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Sequence of EXT1_DROME

EC Number:2.4.1.224

EC Number
Recommended Name
Accession Code
Organism
No of amino acids
Molecular Weight [Da]
Source
glucuronosyl-N-acetylglucosaminyl-proteoglycan 4-alpha-N-acetylglucosaminyltransferase
Q9V730
Drosophila melanogaster
760
87309
Reaction
UDP-N-acetyl-D-glucosamine + beta-D-glucuronosyl-(1->4)-N-acetyl-alpha-D-glucosaminyl-proteoglycan = UDP + N-acetyl-alpha-D-glucosaminyl-(1->4)-beta-D-glucuronosyl-(1->4)-N-acetyl-alpha-D-glucosaminyl-proteoglycan
Other sequences found for EC No. 2.4.1.224

General information:

Sequence
show sequence in fasta format
  0 MQAKKRYILV FVSCAFLAYA YFGGYRLKVS PLRPRRAQHE SAKDGGVQPH EQLPSFLGAH
 60 DMQELQLLQS NQSKSLDSSK HLVTRKPDCR METCFDFTRC YDRFLVYIYP PEPLNSLGAA
120 PPTSANYQKI LTAIQESRYY TSDPTAACLF VLGIDTLDRD SLSEDYVRNV PSRLARLPYW
180 NNGRNHIIFN LYSGTWPDYA ENSLGFDAGE AILAKASMGV LQLRHGFDVS IPLFHKQFPL
240 RAGATGTVQS NNFPANKKYL LAFKGKRYVH GIGSETRNSL FHLHNGRDMV LVTTCRHGKS
300 WRELQDNRCD EDNREYDRYD YETLLQNSTF CLVPRGRRLG SFRFLEALQA GCIPVLLSNA
360 WVLPFESKID WKQAAIWADE RLLLQVPDIV RSIPAERIFA LRQQTQVLWE RYFGSIEKIV
420 FTTFEIIRER LPDYPVRSSL VWNSSPGALL TLPTFADSSR YMPFLLNSMG AEPRHNYTAV
480 IYVQIGAALG PNAALYKLVR TITKSQFVER ILVLWAADRP LPLKKRWPPT SHIPLHVISL
540 GGSTRSQGAG PTSQTTEGRP SISQRFLPYD EIQTDAVLSL DEDAILNTDE LDFAYTVWRD
600 FPERIVGYPA RAHFWDDSKN AWGYTSKWTN YYSIVLTGAA FYHRYYNYLY TNWLSLLLLK
660 TVQQSSNCED ILMNLLVSHV TRKPPIKVTQ RKGYKDRETG RSPWNDPDHF IQRQSCLNTF
720 AAVFGYMPLI RSNLRMDPML YRDPVSNLRK KYRQIELVGS
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Sequence related references
Sequence Reference
Authors
Title
Journal
Volume
Pages
Year
PubMed ID
159724
Bellaiche Y.,The I.,Perrimon N.
Tout-velu is a Drosophila homologue of the putative tumour suppressor EXT-1 and is needed for Hh diffusion.
Nature
394
85-88
1998
159725
Izumikawa T.,Egusa N.,Taniguchi F.,Sugahara K.,Kitagawa H.
Heparan sulfate polymerization in Drosophila.
J. Biol. Chem.
281
1929-1934
2006
159726
Adams M.D.,Celniker S.E.,Holt R.A.,Evans C.A.,Gocayne J.D.,Amanatides P.G.,Scherer S.E.,Li P.W.,Hoskins R.A.,Galle R.F.,George R.A.,Lewis S.E.,Richards S.,Ashburner M.,Henderson S.N.,Sutton G.G.,Wortman J.R.,Yandell M.D.,Zhang Q.,Chen L.X.,Brandon R.C.,Rogers Y.-H.C.,Blazej R.G.,Champe M.,Pfeiffer B.D.,Wan K.H.,Doyle C.,Baxter E.G.,Helt G.,Nelson C.R.,Miklos G.L.G.,Abril J.F.,Agbayani A.,An H.-J.,Andrews-Pfannkoch C.,Baldwin D.,Ballew R.M.,Basu A.,Baxendale J.,Bayraktaroglu L.,Beasley E.M.,Beeson K.Y.,Benos P.V.,Berman B.P.,Bhandari D.,Bolshakov S.,Borkova D.,Botchan M.R.,Bouck J.,Brokstein P.,Brottier P.,Burtis K.C.,Busam D.A.,Butler H.,Cadieu E.,Center A.,Chandra I.,Cherry J.M.,Cawley S.,Dahlke C.,Davenport L.B.,Davies P.,de Pablos B.,Delcher A.,Deng Z.,Mays A.D.,Dew I.,Dietz S.M.,Dodson K.,Doup L.E.,Downes M.,Dugan-Rocha S.,Dunkov B.C.,Dunn P.,Durbin K.J.,Evangelista C.C.,Ferraz C.,Ferriera S.,Fleischmann W.,Fosler C.,Gabrielian A.E.,Garg N.S.,Gelbart W.M.,Glasser K.,Glodek A.,Gong F.,Gorrell J.H.,Gu Z.,Guan P.,Harris M.,Harris N.L.,Harvey D.A.,Heiman T.J.,Hernandez J.R.,Houck J.,Hostin D.,Houston K.A.,Howland T.J.,Wei M.