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Muscle-specific protein 300 kDa, isoform M

 M9PEP8_DROME            Unreviewed;      6685 AA.
M9PEP8;
26-JUN-2013, integrated into UniProtKB/TrEMBL.
26-JUN-2013, sequence version 1.
10-OCT-2018, entry version 47.
SubName: Full=Muscle-specific protein 300 kDa, isoform M {ECO:0000313|EMBL:AGB92627.1};
Name=Msp300 {ECO:0000313|EMBL:AGB92627.1,
ECO:0000313|FlyBase:FBgn0261836};
Synonyms=Bbbf1 {ECO:0000313|EMBL:AGB92627.1},
BBF-1 {ECO:0000313|EMBL:AGB92627.1},
BcDNA:AT10293 {ECO:0000313|EMBL:AGB92627.1},
BcDNA:GH02446 {ECO:0000313|EMBL:AGB92627.1},
BcDNA:GH18470 {ECO:0000313|EMBL:AGB92627.1},
BcDNA:LP10936 {ECO:0000313|EMBL:AGB92627.1},
CG14035 {ECO:0000313|EMBL:AGB92627.1},
CG18251 {ECO:0000313|EMBL:AGB92627.1},
CG18252 {ECO:0000313|EMBL:AGB92627.1},
CG31649 {ECO:0000313|EMBL:AGB92627.1},
CG31916 {ECO:0000313|EMBL:AGB92627.1},
CG33549 {ECO:0000313|EMBL:AGB92627.1},
CG33715 {ECO:0000313|EMBL:AGB92627.1},
CG42768 {ECO:0000313|EMBL:AGB92627.1},
Dmel\CG42768 {ECO:0000313|EMBL:AGB92627.1},
dNesp1 {ECO:0000313|EMBL:AGB92627.1},
FBgn0010070 {ECO:0000313|EMBL:AGB92627.1},
jf22 {ECO:0000313|EMBL:AGB92627.1},
l(2)25Ch {ECO:0000313|EMBL:AGB92627.1},
l(2)jf22 {ECO:0000313|EMBL:AGB92627.1},
MSP-300 {ECO:0000313|EMBL:AGB92627.1},
Msp-300 {ECO:0000313|EMBL:AGB92627.1},
msp-300 {ECO:0000313|EMBL:AGB92627.1},
MSP300 {ECO:0000313|EMBL:AGB92627.1},
msp300 {ECO:0000313|EMBL:AGB92627.1},
Spec25CD {ECO:0000313|EMBL:AGB92627.1};
ORFNames=CG42768 {ECO:0000313|FlyBase:FBgn0261836},
Dmel_CG42768 {ECO:0000313|EMBL:AGB92627.1};
Drosophila melanogaster (Fruit fly).
Eukaryota; Metazoa; Ecdysozoa; Arthropoda; Hexapoda; Insecta;
Pterygota; Neoptera; Holometabola; Diptera; Brachycera; Muscomorpha;
Ephydroidea; Drosophilidae; Drosophila; Sophophora.
NCBI_TaxID=7227 {ECO:0000313|EMBL:AGB92627.1, ECO:0000313|Proteomes:UP000000803};
[1] {ECO:0000313|EMBL:AGB92627.1, ECO:0000313|Proteomes:UP000000803}
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=Berkeley {ECO:0000313|Proteomes:UP000000803};
PubMed=10731132; DOI=10.1126/science.287.5461.2185;
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., Blazej R.G., Champe M., Pfeiffer B.D.,
Wan K.H., Doyle C., Baxter E.G., Helt G., Nelson C.R., Gabor G.L.,
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., 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., Kravitz S., Kulp D., Lai Z.,
Lasko P., Lei Y., Levitsky A.A., Li J., 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., Scheeler F., Shen H.,
Shue B.C., Siden-Kiamos I., Simpson M., Skupski M.P., Smith T.,
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., WoodageT, 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., 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).
