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Sequence of PARG_HUMAN

EC Number:3.2.1.143

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
poly(ADP-ribose) glycohydrolase
Q86W56
Homo sapiens
976
111110
Reaction
hydrolyses poly(ADP-D-ribose) at glycosidic (1''-2') linkage of ribose-ribose bond to produce free ADP-D-ribose

General information:

Sequence
show sequence in fasta format
  0 MNAGPGCEPC TKRPRWGAAT TSPAASDARS FPSRQRRVLD PKDAHVQFRV PPSSPACVPG
 60 RAGQHRGSAT SLVFKQKTIT SWMDTKGIKT AESESLDSKE NNNTRIESMM SSVQKDNFYQ
120 HNVEKLENVS QLSLDKSPTE KSTQYLNQHQ TAAMCKWQNE GKHTEQLLES EPQTVTLVPE
180 QFSNANIDRS PQNDDHSDTD SEENRDNQQF LTTVKLANAK QTTEDEQARE AKSHQKCSKS
240 CDPGEDCASC QQDEIDVVPE SPLSDVGSED VGTGPKNDNK LTRQESCLGN SPPFEKESEP
300 ESPMDVDNSK NSCQDSEADE ETSPGFDEQE DGSSSQTANK PSRFQARDAD IEFRKRYSTK
360 GGEVRLHFQF EGGESRTGMN DLNAKLPGNI SSLNVECRNS KQHGKKDSKI TDHFMRLPKA
420 EDRRKEQWET KHQRTERKIP KYVPPHLSPD KKWLGTPIEE MRRMPRCGIR LPLLRPSANH
480 TVTIRVDLLR AGEVPKPFPT HYKDLWDNKH VKMPCSEQNL YPVEDENGER TAGSRWELIQ
540 TALLNKFTRP QNLKDAILKY NVAYSKKWDF TALIDFWDKV LEEAEAQHLY QSILPDMVKI
600 ALCLPNICTQ PIPLLKQKMN HSITMSQEQI ASLLANAFFC TFPRRNAKMK SEYSSYPDIN
660 FNRLFEGRSS RKPEKLKTLF CYFRRVTEKK PTGLVTFTRQ SLEDFPEWER CEKPLTRLHV
720 TYEGTIEENG QGMLQVDFAN RFVGGGVTSA GLVQEEIRFL INPELIISRL FTEVLDHNEC
780 LIITGTEQYS EYTGYAETYR WSRSHEDGSE RDDWQRRCTE IVAIDALHFR RYLDQFVPEK
840 MRRELNKAYC GFLRPGVSSE NLSAVATGNW GCGAFGGDAR LKALIQILAA AAAERDVVYF
900 TFGDSELMRD IYSMHIFLTE RKLTVGDVYK LLLRYYNEEC RNCSTPGPDI KLYPFIYHAV
960 ESCAETADHS GQRTGT
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
1022677
Meyer R.G.,Meyer-Ficca M.L.,Jacobson E.L.,Jacobson M.K.
Human poly(ADP-ribose) glycohydrolase (PARG) gene and the common promoter sequence it shares with inner mitochondrial membrane translocase 23 (TIM23).
Gene
314
181-190
2003
1022678
Meyer-Ficca M.L.,Meyer R.G.,Coyle D.L.,Jacobson E.L.,Jacobson M.K.
Human poly(ADP-ribose) glycohydrolase is expressed in alternative splice variants yielding isoforms that localize to different cell compartments.
Exp. Cell Res.
297
521-532
2004
1022679
Ame J.-C.,Apiou F.,Jacobson E.L.,Jacobson M.K.
Assignment of the poly(ADP-ribose) glycohydrolase gene (PARG) to human chromosome 10q11.23 and mouse chromosome 14B by in situ hybridization.
Cytogenet. Cell Genet.
85
269-270
1999
1022680
Meyer R.G.,Meyer-Ficca M.L.,Whatcott C.J.,Jacobson E.L.,Jacobson M.K.
Two small enzyme isoforms mediate mammalian mitochondrial poly(ADP-ribose) glycohydrolase (PARG) activity.
Exp. Cell Res.
313
2920-2936
2007
1022681
Niere M.,Mashimo M.,Agledal L.,Dolle C.,Kasamatsu A.,Kato J.,Moss J.,Ziegler M.
