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0  structures 1  species 0  interactions 1  sequence 1  architecture

Protein: M9PB21_DROME (M9PB21)

Summary

This is the summary of UniProt entry M9PB21_DROME (M9PB21).

Description: 3-oxoacyl-[acyl-carrier-protein] reductase {ECO:0000256|ARBA:ARBA00018576}
Source organism: Drosophila melanogaster (Fruit fly) (NCBI taxonomy ID 7227)
Length: 2410 amino acids
Reference Proteome: ✓

Please note: when we start each new Pfam data release, we take a copy of the UniProt sequence database. This snapshot of UniProt forms the basis of the overview that you see here. It is important to note that, although some UniProt entries may be removed after a Pfam release, these entries will not be removed from Pfam until the next Pfam data release.

Pfam domains

Download the data used to generate the domain graphic in JSON format.

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Source Domain Start End
disorder n/a 1 12
Pfam ketoacyl-synt 16 257
Pfam Ketoacyl-synt_C 261 379
disorder n/a 276 278
disorder n/a 311 313
disorder n/a 317 318
disorder n/a 342 345
Pfam KAsynt_C_assoc 381 496
disorder n/a 431 436
disorder n/a 461 462
low_complexity n/a 505 514
Pfam Acyl_transf_1 518 835
Pfam PS-DH 873 1104
disorder n/a 1113 1123
disorder n/a 1125 1129
disorder n/a 1140 1147
disorder n/a 1214 1215
low_complexity n/a 1308 1322
Pfam ADH_zinc_N 1586 1721
Pfam KR 1791 1971
low_complexity n/a 1795 1806
disorder n/a 2016 2017
Pfam PP-binding 2030 2094
disorder n/a 2099 2109
low_complexity n/a 2099 2111
Pfam Thioesterase 2159 2408

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Sequence information

This is the amino acid sequence of the UniProt sequence database entry with the accession M9PB21. This sequence is stored in the Pfam database and updated with each new Pfam release, but this means that the sequence we store may differ from that stored by UniProt.