[2] {ECO:0000313|EMBL:AGB92627.1, ECO:0000313|Proteomes:UP000000803}
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=Berkeley {ECO:0000313|Proteomes:UP000000803};
PubMed=12537568;
Celniker S.E., Wheeler D.A., Kronmiller B., Carlson J.W., Halpern A.,
Patel S., Adams M., Champe M., Dugan S.P., Frise E., Hodgson A.,
George R.A., Hoskins R.A., Laverty T., Muzny D.M., Nelson C.R.,
Pacleb J.M., Park S., Pfeiffer B.D., Richards S., Sodergren E.J.,
Svirskas R., Tabor P.E., Wan K., Stapleton M., Sutton G.G., Venter C.,
Weinstock G., Scherer S.E., Myers E.W., Gibbs R.A., Rubin G.M.;
"Finishing a whole-genome shotgun: release 3 of the Drosophila
melanogaster euchromatic genome sequence.";
Genome Biol. 3:RESEARCH0079-RESEARCH0079(2002).
[3] {ECO:0000313|EMBL:AGB92627.1, ECO:0000313|Proteomes:UP000000803}
GENOME REANNOTATION.
STRAIN=Berkeley {ECO:0000313|Proteomes:UP000000803};
PubMed=12537572; DOI=10.1186/gb-2002-3-12-research0083;
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., Whitfied E.J., Bayraktaroglu L., Berman B.P.,
Bettencourt B.R., Celniker S.E., de Grey A.D., 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:RESEARCH0083.1-RESEARCH0083.22(2002).
[4] {ECO:0000313|EMBL:AGB92627.1, ECO:0000313|Proteomes:UP000000803}
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=Berkeley {ECO:0000313|Proteomes:UP000000803};
PubMed=12537573;
Kaminker J.S., Bergman C.M., Kronmiller B., Carlson J., Svirskas R.,
Patel S., Frise E., Wheeler D.A., Lewis S.E., Rubin G.M.,
Ashburner M., Celniker S.E.;
"The transposable elements of the Drosophila melanogaster euchromatin:
a genomics perspective.";
Genome Biol. 3:RESEARCH0084-RESEARCH0084(2002).
[5] {ECO:0000313|EMBL:AGB92627.1, ECO:0000313|Proteomes:UP000000803}
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=Berkeley {ECO:0000313|Proteomes:UP000000803};
PubMed=12537574;
Hoskins R.A., Smith C.D., Carlson J.W., Carvalho A.B., Halpern A.,
Kaminker J.S., Kennedy C., Mungall C.J., Sullivan B.A., Sutton G.G.,
Yasuhara J.C., Wakimoto B.T., Myers E.W., Celniker S.E., Rubin G.M.,
Karpen G.H.;
"Heterochromatic sequences in a Drosophila whole-genome shotgun
assembly.";
Genome Biol. 3:RESEARCH0085-RESEARCH0085(2002).
[6] {ECO:0000313|EMBL:AGB92627.1, ECO:0000313|Proteomes:UP000000803}
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=Berkeley {ECO:0000313|Proteomes:UP000000803};
PubMed=16110336; DOI=10.1371/journal.pcbi.0010022;
Quesneville H., Bergman C.M., Andrieu O., Autard D., Nouaud D.,
Ashburner M., Anxolabehere D.;
"Combined evidence annotation of transposable elements in genome
sequences.";
PLoS Comput. Biol. 1:166-175(2005).
[7] {ECO:0000313|EMBL:AGB92627.1, ECO:0000313|Proteomes:UP000000803}
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=Berkeley {ECO:0000313|Proteomes:UP000000803};
PubMed=17569856; DOI=10.1126/science.1139815;
Smith C.D., Shu S., Mungall C.J., Karpen G.H.;
"The Release 5.1 annotation of Drosophila melanogaster
heterochromatin.";
Science 316:1586-1591(2007).
