Jump to content

Cyclic GMP-AMP synthase: Difference between revisions

From Wikipedia, the free encyclopedia
Content deleted Content added
infobox
m +wl
Line 9: Line 9:
[[File:5v8j.jpg|thumbnail|cGAS dimer, Human]]
[[File:5v8j.jpg|thumbnail|cGAS dimer, Human]]
[[File:cGAS-cGAMP-STING pathway.jpg|thumb|cGAS-cGAMP-STING pathway]]
[[File:cGAS-cGAMP-STING pathway.jpg|thumb|cGAS-cGAMP-STING pathway]]
'''Cyclic GMP-AMP synthase''' (cGAS, [[Cyclic guanosine monophosphate–adenosine monophosphate|cGAMP]] synthase), belonging to the [[nucleotidyltransferase]] family, is a [[The cGAS – STING cytosolic DNA sensing pathway|cytosolic DNA sensor]] that activates a [[Interferon type I|type-I interferon]] response. It is part of the [[CGAS–STING cytosolic DNA sensing pathway|cGAS-STING DNA sensing pathway]]. It binds to microbial [[DNA]] as well as self DNA that invades the [[cytoplasm]], and catalyzes [[Cyclic guanosine monophosphate–adenosine monophosphate|cGAMP]] synthesis.<ref name="pmid23258413">{{cite journal|last=Sun|first=L|author2=Wu, J |author3=Du, F |author4=Chen, X |author5= Chen, ZJ |title=Cyclic GMP-AMP synthase is a cytosolic DNA sensor that activates the type I interferon pathway.|journal=Science|date=Dec 20, 2012|volume=339|issue=6121|pages=786–91|pmid=23258413|doi=10.1126/science.1232458 |pmc=3863629}}</ref> [[Cyclic guanosine monophosphate–adenosine monophosphate|cGAMP]] then functions as a [[second messenger]] that binds to and activates the [[endoplasmic reticulum]] protein [[Stimulator of interferon genes|STING]] to trigger type-I IFNs production.<ref name="pmid23258412">{{cite journal|last=Wu|first=J|author2=Sun, L |author3=Chen, X |author4=Du, F |author5=Shi, H |author6=Chen, C |author7= Chen, ZJ |title=Cyclic GMP-AMP is an endogenous second messenger in innate immune signaling by cytosolic DNA.|journal=Science|date=Dec 20, 2012|volume=339|issue=6121|pages=826–30|pmid=23258412|doi=10.1126/science.1229963 |pmc=3855410}}</ref><ref name="GaoAscano2013">{{cite journal|last1=Gao|first1=Pu|last2=Ascano|first2=Manuel|last3=Wu|first3=Yang|last4=Barchet|first4=Winfried|last5=Gaffney|first5=Barbara L.|last6=Zillinger|first6=Thomas|last7=Serganov|first7=Artem A.|last8=Liu|first8=Yizhou|last9=Jones|first9=Roger A.|last10=Hartmann|first10=Gunther|last11=Tuschl|first11=Thomas|last12=Patel|first12=Dinshaw J.|title=Cyclic [G(2′,5′)pA(3′,5′)p] Is the Metazoan Second Messenger Produced by DNA-Activated Cyclic GMP-AMP Synthase|journal=Cell|volume=153|issue=5|year=2013|pages=1094–1107|issn=0092-8674|doi=10.1016/j.cell.2013.04.046|pmid=23647843|pmc=4382009}}</ref><ref name=Zhang>{{cite journal|last=Zhang|first=X|author2=Shi, H |author3=Wu, J |author4=Zhang, X |author5=Sun, L |author6=Chen, C |author7= Chen, ZJ |title=Cyclic GMP-AMP Containing Mixed Phosphodiester Linkages Is An Endogenous High-Affinity Ligand for STING|journal=Molecular Cell|date=Jun 3, 2013|volume=51|issue=2|pages=226–235|doi=10.1016/j.molcel.2013.05.022 |pmid=23747010 |pmc=3808999}}</ref> Mice lacking cGAS are more vulnerable to lethal infection by DNA viruses.