Sequence:
1
MPSRKKAQGE SAAGEDADIV ISGLSGKLPE SSNIEEFKYN LLNGIDMVTD
50
51
EPRRWEAGIY GLPERMAKMK DSDLEKFDDK FFSVHQKQAE LMDPCMRMLL
100
101
ELTHEAIIDA GINPVQLRGS RTGVYIGLSF VETEHEIPNM EPSSINGYCL
150
151
TGCARAMFAN RISYTFDFKG PSFIVDTACS SSLVALNHAF ADMRAGRCDY
200
201
ALVAGVNLIL KPIFALQFLR LGIVSHDGSC KTFDAAANGY ARADTCAVVL
250
251
LQRRKEAKRV YASILNVRTN TDGFKEQGVT FPDGRMQQAL LEETYSEIGL
300
301
NPDEVVYVEA HGSGTPVGDD QEANMLSNFF CRPSRSTPLL IGSVKSNMGH
350
351
AEPASGVSAL AKMIIAMEEG IIPKNLHYRT PNPSVPALVE GKLKVVDRNL
400
401
PWQGGIVGLN SFGFGGANAH VVLKSHTKAK EPKACPKAGE AEQSLSLVTC
450
451
SGRTEDAVNQ LLKVATEQRH DQELLTLIND IHSHPIPLHP FRGYAVLGTS
500
501
GCVKEEVLPY EEEERPIWFV YAGMGSQWAR MAKDLMQLEV FRNSIQHCAE
550
551
VLAQVDFDLI DVLTRSTERT FDNMLYSFVS VSAVQVALTD LLRVLDIRPD
600
601
GIIGHSAGEL GAAYMDGCLT AEQTVLAAYW RGRSVLDTPD LPRGKMAAVG
650
651
LSWEQIGSQI PKDCYPVCHN SDDNCTVSGP PSSMDAMIED LTAKGIFVRE
700
701
VGSGGYAFHS PYIEGAAPML RRSLERLITE PKKKSIRWLS TSVKEAEWDS
750
751
EKNHLASAGY FINNLISPVL FHQAVKRIPQ NALIVEIAPH GLFRAILRSL
800
801
SPQISYVSLM QRGHANNFEF LLSQLGRLYA AGGQPQILKI SPSIPYPVSR
850
851
GTPMLGSLVG WDHTQKWNYP KFKGGRQAGQ LSVELDLGKE ENVYLAGHTI
900
901
DGRVLFPATG YMTLAWMSLA QQQGLDYLRT PVLFEDVVFH RATILSVGTV
950
951
VKLTLNFFPG SSSFEICEGT SLVTSGKIRL VSNVQQEQLQ LSSLPGIAGS
1000
1001
NKLSTKDIYK ELRLRGYDYT GVFQGILESD ISAVTGQLQW ADNWISFMDT
1050
1051
MLQFRILSND IRELYVPTGI ERALIDPLKH LELAKKHQQK LTVNWHRNIS
1100
1101
VVKCGGVEIH KMKTAQTQRR SGGQSPPSLE RYRFWPHSQH LGQREEQEKS
1150
1151
RSTALAVAIQ LIIENSGGAV KLKGVELAGS RSTLDALSAV QLLELIEREP
1200
1201
ILVGDMAVVT SSSNESELGE QLKEHGIRVI VKDIKAGAVE QQCHFVYSVN
1250
1251
MLAQNSVKDL QHCLDSLKSD SGFLLLEEAA SRYNIIGKEK LNKLKLVSVL
1300
1301
EQFFGTDRVL VLVRKLSKVQ SSQALTLHLT NKQFKWVNEL KNSIAKAQAE
1350
1351
EKNLYLVAQG EPNSGALGLM NCLKREAGGH FLRLYLILDE GVPQFSLDDP
1400
1401
FYAAQLAKDL VVNVYRNGSW GSYRHLKMES RPPMLPVEQA YVNTLVKGDL
1450
1451
SSLRWIESPR SSPIQSQLEP CTVYYAPLNF RDVMLASGKL GVDALPGDLA
1500
1501
YQDCVLGLEF AGRDSCGRRV MAMVTAKSLA TNCLANRNLL WEVPSKWTME
1550
1551
QASTVPCVYA TVYYALVVRG QMKEGERILI HAGSGGVGQA AISVALAHGL
1600
1601
TVFTTVGSKE KREFLLKRFP KLKAKNIGNS RDTSFEQLIM SETHGNGVEL
1650
1651
VLNSLSEEKL QASIRCLALN GRFLEIGKFD LSNNTPLGMS VFLKNTSFHG
1700
1701
ILLDSVMEGE EEMQLMVAKL VAEGIKSGAV QPLPTTVFAE QEIEKAFRFM
1750
1751
ASGKHIGKVV IKVRLEEEQQ AALPRLRQIQ AIPRSYMHPE KSYILVGGLG
1800
1801
GFGLELANWL VSRGARFLVL SSRSGVKSGY QALMIRRWHD RGVQVQIDTN
1850
1851
DVTTAVGCQR LLEVSNKLAL VGGIFNLAAV LRDGLIEDQS PKNFEKVSAP
1900
1901
KLLATIHLDK ISREICPALE YFVCFSSLSC GRGNMGQTNY GLANSTMERI
1950
1951
CEQRQEYGYP GTAIQWGAIG DTGLIIEHMG NNETVVGGTL PQRMISCLET
2000
2001
LDLFLQQPHP VMASMVVAEK RKTEQANRLS LIATIANIMG LRDVKSVSDK
2050
2051
TTLFDLGMDS LMSTEIKQTL ERHFDLVLSA QEIRQLTFSA LRQIDAQEPP
2100
2101
SASVSSPSAS STLSRIKEEA CVEVQPQSDE TRKVFAKEVL PQEVMVRLRS
2150
2151
KAPVASEDPA VFFLAPIEGF TIAVEALAAS LTCPAYGLQC TEQVPLDSIE
2200
2201
ACAAYYLRQI QKLQPLGPYH IVGYSYGCLL AHAIAVALEQ RRFGVKVIML
2250
2251
DGAPTMASGY VQEAKKQTDD LNRQQSMTLA YFGALLADVD YNQVLLQLLD
2300
2301
GVQTWPSKLD KLADTLAGYT QQTREVIKKA ACMFKQKLLL SESYKGAKQL
2350
2351
HSDVVLIKSA EHNAIMAQDY GLKEICSAQI DMHVVEGTHR TFLKEPHTLQ
2400
2401
IIERVLRKRP                                            
2410
 

Show the unformatted sequence.

Checksums:
CRC64:480A5276EF7CAB1D
MD5:388b539de6f01d9672697e1c2acd85f3

AlphaFold Structure Prediction

The protein structure below has been predicted by DeepMind with AlphaFold. For more information, please visit the AlphaFold page for this protein.

Model confidence scale

  Very High (pLDDT > 90)
  Confident (90 > pLDDT > 70)
  Low (70 > pLDDT > 50)
  Very Low (pLDDT < 50)
Highly accurate protein structure prediction with AlphaFold. John Jumper, Richard Evans, Alexander Pritzel, Tim Green, Michael Figurnov, Olaf Ronneberger, Kathryn Tunyasuvunakool, Russ Bates, Augustin Žídek, Anna Potapenko, Alex Bridgland, Clemens Meyer, Simon A. A. Kohl, Andrew J. Ballard, Andrew Cowie, Bernardino Romera-Paredes, Stanislav Nikolov, Rishub Jain, Jonas Adler, Trevor Back, Stig Petersen, David Reiman, Ellen Clancy, Michal Zielinski, Martin Steinegger, Michalina Pacholska, Tamas Berghammer, Sebastian Bodenstein, David Silver, Oriol Vinyals, Andrew W. Senior, Koray Kavukcuoglu, Pushmeet Kohli & Demis Hassabis Nature 2021-07-15; DOI: 10.1038/s41586-021-03819-2;