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Sequence of OAS1A_MOUSE

EC Number:2.7.7.84

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
2'-5' oligoadenylate synthase
P11928
Mus musculus
367
42429
Reaction
3 ATP = pppA2'p5'A2'p5'A + 2 diphosphate
Other sequences found for EC No. 2.7.7.84

General information:

Sequence
show sequence in fasta format
  0 MEHGLRSIPA WTLDKFIEDY LLPDTTFGAD VKSAVNVVCD FLKERCFQGA AHPVRVSKVV
 60 KGGSSGKGTT LKGKSDADLV VFLNNLTSFE DQLNRRGEFI KEIKKQLYEV QHERRFRVKF
120 EVQSSWWPNA RSLSFKLSAP HLHQEVEFDV LPAFDVLGHV NTSSKPDPRI YAILIEECTS
180 LGKDGEFSTC FTELQRNFLK QRPTKLKSLI RLVKHWYQLC KEKLGKPLPP QYALELLTVF
240 AWEQGNGCYE FNTAQGFRTV LELVINYQHL RIYWTKYYDF QHQEVSKYLH RQLRKARPVI
300 LDPADPTGNV AGGNPEGWRR LAEEADVWLW YPCFIKKDGS RVSSWDVPTV VPVPFEQVEE
360 NWTCILL
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
453250
Ichii Y.,Fukunaga R.,Shiojiri S.,Sokawa Y.
Mouse 2-5A synthetase cDNA: nucleotide sequence and comparison to human 2-5A synthetase.
Nucleic Acids Res.
14
10117-10117
1986
453251
Coccia E.M.,Romeo G.,Nissim A.,Marziali G.,Albertini R.,Affabris E.,Battistini A.,Fiorucci G.,Orsatti R.,Rossi G.B.,Chebath J.
A full-length murine 2-5A synthetase cDNA transfected in NIH-3T3 cells impairs EMCV but not VSV replication.
Virology
179
228-233
1990
453252
Kakuta S.,Shibata S.,Iwakura Y.
Genomic structure of the mouse 2',5'-oligoadenylate synthetase gene family.
J. Interferon Cytokine Res.
22
981-993
2002
453253
Carninci P.,Kasukawa T.,Katayama S.,Gough J.,Frith M.C.,Maeda N.,Oyama R.,Ravasi T.,Lenhard B.,Wells C.,Kodzius R.,Shimokawa K.,Bajic V.B.,Brenner S.E.,Batalov S.,Forrest A.R.,Zavolan M.,Davis M.J.,Wilming L.G.,Aidinis V.,Allen J.E.,Ambesi-Impiombato A.,Apweiler R.,Aturaliya R.N.,Bailey T.L.,Bansal M.,Baxter L.,Beisel K.W.,Bersano T.,Bono H.,Chalk A.M.,Chiu K.P.,Choudhary V.,Christoffels A.,Clutterbuck D.R.,Crowe M.L.,Dalla E.,Dalrymple B.P.,de Bono B.,Della Gatta G.,di Bernardo D.,Down T.,Engstrom P.,Fagiolini M.,Faulkner G.,Fletcher C.F.,Fukushima T.,Furuno M.,Futaki S.,Gariboldi M.,Georgii-Hemming P.,Gingeras T.R.,Gojobori T.,Green R.E.,Gustincich S.,Harbers M.,Hayashi Y.,Hensch T.K.,Hirokawa N.,Hill D.,Huminiecki L.,Iacono M.,Ikeo K.,Iwama A.,Ishikawa T.,Jakt M.,Kanapin A.,Katoh M.,Kawasawa Y.,Kelso J.,Kitamura H.,Kitano H.,Kollias G.,Krishnan S.P.,Kruger A.,Kummerfeld S.K.,Kurochkin I.V.,Lareau L.F.,Lazarevic D.,Lipovich L.,Liu J.,Liuni S.,McWilliam S.,Madan Babu M.,Madera M.,Marchionni L.,Matsuda H.,Matsuzawa S.,Miki H.,Mignone F.,Miyake S.,Morris K.,Mottagui-Tabar S.,Mulder N.,Nakano N.,Nakauchi H.,Ng P.,Nilsson R.,Nishiguchi S.,Nishikawa S.,Nori F.,Ohara O.,Okazaki Y.,Orlando V.,Pang K.C.,Pavan W.J.,Pavesi G.,Pesole G.,Petrovsky N.,Piazza S.,Reed J.,Reid J.F.,Ring B.Z.,Ringwald M.,Rost B.,Ruan Y.,Salzberg S.L.,Sandelin A.,Schneider C.,Schoenbach C.,Sekiguchi K.,Semple C.A.,Seno S.,Sessa L.,Sheng Y.,Shibata Y.,Shimada H.,Shimada K.,Silva D.,Sinclair B.,Sperling S.,Stupka E.,Sugiura K.,Sultana R.,Takenaka Y.,Taki K.,Tammoja K.,Tan S.L.,Tang S.,Taylor M.S.,Tegner J.,Teichmann S.A.,Ueda H.R.,van Nimwegen E.,Verardo