<ref name=Li>{{cite journal|last=Li|first=XD|author2=Wu, J |author3=Gao, D |author4=Wang, H |author5=Sun, L |author6= Chen, ZJ |title=Pivotal roles of cGAS-cGAMP signaling in antiviral defense and immune adjuvant effects|journal=Science|date=Sep 20, 2013|volume=341|issue=6152|pages=1390–4|doi=10.1126/science.1244040 |pmid=23989956 |pmc=3863637}}</ref> In addition, cGAS has been shown to be an innate immune sensor of retroviruses including [[HIV]].<ref name=Gao>{{cite journal|last=Gao|first=D|author2=Wu, J |author3=Wu, YT |author4=Du, F |author5=Aroh, C |author6=Yan, N |author7=Sun, L |author8= Chen, ZJ |title=Cyclic GMP-AMP synthase is an innate immune sensor of HIV and other retroviruses|journal=Science|date=Aug 23, 2013|volume=341|issue=6148|pages=903–6|doi=10.1126/science.1240933 |pmid=23929945 |pmc=3860819}}</ref><ref name=Lahaye>{{cite journal|last=Lahaye|first=X|author2=Satoh, T |author3=Gentili, M |author4=Cerboni, S |author5=Conrad, C |author6=Hurbain, I |author7=El Marjou, A |author8=Lacabaratz, C |author9=Lelièvre, JD |author10=Manel, N |title=The Capsids of HIV-1 and HIV-2 Determine Immune Detection of the Viral cDNA by the Innate Sensor cGAS in Dendritic Cells|journal=Immunity|date=Dec 12, 2013|volume=39|issue=6|pages=1132–42|doi=10.1016/j.immuni.2013.11.002 |pmid=24269171|doi-access=free }}</ref> The human gene encoding cGAS is [[MB21D1]] on chromosome 6.
'''Cyclic GMP-AMP synthase''' (cGAS, [[Cyclic guanosine monophosphate–adenosine monophosphate|cGAMP]] synthase), belonging to the [[nucleotidyltransferase]] family, is a [[The cGAS – STING cytosolic DNA sensing pathway|cytosolic DNA sensor]] that activates a [[Interferon type I|type-I interferon]] response. It is part of the [[CGAS–STING cytosolic DNA sensing pathway|cGAS-STING DNA sensing pathway]]. It binds to microbial [[DNA]] as well as self DNA that invades the [[cytoplasm]], and catalyzes [[Cyclic guanosine monophosphate–adenosine monophosphate|cGAMP]] synthesis.<ref name="pmid23258413">{{cite journal|last=Sun|first=L|author2=Wu, J |author3=Du, F |author4=Chen, X |author5= Chen, ZJ |title=Cyclic GMP-AMP synthase is a cytosolic DNA sensor that activates the type I interferon pathway.|journal=Science|date=Dec 20, 2012|volume=339|issue=6121|pages=786–91|pmid=23258413|doi=10.1126/science.1232458 |pmc=3863629}}</ref> [[Cyclic guanosine monophosphate–adenosine monophosphate|cGAMP]] then functions as a [[second messenger]] that binds to and activates the [[endoplasmic reticulum]] protein [[Stimulator of interferon genes|STING]] to trigger [[Interferon type I|type-I IFNs]] production.