Any feedback?
Please rate this page
(sequences.php)
(0/150)

BRENDA support

Sequence of NOCT_MOUSE

EC Number:3.1.3.108

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
nocturnin
O35710
Mus musculus
429
48301
Reaction
NADP+ + H2O = NAD+ + phosphate
Other sequences found for EC No. 3.1.3.108

General information:

Sequence
show sequence in fasta format
  0 MYQSPRRLCS ALLLRDAPGL RRTLVPGPRR TLAPPVLGSR PKSPQLQAAA ASGAARSRPR
 60 TVSSMGNGTS RLYSALAKTV NSSAAAQHPE YLVSTDPEHL EPIDPKELLE ECRAVLHTRP
120 PRYQRDFVDL RTDCSSSHSP IRVMQWNILA QALGEGKDNF VQCPVEALKW EERKCLILEE
180 ILAYQPDILC LQEVDHYFDT FQPLLSRLGY QGTFFPKPWS PCLDVEHNNG PDGCALFFLQ
240 NRFKLISSTN IRLTAMTLKT NQVAIAQTLE CKESGRQFCI AVTHLKARTG WERFRSAQGC
300 DLLQNLQNIT QGAKIPLIVC GDFNAEPTEE VYKHFASSSL NLNSAYKLLS PDGQSEPPYT
360 TWKIRTSGEC RHTLDYIWYS RHALSVTSAL DLLTEEQIGP NRLPSFHYPS DHLSLVCDFS
420 FNEEPHELF
Download this sequence
in fasta format
Download all sequences for 3.1.3.108
in fasta format
in csv (Excel, OpenOffice) format
Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
66797
Puech A.,Dupressoir A.,Loireau M.-P.,Mattei M.-G.,Heidmann T.
Characterization of two age-induced intracisternal A-particle-related transcripts in the mouse liver. Transcriptional read-through into an open reading frame with similarities to the yeast ccr4 transcription factor.
J. Biol. Chem.
272
5995-6003
1997
66798
Dupressoir A.,Barbot W.,Loireau M.-P.,Heidmann T.
Characterization of a mammalian gene related to the yeast CCR4 general transcription factor and revealed by transposon insertion.
J. Biol. Chem.
274
31068-31075
1999
66799
Wang Y.,Osterbur D.L.,Megaw P.L.,Tosini G.,Fukuhara C.,Green C.B.,Besharse J.C.
Rhythmic expression of nocturnin mRNA in multiple tissues of the mouse.
BMC Dev. Biol.
1
9-9
2001
66800
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
66801
Garbarino-Pico E.,Niu S.,Rollag M.D.,Strayer C.A.,Besharse J.C.,Green C.B.
Immediate early response of the circadian polyA ribonuclease nocturnin to two extracellular stimuli.
RNA
13
745-755
2007
66802
Kawai M.,Green C.B.,Horowitz M.,Ackert-Bicknell C.,Lecka-Czernik B.,Rosen C.J.
Nocturnin: a circadian target of Pparg-induced adipogenesis.
Ann. N. Y. Acad. Sci.
1192
131-138
2010
66803
Huttlin E.L.,Jedrychowski M.P.,Elias J.E.,Goswami T.,Rad R.,Beausoleil S.A.,Villen J.,Haas W.,Sowa M.E.,Gygi S.P.
A tissue-specific atlas of mouse protein phosphorylation and expression.
Cell
143
1174-1189
2010
66804
Kawai M.,Delany A.M.,Green C.B.,Adamo M.L.,Rosen C.J.
Nocturnin suppresses igf1 expression in bone by targeting the 3' untranslated region of igf1 mRNA.
Endocrinology
151
4861-4870
2010
66805
Kawai M.,Green C.B.,Lecka-Czernik B.,Douris N.,Gilbert M.R.,Kojima S.,Ackert-Bicknell C.,Garg N.,Horowitz M.C.,Adamo M.L.,Clemmons D.R.,Rosen C.J.
A circadian-regulated gene, Nocturnin, promotes adipogenesis by stimulating PPAR-gamma nuclear translocation.
Proc. Natl. Acad. Sci. U.S.A.
107
10508-10513
2010
66806
Guntur A.R.,Kawai M.,Le P.,Bouxsein M.L.,Bornstein S.,Green C.B.,Rosen C.J.
An essential role for the circadian-regulated gene nocturnin in osteogenesis: the importance of local timekeeping in skeletal homeostasis.
Ann. N. Y. Acad. Sci.
1237
58-63
2011
66807
Douris N.,Kojima S.,Pan X.,Lerch-Gaggl A.F.,Duong S.Q.,Hussain M.M.,Green C.B.
Nocturnin regulates circadian trafficking of dietary lipid in intestinal enterocytes.
Curr. Biol.
21
1347-1355
2011
66808
Niu S.,Shingle D.L.,Garbarino-Pico E.,Kojima S.,Gilbert M.,Green C.B.
The circadian deadenylase Nocturnin is necessary for stabilization of the iNOS mRNA in mice.
PLoS ONE
6
0-0
2011
66809
Hee S.W.,Tsai S.H.,Chang Y.C.,Chang C.J.,Yu I.S.,Lee P.C.,Lee W.J.,Yun-Chia Chang E.,Chuang L.M.
The role of nocturnin in early adipogenesis and modulation of systemic insulin resistance in human.
Obesity
20
1558-1565
2012
66810
Nishikawa S.,Hatanaka Y.,Tokoro M.,Shin S.W.,Shimizu N.,Nishihara T.,Kato R.,Takemoto A.,Amano T.,Anzai M.,Kishigami S.,Hosoi Y.,Matsumoto K.
Functional analysis of nocturnin, a circadian deadenylase, at maternal-to-zygotic transition in mice.
J. Reprod. Dev.
59
258-265
2013
66811
Abshire E.T.,Chasseur J.,Bohn J.A.,Del Rizzo P.A.,Freddolino P.L.,Goldstrohm A.C.,Trievel R.C.
The structure of human Nocturnin reveals a conserved ribonuclease domain that represses target transcript translation and abundance in cells.
Nucleic Acids Res.
46
6257-6270
2018