R.,Wei C.L.,Yagi K.,Yamanishi H.,Zabarovsky E.,Zhu S.,Zimmer A.,Hide W.,Bult C.,Grimmond S.M.,Teasdale R.D.,Liu E.T.,Brusic V.,Quackenbush J.,Wahlestedt C.,Mattick J.S.,Hume D.A.,Kai C.,Sasaki D.,Tomaru Y.,Fukuda S.,Kanamori-Katayama M.,Suzuki M.,Aoki J.,Arakawa T.,Iida J.,Imamura K.,Itoh M.,Kato T.,Kawaji H.,Kawagashira N.,Kawashima T.,Kojima M.,Kondo S.,Konno H.,Nakano K.,Ninomiya N.,Nishio T.,Okada M.,Plessy C.,Shibata K.,Shiraki T.,Suzuki S.,Tagami M.,Waki K.,Watahiki A.,Okamura-Oho Y.,Suzuki H.,Kawai J.,Hayashizaki Y.
The transcriptional landscape of the mammalian genome.
Science
309
1559-1563
2005
453254
Church D.M.,Goodstadt L.,Hillier L.W.,Zody M.C.,Goldstein S.,She X.,Bult C.J.,Agarwala R.,Cherry J.L.,DiCuccio M.,Hlavina W.,Kapustin Y.,Meric P.,Maglott D.,Birtle Z.,Marques A.C.,Graves T.,Zhou S.,Teague B.,Potamousis K.,Churas C.,Place M.,Herschleb J.,Runnheim R.,Forrest D.,Amos-Landgraf J.,Schwartz D.C.,Cheng Z.,Lindblad-Toh K.,Eichler E.E.,Ponting C.P.
Lineage-specific biology revealed by a finished genome assembly of the mouse.
PLoS Biol.
7
0-0
2009
453256
The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC).
Genome Res.
14
2121-2127
2004
453257
Rutherford M.N.,Kumar A.,Nissim A.,Chebath J.,Williams B.R.G.
The murine 2-5A synthetase locus: three distinct transcripts from two linked genes.
Nucleic Acids Res.
19
1917-1924
1991
453258
Yan W.,Ma L.,Stein P.,Pangas S.A.,Burns K.H.,Bai Y.,Schultz R.M.,Matzuk M.M.
Mice deficient in oocyte-specific oligoadenylate synthetase-like protein OAS1D display reduced fertility.
Mol. Cell. Biol.
25
4615-4624
2005
453259
Perelygin A.A.,Zharkikh A.A.,Scherbik S.V.,Brinton M.A.
The mammalian 2'-5' oligoadenylate synthetase gene family: evidence for concerted evolution of paralogous Oas1 genes in Rodentia and Artiodactyla.
J. Mol. Evol.
63
562-576
2006
453260
Kristiansen H.,Gad H.H.,Eskildsen-Larsen S.,Despres P.,Hartmann R.
The oligoadenylate synthetase family: an ancient protein family with multiple antiviral activities.
J. Interferon Cytokine Res.
31
41-47
2011
453261
Pulit-Penaloza J.A.,Scherbik S.V.,Brinton M.A.
Activation of Oas1a gene expression by type I IFN requires both STAT1 and STAT2 while only STAT2 is required for Oas1b activation.
Virology
425
71-81
2012
453262
Elkhateeb E.,Tag-El-Din-Hassan H.T.,Sasaki N.,Torigoe D.,Morimatsu M.,Agui T.
The role of mouse 2',5'-oligoadenylate synthetase 1 paralogs.
Infect. Genet. Evol.
45
393-401
2016
453263
Wickenhagen A.,Sugrue E.,Lytras S.,Kuchi S.,Noerenberg M.,Turnbull M.L.,Loney C.,Herder V.,Allan J.,Jarmson I.,Cameron-Ruiz N.,Varjak M.,Pinto R.M.,Lee J.Y.,Iselin L.,Palmalux N.,Stewart D.G.,Swingler S.,Greenwood E.J.D.,Crozier T.W.M.,Gu Q.,Davies E.L.,Clohisey S.,Wang B.,Trindade Maranhao Costa F.,Freire Santana M.,de Lima Ferreira L.C.,Murphy L.,Fawkes A.,Meynert A.,Grimes G.,Da Silva Filho J.L.,Marti M.,Hughes J.,Stanton R.J.,Wang E.C.Y.,Ho A.,Davis I.,Jarrett R.F.,Castello A.,Robertson D.L.,Semple M.G.,Openshaw P.J.M.,Palmarini M.,Lehner P.J.,Baillie J.K.,Rihn S.J.,Wilson S.J.
A prenylated dsRNA sensor protects against severe COVID-19.
Science
374
0-0
2021