<ref name="pmid23258412">{{cite journal|last=Wu|first=J|author2=Sun, L |author3=Chen, X |author4=Du, F |author5=Shi, H |author6=Chen, C |author7= Chen, ZJ |title=Cyclic GMP-AMP is an endogenous second messenger in innate immune signaling by cytosolic DNA.|journal=Science|date=Dec 20, 2012|volume=339|issue=6121|pages=826–30|pmid=23258412|doi=10.1126/science.1229963 |pmc=3855410}}</ref><ref name="GaoAscano2013">{{cite journal|last1=Gao|first1=Pu|last2=Ascano|first2=Manuel|last3=Wu|first3=Yang|last4=Barchet|first4=Winfried|last5=Gaffney|first5=Barbara L.|last6=Zillinger|first6=Thomas|last7=Serganov|first7=Artem A.|last8=Liu|first8=Yizhou|last9=Jones|first9=Roger A.|last10=Hartmann|first10=Gunther|last11=Tuschl|first11=Thomas|last12=Patel|first12=Dinshaw J.|title=Cyclic [G(2′,5′)pA(3′,5′)p] Is the Metazoan Second Messenger Produced by DNA-Activated Cyclic GMP-AMP Synthase|journal=Cell|volume=153|issue=5|year=2013|pages=1094–1107|issn=0092-8674|doi=10.1016/j.cell.2013.04.046|pmid=23647843|pmc=4382009}}</ref><ref name=Zhang>{{cite journal|last=Zhang|first=X|author2=Shi, H |author3=Wu, J |author4=Zhang, X |author5=Sun, L |author6=Chen, C |author7= Chen, ZJ |title=Cyclic GMP-AMP Containing Mixed Phosphodiester Linkages Is An Endogenous High-Affinity Ligand for STING|journal=Molecular Cell|date=Jun 3, 2013|volume=51|issue=2|pages=226–235|doi=10.1016/j.molcel.2013.05.022 |pmid=23747010 |pmc=3808999}}</ref> Mice lacking cGAS are more vulnerable to lethal infection by DNA viruses.<ref name=Li>{{cite journal|last=Li|first=XD|author2=Wu, J |author3=Gao, D |author4=Wang, H |author5=Sun, L |author6= Chen, ZJ |title=Pivotal roles of cGAS-cGAMP signaling in antiviral defense and immune adjuvant effects|journal=Science|date=Sep 20, 2013|volume=341|issue=6152|pages=1390–4|doi=10.1126/science.1244040 |pmid=23989956 |pmc=3863637}}</ref> In addition, cGAS has been shown to be an innate immune sensor of retroviruses including [[HIV]].<ref name=Gao>{{cite journal|last=Gao|first=D|author2=Wu, J |author3=Wu, YT |author4=Du, F |author5=Aroh, C |author6=Yan, N |author7=Sun, L |author8= Chen, ZJ |title=Cyclic GMP-AMP synthase is an innate immune sensor of HIV and other retroviruses|journal=Science|date=Aug 23, 2013|volume=341|issue=6148|pages=903–6|doi=10.1126/science.1240933 |pmid=23929945 |pmc=3860819}}</ref><ref name=Lahaye>{{cite journal|last=Lahaye|first=X|author2=Satoh, T |author3=Gentili, M |author4=Cerboni, S |author5=Conrad, C |author6=Hurbain, I |author7=El Marjou, A |author8=Lacabaratz, C |author9=Lelièvre, JD |author10=Manel, N |title=The Capsids of HIV-1 and HIV-2 Determine Immune Detection of the Viral cDNA by the Innate Sensor cGAS in Dendritic Cells|journal=Immunity|date=Dec 12, 2013|volume=39|issue=6|pages=1132–42|doi=10.1016/j.immuni.2013.11.002 |pmid=24269171|doi-access=free }}</ref> The human gene encoding cGAS is [[MB21D1]] on chromosome 6.