-H.,Ibegwam C.,Jalali M.,Kalush F.,Karpen G.H.,Ke Z.,Kennison J.A.,Ketchum K.A.,Kimmel B.E.,Kodira C.D.,Kraft C.L.,Kravitz S.,Kulp D.,Lai Z.,Lasko P.,Lei Y.,Levitsky A.A.,Li J.H.,Li Z.,Liang Y.,Lin X.,Liu X.,Mattei B.,McIntosh T.C.,McLeod M.P.,McPherson D.,Merkulov G.,Milshina N.V.,Mobarry C.,Morris J.,Moshrefi A.,Mount S.M.,Moy M.,Murphy B.,Murphy L.,Muzny D.M.,Nelson D.L.,Nelson D.R.,Nelson K.A.,Nixon K.,Nusskern D.R.,Pacleb J.M.,Palazzolo M.,Pittman G.S.,Pan S.,Pollard J.,Puri V.,Reese M.G.,Reinert K.,Remington K.,Saunders R.D.C.,Scheeler F.,Shen H.,Shue B.C.,Siden-Kiamos I.,Simpson M.,Skupski M.P.,Smith T.J.,Spier E.,Spradling A.C.,Stapleton M.,Strong R.,Sun E.,Svirskas R.,Tector C.,Turner R.,Venter E.,Wang A.H.,Wang X.,Wang Z.-Y.,Wassarman D.A.,Weinstock G.M.,Weissenbach J.,Williams S.M.,Woodage T.,Worley K.C.,Wu D.,Yang S.,Yao Q.A.,Ye J.,Yeh R.-F.,Zaveri J.S.,Zhan M.,Zhang G.,Zhao Q.,Zheng L.,Zheng X.H.,Zhong F.N.,Zhong W.,Zhou X.,Zhu S.C.,Zhu X.,Smith H.O.,Gibbs R.A.,Myers E.W.,Rubin G.M.,Venter J.C.
The genome sequence of Drosophila melanogaster.
Science
287
2185-2195
2000
159727
Misra S.,Crosby M.A.,Mungall C.J.,Matthews B.B.,Campbell K.S.,Hradecky P.,Huang Y.,Kaminker J.S.,Millburn G.H.,Prochnik S.E.,Smith C.D.,Tupy J.L.,Whitfield E.J.,Bayraktaroglu L.,Berman B.P.,Bettencourt B.R.,Celniker S.E.,de Grey A.D.N.J.,Drysdale R.A.,Harris N.L.,Richter J.,Russo S.,Schroeder A.J.,Shu S.Q.,Stapleton M.,Yamada C.,Ashburner M.,Gelbart W.M.,Rubin G.M.,Lewis S.E.
Annotation of the Drosophila melanogaster euchromatic genome: a systematic review.
Genome Biol.
3
0-0
2002
159729
The I.,Bellaiche Y.,Perrimon N.
Hedgehog movement is regulated through tout velu-dependent synthesis of a heparan sulfate proteoglycan.
Mol. Cell
4
633-639
1999
159730
Toyoda H.,Kinoshita-Toyoda A.,Selleck S.B.
Structural analysis of glycosaminoglycans in Drosophila and Caenorhabditis elegans and demonstration that tout-velu, a Drosophila gene related to EXT tumor suppressors, affects heparan sulfate in vivo.
J. Biol. Chem.
275
2269-2275
2000
159731
Toyoda H.,Kinoshita-Toyoda A.,Fox B.,Selleck S.B.
Structural analysis of glycosaminoglycans in animals bearing mutations in sugarless, sulfateless, and tout-velu. Drosophila homologues of vertebrate genes encoding glycosaminoglycan biosynthetic enzymes.
J. Biol. Chem.
275
21856-21861
2000
159732
Gallet A.,Rodriguez R.,Ruel L.,Therond P.P.
Cholesterol modification of hedgehog is required for trafficking and movement, revealing an asymmetric cellular response to hedgehog.
Dev. Cell
4
191-204
2003
159733
Takei Y.,Ozawa Y.,Sato M.,Watanabe A.,Tabata T.
Three Drosophila EXT genes shape morphogen gradients through synthesis of heparan sulfate proteoglycans.
Development
131
73-82
2004
159734
Han C.,Belenkaya T.Y.,Wang B.,Lin X.
Drosophila glypicans control the cell-to-cell movement of Hedgehog by a dynamin-independent process.
Development
131
601-611
2004
159735
Han C.,Belenkaya T.Y.,Khodoun M.,Tauchi M.,Lin X.,Lin X.
Distinct and collaborative roles of Drosophila EXT family proteins in morphogen signalling and gradient formation.
Development
131
1563-1575
2004
159736
Bornemann D.J.,Duncan J.E.,Staatz W.,Selleck S.,Warrior R.
Abrogation of heparan sulfate synthesis in Drosophila disrupts the Wingless, Hedgehog and Decapentaplegic signaling pathways.
Development
131
1927-1938
2004
159737
Chang W.L.,Chang C.W.,Chang Y.Y.,Sung H.H.,Lin M.D.,Chang S.C.,Chen C.H.,Huang C.W.,Tung K.S.,Chou T.B.
The Drosophila GOLPH3 homolog regulates the biosynthesis of heparan sulfate proteoglycans by modulating the retrograde trafficking of exostosins.
Development
140
2798-2807
2013