[8] {ECO:0000313|EMBL:AGB92627.1, ECO:0000313|Proteomes:UP000000803}
NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
STRAIN=Berkeley {ECO:0000313|Proteomes:UP000000803};
PubMed=17569867; DOI=10.1126/science.1139816;
Hoskins R.A., Carlson J.W., Kennedy C., Acevedo D., Evans-Holm M.,
Frise E., Wan K.H., Park S., Mendez-Lago M., Rossi F., Villasante A.,
Dimitri P., Karpen G.H., Celniker S.E.;
"Sequence finishing and mapping of Drosophila melanogaster
heterochromatin.";
Science 316:1625-1628(2007).
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EMBL; AE014134; AGB92627.1; -; Genomic_DNA.
RefSeq; NP_001260091.1; NM_001273162.1.
UniGene; Dm.20325; -.
SMR; M9PEP8; -.
PRIDE; M9PEP8; -.
EnsemblMetazoa; FBtr0332406; FBpp0304679; FBgn0261836.
GeneID; 3771968; -.
CTD; 3771968; -.
FlyBase; FBgn0261836; Msp300.
eggNOG; KOG0516; Eukaryota.
eggNOG; ENOG410ZZU9; LUCA.
GeneTree; ENSGT00900000140842; -.
OrthoDB; EOG091G0007; -.
ChiTaRS; Msp300; fly.
GenomeRNAi; 3771968; -.
Proteomes; UP000000803; Chromosome 2L.
Bgee; FBgn0261836; Expressed in 35 organ(s), highest expression level in crop (Drosophila).
ExpressionAtlas; M9PEP8; baseline and differential.
GO; GO:0005737; C:cytoplasm; IDA:FlyBase.
GO; GO:0005829; C:cytosol; IEA:GOC.
GO; GO:0016021; C:integral component of membrane; IEA:UniProtKB-UniRule.
GO; GO:0034993; C:meiotic nuclear membrane microtubule tethering complex; IEA:InterPro.
GO; GO:0005635; C:nuclear envelope; IDA:FlyBase.
GO; GO:0005640; C:nuclear outer membrane; IDA:FlyBase.
GO; GO:0048471; C:perinuclear region of cytoplasm; IDA:FlyBase.
GO; GO:0030018; C:Z disc; IDA:FlyBase.
GO; GO:0003779; F:actin binding; IDA:FlyBase.
GO; GO:0051015; F:actin filament binding; IEA:InterPro.
GO; GO:0008092; F:cytoskeletal protein binding; ISS:FlyBase.
GO; GO:0019901; F:protein kinase binding; IPI:FlyBase.
GO; GO:0007015; P:actin filament organization; IMP:FlyBase.
GO; GO:0016477; P:cell migration; IMP:FlyBase.
GO; GO:0007303; P:cytoplasmic transport, nurse cell to oocyte; IMP:FlyBase.
GO; GO:0090286; P:cytoskeletal anchoring at nuclear membrane; IEA:InterPro.
GO; GO:0051643; P:endoplasmic reticulum localization; IMP:FlyBase.
GO; GO:0008335; P:female germline ring canal stabilization; IMP:FlyBase.
GO; GO:0060361; P:flight; IMP:FlyBase.
GO; GO:0007523; P:larval visceral muscle development; IMP:FlyBase.
GO; GO:0040011; P:locomotion; IMP:FlyBase.
GO; GO:0007498; P:mesoderm development; NAS:FlyBase.
GO; GO:0034453; P:microtubule anchoring; IGI:FlyBase.
GO; GO:0051646; P:mitochondrion localization; IMP:FlyBase.
GO; GO:0007097; P:nuclear migration; IMP:FlyBase.
GO; GO:0051647; P:nucleus localization; IGI:FlyBase.
GO; GO:0006997; P:nucleus organization; IGI:FlyBase.
GO; GO:0007519; P:skeletal muscle tissue development; IMP:FlyBase.
InterPro; IPR012315; KASH.
InterPro; IPR018159; Spectrin/alpha-actinin.