ADP-ribosylhydrolase 3 (ARH3), not poly(ADP-ribose) glycohydrolase (PARG) isoforms, is responsible for degradation of mitochondrial matrix-associated poly(ADP-ribose).
J. Biol. Chem.
287
16088-16102
2012
1022682
Ota T.,Suzuki Y.,Nishikawa T.,Otsuki T.,Sugiyama T.,Irie R.,Wakamatsu A.,Hayashi K.,Sato H.,Nagai K.,Kimura K.,Makita H.,Sekine M.,Obayashi M.,Nishi T.,Shibahara T.,Tanaka T.,Ishii S.,Yamamoto J.,Saito K.,Kawai Y.,Isono Y.,Nakamura Y.,Nagahari K.,Murakami K.,Yasuda T.,Iwayanagi T.,Wagatsuma M.,Shiratori A.,Sudo H.,Hosoiri T.,Kaku Y.,Kodaira H.,Kondo H.,Sugawara M.,Takahashi M.,Kanda K.,Yokoi T.,Furuya T.,Kikkawa E.,Omura Y.,Abe K.,Kamihara K.,Katsuta N.,Sato K.,Tanikawa M.,Yamazaki M.,Ninomiya K.,Ishibashi T.,Yamashita H.,Murakawa K.,Fujimori K.,Tanai H.,Kimata M.,Watanabe M.,Hiraoka S.,Chiba Y.,Ishida S.,Ono Y.,Takiguchi S.,Watanabe S.,Yosida M.,Hotuta T.,Kusano J.,Kanehori K.,Takahashi-Fujii A.,Hara H.,Tanase T.-O.,Nomura Y.,Togiya S.,Komai F.,Hara R.,Takeuchi K.,Arita M.,Imose N.,Musashino K.,Yuuki H.,Oshima A.,Sasaki N.,Aotsuka S.,Yoshikawa Y.,Matsunawa H.,Ichihara T.,Shiohata N.,Sano S.,Moriya S.,Momiyama H.,Satoh N.,Takami S.,Terashima Y.,Suzuki O.,Nakagawa S.,Senoh A.,Mizoguchi H.,Goto Y.,Shimizu F.,Wakebe H.,Hishigaki H.,Watanabe T.,Sugiyama A.,Takemoto M.,Kawakami B.,Yamazaki M.,Watanabe K.,Kumagai A.,Itakura S.,Fukuzumi Y.,Fujimori Y.,Komiyama M.,Tashiro H.,Tanigami A.,Fujiwara T.,Ono T.,Yamada K.,Fujii Y.,Ozaki K.,Hirao M.,Ohmori Y.,Kawabata A.,Hikiji T.,Kobatake N.,Inagaki H.,Ikema Y.,Okamoto S.,Okitani R.,Kawakami T.,Noguchi S.,Itoh T.,Shigeta K.,Senba T.,Matsumura K.,Nakajima Y.,Mizuno T.,Morinaga M.,Sasaki M.,Togashi T.,Oyama M.,Hata H.,Watanabe M.,Komatsu T.,Mizushima-Sugano J.,Satoh T.,Shirai Y.,Takahashi Y.,Nakagawa K.,Okumura K.,Nagase T.,Nomura N.,Kikuchi H.,Masuho Y.,Yamashita R.,Nakai K.,Yada T.,Nakamura Y.,Ohara O.,Isogai T.,Sugano S.
Complete sequencing and characterization of 21,243 full-length human cDNAs.
Nat. Genet.
36
40-45
2004
1022683
The status, quality, and expansion of the NIH full-length cDNA project: the Mammalian Gene Collection (MGC).
Genome Res.
14
2121-2127
2004
1022684
Putt K.S.,Hergenrother P.J.
A nonradiometric, high-throughput assay for poly(ADP-ribose) glycohydrolase (PARG): application to inhibitor identification and evaluation.
Anal. Biochem.
333
256-264
2004
1022685
Haince J.F.,Ouellet M.E.,McDonald D.,Hendzel M.J.,Poirier G.G.
Dynamic relocation of poly(ADP-ribose) glycohydrolase isoforms during radiation-induced DNA damage.