== References ==
== References ==

Revision as of 03:17, 13 September 2020

Cyclic GMP-AMP synthase
cGAS complexed with dsDNA (Based on PDB 4O6A)
Identifiers
EC no.2.7.7.86
Databases
IntEnzIntEnz view
BRENDABRENDA entry
ExPASyNiceZyme view
KEGGKEGG entry
MetaCycmetabolic pathway
PRIAMprofile
PDB structuresRCSB PDB PDBe PDBsum
Search
PMCarticles
PubMedarticles
NCBIproteins
cGAS dimer, Human
cGAS-cGAMP-STING pathway

Cyclic GMP-AMP synthase (cGAS, cGAMP synthase), belonging to the nucleotidyltransferase family, is a cytosolic DNA sensor that activates a type-I interferon response. It is part of the cGAS-STING DNA sensing pathway. It binds to microbial DNA as well as self DNA that invades the cytoplasm, and catalyzes cGAMP synthesis.[1] cGAMP then functions as a second messenger that binds to and activates the endoplasmic reticulum protein STING to trigger type-I IFNs production.[2][3][4] Mice lacking cGAS are more vulnerable to lethal infection by DNA viruses.[5] In addition, cGAS has been shown to be an innate immune sensor of retroviruses including HIV.[6][7] The human gene encoding cGAS is MB21D1 on chromosome 6.

References

  1. ^ Sun, L; Wu, J; Du, F; Chen, X; Chen, ZJ (Dec 20, 2012). "Cyclic GMP-AMP synthase is a cytosolic DNA sensor that activates the type I interferon pathway". Science. 339 (6121): 786–91. doi:10.1126/science.1232458. PMC 3863629. PMID 23258413.
  2. ^ Wu, J; Sun, L; Chen, X; Du, F; Shi, H; Chen, C; Chen, ZJ (Dec 20, 2012). "Cyclic GMP-AMP is an endogenous second messenger in innate immune signaling by cytosolic DNA". Science. 339 (6121): 826–30. doi:10.1126/science.1229963. PMC 3855410. PMID 23258412.
  3. ^ Gao, Pu; Ascano, Manuel; Wu, Yang; Barchet, Winfried; Gaffney, Barbara L.; Zillinger, Thomas; Serganov, Artem A.; Liu, Yizhou; Jones, Roger A.; Hartmann, Gunther; Tuschl, Thomas; Patel, Dinshaw J. (2013). "Cyclic [G(2′,5′)pA(3′,5′)p] Is the Metazoan Second Messenger Produced by DNA-Activated Cyclic GMP-AMP Synthase". Cell. 153 (5): 1094–1107. doi:10.1016/j.cell.2013.04.046. ISSN 0092-8674. PMC 4382009. PMID 23647843.
  4. ^ Zhang, X; Shi, H; Wu, J; Zhang, X; Sun, L; Chen, C; Chen, ZJ (Jun 3, 2013). "Cyclic GMP-AMP Containing Mixed Phosphodiester Linkages Is An Endogenous High-Affinity Ligand for STING". Molecular Cell. 51 (2): 226–235. doi:10.1016/j.molcel.2013.05.022. PMC 3808999. PMID 23747010.
  5. ^ Li, XD; Wu, J; Gao, D; Wang, H; Sun, L; Chen, ZJ (Sep 20, 2013). "Pivotal roles of cGAS-cGAMP signaling in antiviral defense and immune adjuvant effects". Science. 341 (6152): 1390–4. doi:10.1126/science.1244040. PMC 3863637. PMID 23989956.
  6. ^ Gao, D; Wu, J; Wu, YT; Du, F; Aroh, C; Yan, N; Sun, L; Chen, ZJ (Aug 23, 2013). "Cyclic GMP-AMP synthase is an innate immune sensor of HIV and other retroviruses". Science. 341 (6148): 903–6. doi:10.1126/science.1240933. PMC 3860819. PMID 23929945.
  7. ^ Lahaye, X; Satoh, T; Gentili, M; Cerboni, S; Conrad, C; Hurbain, I; El Marjou, A; Lacabaratz, C; Lelièvre, JD; Manel, N (Dec 12, 2013). "The Capsids of HIV-1 and HIV-2 Determine Immune Detection of the Viral cDNA by the Innate Sensor cGAS in Dendritic Cells". Immunity. 39 (6): 1132–42. doi:10.1016/j.immuni.2013.11.002. PMID 24269171.