InterPro; IPR002017; Spectrin_repeat.
InterPro; IPR030265; SYNE1.
PANTHER; PTHR44867; PTHR44867; 4.
Pfam; PF10541; KASH; 1.
Pfam; PF00435; Spectrin; 2.
SMART; SM01249; KASH; 1.
SMART; SM00150; SPEC; 10.
PROSITE; PS51049; KASH; 1.
1: Evidence at protein level;
Coiled coil {ECO:0000256|SAM:Coils};
Complete proteome {ECO:0000313|Proteomes:UP000000803};
Membrane {ECO:0000256|PROSITE-ProRule:PRU00385};
Proteomics identification {ECO:0000213|PeptideAtlas:M9PEP8};
Reference proteome {ECO:0000313|Proteomes:UP000000803};
Repeat {ECO:0000256|SAAS:SAAS00834035};
Transmembrane {ECO:0000256|PROSITE-ProRule:PRU00385}.
TOPO_DOM 1 6635 Cytoplasmic. {ECO:0000256|PROSITE-
ProRule:PRU00385}.
TOPO_DOM 6657 6685 Perinuclear space. {ECO:0000256|PROSITE-
ProRule:PRU00385}.
DOMAIN 6627 6685 KASH. {ECO:0000259|PROSITE:PS51049}.
COILED 322 349 {ECO:0000256|SAM:Coils}.
COILED 2722 2742 {ECO:0000256|SAM:Coils}.
COILED 2825 2859 {ECO:0000256|SAM:Coils}.
COILED 3737 3757 {ECO:0000256|SAM:Coils}.
COILED 4412 4439 {ECO:0000256|SAM:Coils}.
COILED 4512 4546 {ECO:0000256|SAM:Coils}.
COILED 4570 4597 {ECO:0000256|SAM:Coils}.
COILED 4631 4658 {ECO:0000256|SAM:Coils}.
COILED 4792 4812 {ECO:0000256|SAM:Coils}.
COILED 5356 5386 {ECO:0000256|SAM:Coils}.
COILED 5560 5587 {ECO:0000256|SAM:Coils}.
COILED 5621 5648 {ECO:0000256|SAM:Coils}.
COILED 5995 6025 {ECO:0000256|SAM:Coils}.
COILED 6116 6146 {ECO:0000256|SAM:Coils}.
COILED 6231 6258 {ECO:0000256|SAM:Coils}.
COILED 6508 6528 {ECO:0000256|SAM:Coils}.
COILED 6533 6553 {ECO:0000256|SAM:Coils}.
SEQUENCE 6685 AA; 749096 MW; 3B79EED801A1224C CRC64;
METKEKDFKR AKTVRTEYVD GVDEVQRWLL QAEVQVQERS LTPTQMKELL QRINHEITAI
YERFTLVKTN GQLIIENCRN SEEKTLVQTT IDQLAASLAQ VRGWLDEKKQ AVGDSLDAWT
RFMNLYQIVM SWASEKRNFI DQTIELRTLP EARNKLNDYV TSVKSIKPIV KHLSEMDKEL
EHIGQVTTVG DLKDKLQEAE DAKISVEAVL LERNSLLQEA CEEWDQCERK IKDIRSWHEK
TKQGLDSSQQ QKKPLRDQLG FCEKTLADIN VQKTKLRLSI EKLEVHFRNG MGGDPRLSEN