Biochim. Biophys. Acta
1763
226-237
2006
1022686
Beausoleil S.A.,Villen J.,Gerber S.A.,Rush J.,Gygi S.P.
A probability-based approach for high-throughput protein phosphorylation analysis and site localization.
Nat. Biotechnol.
24
1285-1292
2006
1022687
Dephoure N.,Zhou C.,Villen J.,Beausoleil S.A.,Bakalarski C.E.,Elledge S.J.,Gygi S.P.
A quantitative atlas of mitotic phosphorylation.
Proc. Natl. Acad. Sci. U.S.A.
105
10762-10767
2008
1022688
Gagne J.P.,Moreel X.,Gagne P.,Labelle Y.,Droit A.,Chevalier-Pare M.,Bourassa S.,McDonald D.,Hendzel M.J.,Prigent C.,Poirier G.G.
Proteomic investigation of phosphorylation sites in poly(ADP-ribose) polymerase-1 and poly(ADP-ribose) glycohydrolase.
J. Proteome Res.
8
1014-1029
2009
1022689
Mayya V.,Lundgren D.H.,Hwang S.-I.,Rezaul K.,Wu L.,Eng J.K.,Rodionov V.,Han D.K.
Quantitative phosphoproteomic analysis of T cell receptor signaling reveals system-wide modulation of protein-protein interactions.
Sci. Signal.
2
RA46-RA46
2009
1022690
Olsen J.V.,Vermeulen M.,Santamaria A.,Kumar C.,Miller M.L.,Jensen L.J.,Gnad F.,Cox J.,Jensen T.S.,Nigg E.A.,Brunak S.,Mann M.
Quantitative phosphoproteomics reveals widespread full phosphorylation site occupancy during mitosis.
Sci. Signal.
3
RA3-RA3
2010
1022691
Burkard T.R.,Planyavsky M.,Kaupe I.,Breitwieser F.P.,Buerckstuemmer T.,Bennett K.L.,Superti-Furga G.,Colinge J.
Initial characterization of the human central proteome.
BMC Syst. Biol.
5
17-17
2011
1022692
Slade D.,Dunstan M.S.,Barkauskaite E.,Weston R.,Lafite P.,Dixon N.,Ahel M.,Leys D.,Ahel I.
The structure and catalytic mechanism of a poly(ADP-ribose) glycohydrolase.
Nature
477
616-620
2011
1022693
Mortusewicz O.,Fouquerel E.,Ame J.C.,Leonhardt H.,Schreiber V.
PARG is recruited to DNA damage sites through poly(ADP-ribose)- and PCNA-dependent mechanisms.
Nucleic Acids Res.
39
5045-5056
2011
1022694
Rigbolt K.T.,Prokhorova T.A.,Akimov V.,Henningsen J.,Johansen P.T.,Kratchmarova I.,Kassem M.,Mann M.,Olsen J.V.,Blagoev B.
System-wide temporal characterization of the proteome and phosphoproteome of human embryonic stem cell differentiation.
Sci. Signal.
4
RS3-RS3
2011
1022695
Le May N.,Iltis I.,Ame J.C.,Zhovmer A.,Biard D.,Egly J.M.,Schreiber V.,Coin F.
Poly (ADP-ribose) glycohydrolase regulates retinoic acid receptor-mediated gene expression.
Mol. Cell
48
785-798
2012
1022696
Van Damme P.,Lasa M.,Polevoda B.,Gazquez C.,Elosegui-Artola A.,Kim D.S.,De Juan-Pardo E.,Demeyer K.,Hole K.,Larrea E.,Timmerman E.,Prieto J.,Arnesen T.,Sherman F.,Gevaert K.,Aldabe R.
N-terminal acetylome analyses and functional insights of the N-terminal acetyltransferase NatB.
Proc. Natl. Acad. Sci. U.S.A.
109
12449-12454
2012
1022697
Sharifi R.,Morra R.,Appel C.D.,Tallis M.,Chioza B.,Jankevicius G.,Simpson M.A.,Matic I.,Ozkan E.,Golia B.,Schellenberg M.J.,Weston R.,Williams J.G.,Rossi M.N.,Galehdari H.,Krahn J.,Wan A.,Trembath R.C.,Crosby A.H.,Ahel D.,Hay R.,Ladurner A.G.,Timinszky G.,Williams R.S.,Ahel I.
