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Sequence of CID1_SCHPO

EC Number:2.7.7.19

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
polynucleotide adenylyltransferase
O13833
Schizosaccharomyces pombe (strain 972 / ATCC 24843)
405
46257
Reaction
ATP + RNAn = diphosphate + RNAn+1

General information:

Sequence
show sequence in fasta format
  0 MNISSAQFIP GVHTVEEIEA EIHKNLHISK SCSYQKVPNS HKEFTKFCYE VYNEIKISDK
 60 EFKEKRAALD TLRLCLKRIS PDAELVAFGS LESGLALKNS DMDLCVLMDS RVQSDTIALQ
120 FYEELIAEGF EGKFLQRARI PIIKLTSDTK NGFGASFQCD IGFNNRLAIH NTLLLSSYTK
180 LDARLKPMVL LVKHWAKRKQ INSPYFGTLS SYGYVLMVLY YLIHVIKPPV FPNLLLSPLK
240 QEKIVDGFDV GFDDKLEDIP PSQNYSSLGS LLHGFFRFYA YKFEPREKVV TFRRPDGYLT
300 KQEKGWTSAT EHTGSADQII KDRYILAIED PFEISHNVGR TVSSSGLYRI RGEFMAASRL
360 LNSRSYPIPY DSLFEEAPIP PRRQKKTDEQ SNKKLLNETD GDNSE
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
246177
Wang S.-W.,Toda T.,MacCallum R.,Harris A.L.,Norbury C.
Cid1, a fission yeast protein required for S-M checkpoint control when DNA polymerase delta or epsilon is inactivated.
Mol. Cell. Biol.
20
3234-3244
2000
246178
Wood V.,Gwilliam R.,Rajandream M.A.,Lyne M.H.,Lyne R.,Stewart A.,Sgouros J.G.,Peat N.,Hayles J.,Baker S.G.,Basham D.,Bowman S.,Brooks K.,Brown D.,Brown S.,Chillingworth T.,Churcher C.M.,Collins M.,Connor R.,Cronin A.,Davis P.,Feltwell T.,Fraser A.,Gentles S.,Goble A.,Hamlin N.,Harris D.E.,Hidalgo J.,Hodgson G.,Holroyd S.,Hornsby T.,Howarth S.,Huckle E.J.,Hunt S.,Jagels K.,James K.D.,Jones L.,Jones M.,Leather S.,McDonald S.,McLean J.,Mooney P.,Moule S.,Mungall K.L.,Murphy L.D.,Niblett D.,Odell C.,Oliver K.,O'Neil S.,Pearson D.,Quail M.A.,Rabbinowitsch E.,Rutherford K.M.,Rutter S.,Saunders D.,Seeger K.,Sharp S.,Skelton J.,Simmonds M.N.,Squares R.,Squares S.,Stevens K.,Taylor K.,Taylor R.G.,Tivey A.,Walsh S.V.,Warren T.,Whitehead S.,Woodward J.R.,Volckaert G.,Aert R.,Robben J.,Grymonprez B.,Weltjens I.,Vanstreels E.,Rieger M.,Schaefer M.,Mueller-Auer S.,Gabel C.,Fuchs M.,Duesterhoeft A.,Fritzc C.,Holzer E.,Moestl D.,Hilbert H.,Borzym K.,Langer I.,Beck A.,Lehrach H.,Reinhardt R.,Pohl T.M.,Eger P.,Zimmermann W.,Wedler H.,Wambutt R.,Purnelle B.,Goffeau A.,Cadieu E.,Dreano S.,Gloux S.,Lelaure V.,Mottier S.,Galibert F.,Aves S.J.,Xiang Z.,Hunt C.,Moore K.,Hurst S.M.,Lucas M.,Rochet M.,Gaillardin C.,Tallada V.A.,Garzon A.,Thode G.,Daga R.R.,Cruzado L.,Jimenez J.,Sanchez M.,del Rey F.,Benito J.,Dominguez A.,Revuelta J.L.,Moreno S.,Armstrong J.,Forsburg S.L.,Cerutti L.,Lowe T.,McCombie W.R.,Paulsen I.,Potashkin J.,Shpakovski G.V.,Ussery D.,Barrell B.G.,Nurse P.
The genome sequence of Schizosaccharomyces pombe.
Nature
415
871-880
2002
246179
Read R.L.,Martinho R.G.,Wang S.W.,Carr A.M.,Norbury C.J.
Cytoplasmic poly(A) polymerases mediate cellular responses to S phase arrest.
Proc. Natl. Acad. Sci. U.S.A.
99
12079-12084
2002
246180
Rissland O.S.,Mikulasova A.,Norbury C.J.
Efficient RNA polyuridylation by noncanonical poly(A) polymerases.
Mol. Cell. Biol.
27
3612-3624
2007
246181
Kwak J.E.,Wickens M.
A family of poly(U) polymerases.
RNA
13
860-867
2007
246182
Rissland O.S.,Norbury C.J.
Decapping is preceded by 3' uridylation in a novel pathway of bulk mRNA turnover.
Nat. Struct. Mol. Biol.
16
616-623
2009
246183
Yates L.A.,Fleurdepine S.,Rissland O.S.,De Colibus L.,Harlos K.,Norbury C.J.,Gilbert R.J.
Structural basis for the activity of a cytoplasmic RNA terminal uridylyl transferase.
Nat. Struct. Mol. Biol.
19
782-787
2012
246184
Lunde B.M.,Magler I.,Meinhart A.
Crystal structures of the Cid1 poly (U) polymerase reveal the mechanism for UTP selectivity.
Nucleic Acids Res.
40
9815-9824
2012
246185
Munoz-Tello P.,Gabus C.,Thore S.
Functional implications from the Cid1 poly(U) polymerase crystal structure.
Structure
20
977-986
2012
246186
Munoz-Tello P.,Gabus C.,Thore S.
A critical switch in the enzymatic properties of the Cid1 protein deciphered from its product-bound crystal structure.
Nucleic Acids Res.
42
3372-3380
2014
246187
Yates L.A.,Durrant B.P.,Fleurdepine S.,Harlos K.,Norbury C.J.,Gilbert R.J.
Structural plasticity of Cid1 provides a basis for its distributive RNA terminal uridylyl transferase activity.
Nucleic Acids Res.
43
2968-2979
2015