VDDLVRVLDG LGELVKAKSQ SLEQTLAQID VYQQQMQSLR QRIIQEEQQL RLVMAPTYLP
HDRERALAEQ QAMRESIDGM QQVYDATARK SYALDPHSVV TTSSTVSLLM KPTAAVGLTY
AEVLSGQASP VSSGNESVTN SRPERDPSTT TTTTTTRQQQ SNDTQNTTTI TTIKTTTTTT
TTSRSTHGDD DQSQERQELN GGGSTTATAN YKRPQQVTPP SENTSNTVPN TATTTITNPN
IQFIESERRH QHHHAKTGKK LHAPRPERRG RSPRRRPPQQ QKPVESSQQP SIEIQLERQQ
PQEQEQLFLP ADDRTRSRSP MWVPGSTSYA EVLRGLELER IRAEQQAAQA VQGRSDLTIQ
DVVDASAEVA GSIYIPQPDP EPPIKETQQP QPPQLEQYIT ETSTLLDYST TQQQEQKPPI
NYEVPMTAEE IAATYLQPDP QLYQTMYENV ADSGQWGFVT GSTTDPQQQQ APQNYYEQIM
QMQQYPIQYQ QVAVPPAATT QYQLLAGYYQ PVAQTEAYST VYPAEPNQIY YAPQATEYSQ
EFSQQQEQQV EPMLEYQQEA VEQTYLLDPY RAESTLPSTT GNSVLDRVVT TLASIVQQSA
EPLTTSTQQI EPLATVVQSE PYYIEEHVQM LRPVEPQELE LDEPRPDITF GQFEVDAIET
IPLDEPQAPQ TEVETTESQV RTQQTITTTT YVTETSNVSE QTQPTVIMQQ TQEVIAIPDT
PEIPTEEPTN VVVHPKPQRR SNQQVRPQDI STGSTYAEVL FGLHHKEHPV FQPSSQQPTP
VRLTSSPPLQ RKTEQAGPIS NTAFTSKTTQ PGRQVEKSTT WEHKNDNVDS RNSRSKRVRH
EAQPEPLPIK QSTRKDGRTV RKPQSADTNG IASVETKVVV DTPAPSVVVE ETSKPEPKPR
KSKKSKKTTT DNVVESAVDI SVPSKKDTQS VLPSVGKKET VVEKSVIKKT VEPSVEPVEP
VPVPSKREKK HKPVKEKETP QSDEPVLEVS PVAPTRKEKK QVKTVVKNVE TTIRNEPLIE
KETSKPADVP KTQVKQTKSV VETVVEKKVL QPVVTEDAEL AKSVTPAAPS KKDKKKNKTV
VEPEVIKKPT EIVIEKEVVT PTVIETTDVS QVQEQPTSPT SSKKEKKQSK KIVETSVIVT
ENVEPAVQLE AAPPLPTKKD KKRSKKEPKE DIEISLPSEP LVSVQETVES VETLSETIPE
SKLEGEKVTI QYENVFSDSA PKTTNTVTED LASSIDVPPT NITETIIEGE PTVTTSTNTI
STESGTTTIT TRTITKHITK RIVKRIVDGK EEIVEEDVID DLPEENICVE QYNLPTIETT
TNDVPIDVTG FATTQDTIVQ QGSITKTVIT KTKRILKRIT EDGEEIVEEI FEDEPEVERD
VTLLPTTVVT SLDVIKDAAH NVVAEVIKQA EEITQPELQE LPAKVESPTE PEVISEVVVE
QEQNKPQKPS RKDKKKQKLL ENQPETVIET KVVEIVKPQQ EITEPQTEIT EPLNTTSAIT
TDNNQTVSSE QTTVSDDSGL IKTTVIRTTK IVKKISNNQQ ESQEMNSSTY SDAPSSLGSY
DLAEEAIEPA KIEKSESNSR EISDEGVVKT TKTTTTKTII SPKVEEVQEE PSLQVTSTVS
PPIDIESEEG GVIKTTIVRT TKIVKKISNE TENISETSSE PEVSLPIVET VIQDAPVVAE
SVTTESNSDG ITKTTTTRTT KVVAKTVTEN EQEILNLPDV PVEPENTTVL GVIETVELPE