Deficiency of terminal ADP-ribose protein glycohydrolase TARG1/C6orf130 in neurodegenerative disease.
EMBO J.
32
1225-1237
2013
1022698
Rosenthal F.,Feijs K.L.,Frugier E.,Bonalli M.,Forst A.H.,Imhof R.,Winkler H.C.,Fischer D.,Caflisch A.,Hassa P.O.,Luescher B.,Hottiger M.O.
Macrodomain-containing proteins are new mono-ADP-ribosylhydrolases.
Nat. Struct. Mol. Biol.
20
502-507
2013
1022699
Zhou H.,Di Palma S.,Preisinger C.,Peng M.,Polat A.N.,Heck A.J.,Mohammed S.
Toward a comprehensive characterization of a human cancer cell phosphoproteome.
J. Proteome Res.
12
260-271
2013
1022700
Bian Y.,Song C.,Cheng K.,Dong M.,Wang F.,Huang J.,Sun D.,Wang L.,Ye M.,Zou H.
An enzyme assisted RP-RPLC approach for in-depth analysis of human liver phosphoproteome.
J. Proteomics
96
253-262
2014
1022701
Illuzzi G.,Fouquerel E.,Ame J.C.,Noll A.,Rehmet K.,Nasheuer H.P.,Dantzer F.,Schreiber V.
PARG is dispensable for recovery from transient replicative stress but required to prevent detrimental accumulation of poly(ADP-ribose) upon prolonged replicative stress.
Nucleic Acids Res.
42
7776-7792
2014
1022702
Wright R.H.,Lioutas A.,Le Dily F.,Soronellas D.,Pohl A.,Bonet J.,Nacht A.S.,Samino S.,Font-Mateu J.,Vicent G.P.,Wierer M.,Trabado M.A.,Schelhorn C.,Carolis C.,Macias M.J.,Yanes O.,Oliva B.,Beato M.
ADP-ribose-derived nuclear ATP synthesis by NUDIX5 is required for chromatin remodeling.
Science
352
1221-1225
2016
1022703
Bonfiglio J.J.,Leidecker O.,Dauben H.,Longarini E.J.,Colby T.,San Segundo-Acosta P.,Perez K.A.,Matic I.
An HPF1/PARP1-based chemical biology strategy for exploring ADP-ribosylation.
Cell
183
1086-1102
2020
1022704
Prokhorova E.,Agnew T.,Wondisford A.R.,Tellier M.,Kaminski N.,Beijer D.,Holder J.,Groslambert J.,Suskiewicz M.J.,Zhu K.,Reber J.M.,Krassnig S.C.,Palazzo L.,Murphy S.,Nielsen M.L.,Mangerich A.,Ahel D.,Baets J.,O'Sullivan R.J.,Ahel I.
Unrestrained poly-ADP-ribosylation provides insights into chromatin regulation and human disease.
Mol. Cell
81
2640-2655.e8
2021
1022705
Rack J.G.M.,Liu Q.,Zorzini V.,Voorneveld J.,Ariza A.,Honarmand Ebrahimi K.,Reber J.M.,Krassnig S.C.,Ahel D.,van der Marel G.A.,Mangerich A.,McCullagh J.S.O.,Filippov D.V.,Ahel I.
Mechanistic insights into the three steps of poly(ADP-ribosylation) reversal.
Nat. Commun.
12
4581-4581
2021
1022706
Tucker J.A.,Bennett N.,Brassington C.,Durant S.T.,Hassall G.,Holdgate G.,McAlister M.,Nissink J.W.,Truman C.,Watson M.
Structures of the human poly (ADP-ribose) glycohydrolase catalytic domain confirm catalytic mechanism and explain inhibition by ADP-HPD derivatives.
PLoS ONE
7
E50889-E50889
2012
1022707
Rack J.G.M.,Ariza A.,Drown B.S.,Henfrey C.,Bartlett E.,Shirai T.,Hergenrother P.J.,Ahel I.
(ADP-ribosyl)hydrolases: Structural Basis for Differential Substrate Recognition and Inhibition.
Cell Chem. Biol.
0
0-0
2018