '''central molecule in sphingolipid metabolism''', as it can be converted to more complex sphingolipids or be broken down for the production of sphingosine and sphingosine-1-phosphate.<ref name="Gulbins">PMID:34064516</ref> <ref name="Seitz">PMID:25720061</ref> <ref name="man">PMID:29863195</ref> Eukaryotes utilize ceramide in the formation of [https://en.wikipedia.org/wiki/Lipid_raft/ lipid rafts], lipid-protein platforms that alter the biophysical properties of cell membranes as well as localize receptors for signal amplification.<ref name="Principles">PMID:18216770</ref> <ref name="Seitz">PMID:25720061</ref> '''Sphingosine''' and '''sphingosine-1-phosphate''', the products of ceramide catabolism, are important for pathogen defense by functioning as a '''potent anti-microbial''' and '''activating signal for host-immune responses''', respectively.<ref name="Gulbins">PMID:34064516</ref>  


Due to its abundance in eukaryotic cell membranes and role in pathogen defense, pathogens have evolved mechanisms to use host ceramides for their own pathogenesis.<ref name="Seitz">PMID:25720061</ref> Ceramide-rich membrane platforms on human-epithelial cells serve as sites for the attachment and invasion of bacterial pathogens such as ''Neisseria gonorrhoeae''.<ref name="Seitz">PMID:25720061</ref> ''Pseudomonas aeruginosa'' is capable of detecting host-derived sphingosine, resulting in activation of ''P. aeruginosa'' sphingosine-responsive genes.<ref name="Annette">PMID:24465209</ref> The products of ''P. aeruginosa'' sphingosine-responsive genes are used for the detoxification of sphingosine, as well as its production from other host-derived sphingolipids, making ''P. aeruginosa'' sphingosine tolerant.<ref name="Annette">PMID:24465209</ref> Loss of ''P. aeruginosa'' sphingosine-responsive genes results in the inability of the bacteria to survive in the presence of sphingosine ''in vitro'' or in the murine lung.<ref name="Annette">PMID:24465209</ref> CerN is one of the proteins encoded by ''P. aeruginosa'' sphingosine-responsive genes used for the production of sphingosine from ceramide, with the added ability of functioning as a ceramide synthase.<ref name="Okino">PMID:9603946</ref><ref name="Reverse">PMID:10832092</ref><ref name="Annette">PMID:24465209</ref>  It has been hypothesized that the hydrolysis of host-membrane ceramide via CerN facilitates ''P. aeruginosa'' intracellular invasion, similar to other bacterial pathogens.<ref name="Okino">PMID:9603946</ref> CerN is also involved in ''P. aeruginosa'' [https://en.wikipedia.org/wiki/Biofilm/ biofilm] production, a major virulence trait of the pathogen.<ref name="Theft">PMID:35129518</ref> Sphingosine production via CerN-mediated hydrolysis of host ceramide induces a biofilm formation at sites of infection, biofilm accumulation yields more ceramide hydrolysis, creating a positive-feedback loop for ''P. aeruginosa'' virulence.<ref name="Theft">PMID:35129518</ref>  
Due to its abundance in eukaryotic cell membranes and role in pathogen defense, pathogens have evolved mechanisms to use host ceramides for their own pathogenesis.<ref name="Seitz">PMID:25720061</ref> Ceramide-rich membrane platforms on human-epithelial cells serve as sites for the '''attachment''' and '''invasion''' of bacterial pathogens such as ''Neisseria gonorrhoeae''.<ref name="Seitz">PMID:25720061</ref> ''Pseudomonas aeruginosa'' is capable of detecting host-derived sphingosine, resulting in activation of ''P. aeruginosa'' sphingosine-responsive genes.<ref name="Annette">PMID:24465209</ref> The products of ''P. aeruginosa'' '''sphingosine-responsive genes''' are used for the detoxification of sphingosine, as well as its production from other host-derived sphingolipids, making ''P. aeruginosa'' '''sphingosine tolerant'''.<ref name="Annette">PMID:24465209</ref> Loss of ''P. aeruginosa'' sphingosine-responsive genes results in the inability of the bacteria to survive in the presence of sphingosine ''in vitro'' or in the murine lung.<ref name="Annette">PMID:24465209</ref> CerN is one of the proteins encoded by ''P. aeruginosa'' sphingosine-responsive genes used for the production of sphingosine from ceramide, with the added ability of functioning as a ceramide synthase.<ref name="Okino">PMID:9603946</ref><ref name="Reverse">PMID:10832092</ref><ref name="Annette">PMID:24465209</ref>  It has been hypothesized that the hydrolysis of host-membrane ceramide via CerN facilitates ''P. aeruginosa'' intracellular invasion, similar to other bacterial pathogens.<ref name="Okino">PMID:9603946</ref> CerN is also involved in ''P. aeruginosa'' [https://en.wikipedia.org/wiki/Biofilm/ biofilm] production, a major virulence trait of the pathogen.<ref name="Theft">PMID:35129518</ref> Sphingosine production via CerN-mediated hydrolysis of host ceramide induces a biofilm formation at sites of infection, biofilm accumulation yields more ceramide hydrolysis, creating a positive-feedback loop for ''P. aeruginosa'' virulence.<ref name="Theft">PMID:35129518</ref>  




<ref name="Complex">PMID:15289826</ref> <ref name="Seitz">PMID:25720061</ref>  <ref name="Principles">PMID:18216770</ref> <ref name="man">PMID:29863195</ref> <ref name="Gulbins">PMID:34064516</ref> <ref name="Annette">PMID:24465209</ref> <ref name="Theft">PMID:35129518</ref>


== Relevance ==
== Relevance ==

Revision as of 17:59, 1 May 2022

CerN bound to C2 Ceramide 2zxc

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References

Proteopedia Page Contributors and Editors (what is this?)

Jacob R. Mackinder, Michal Harel, Jaime Prilusky