VPEAPVGVED KLLVTATSTK LSKANQEKSK ILDFISAEQN ATDKYIAPGK TVPQIPVIEE
LENSYPIEES TAPEPESSGV GDVVKTTIVR TTKIVKKVTQ NTEQSVNVII DAPEPETEKT
EPEEPIEEAS GGVTKTTTVR TTKIVKKLNE DGETTTEETR TASDPVTVRE PSPAFSEVPS
DTSTTSSQID GAIIKTTTIR TMRITKRVSN DGRIHLTESE TPSDVIVTSS IEMPDQRPIS
PLISSRSTSP AVTPSSELKL DNLGANIQLG LKDSPTGVKV IGIETSTENL PKLSEQQLAT
SKTNGDINTT DSITTTTTTT RNTILTTTQR RSFETEDGTN VLFVGEGIDG AYPPGTVQKI
SLITHEEKLK TPIVKMHLDF PEVSLRVTET VTENVESLQR TAESNENSVI EVVELSKSEV
PEAIELKTAP VDDHVSKLDE LVKIPEATPT VLPESNPAEL SPEEQKLFED IQKKLSKKDK
KKRPAIPEEF IKQETVQVLL EESKGNDAPN VVPVVEELTD VAKPLDKQDP VAPSVNVEIV
SETTLVSNTD DGEVDTKLIP VPESEKLLNI FEDSSLISTS KLIEQSNSEI LYHESIVEVV
PVSTQEEVQV ENPCETQSSP APTNIANEIV PDKHSALIAE AFVANTDLIT QELDELLQSL
SSVEDGIANM NQSSLDGMLH GLKLIQSNLE VHERDAIELK NQAKKLPTDP ATERLLNDTV
DRIDLLLRRT QQGITMIANA MHGQKKRQQE IDEYQQHLLE LEQWIIEVSA ELASFEPTSD
SSTDEQVLKS QVERSQQLLR TLKDRQQSME DLVEQTRQLQ SHPDVSPLAD TLMEQLQSII
TILREQVTVA TKRIFTIEKR IVDLRKAKSE EAQRQRVLAD SLIKPPTEAP ASPEAHESIE
SNENTIDSSS MPEEEIKPTG VYVETQTSLS LQQPPVQVVT TTTVEAQTSF KEPAVETAEV
ALQTQKERSP TENIMVTQTV HHGQETIQID TTRNKDVPDE PEDVQIEARY HQRPKGDVDR
ATELILKNVP QAFETTFVEP DETTTEVIVG PDGTKHIVLK KVTRTRQQVV QQQQISSIET
ISDSDGNIEV HSTGQINLEN VHTTDTKADP EEGSVHTVIT QQTRGAVVDS TQPEGVILQE
FETEPTIETY EEVIAPGSQA QLIPMQPGDV QTQGTIRAVV QQVTRKVIRK TRKIIKRVVI
IDGKEHITEE VVEEPEEVEI TEEETAPHIN VNIVRTVDGK VVSEEEFQRM MQEPGVLIEE
VATDLQKPTA EPQQEVFDIE STQVTTTTRT TTATTQEQEQ PEQQTQPTTT ETTKEAPVEL
PAPQVDVEQP VVVATTSPVH VPTADVVEPK DSSPTSTTAA VVDVEAVVED INEIWPLEHH
LKPTNIDFSQ HVEELAAPAA VTAETEASMP VEEIWPTSPE TGNSLTLEQY EFEPQSPHEE
STKSDLVKPQ ETEPQVVAET KPEGITTGSI TITKTTTTIT SSTEVPEETL VQNVPADEQQ
PPANKIKTDI QSFLEAEQTL AAALKEQSST PTGASVAEDV QTQPEEIVLE ERTVEISTIK
TEENQQEPVI VEEVKSLPVE PEPVEPELEE VAIAIVEQTE EKPEEPVIEK QPASGPIDLR
AATQLFISGE AAASTAPQKT FQISAPSLED NGAGVLKVVL GKESTNEEDT AAPTTGKVSM
TIIETAAAPA ADAKRRRKKK KRRDTKHEEE LEQEQETEPE PVAAVKEPEV SSDVPVSPED
SPRDTVRHES IVEISPDSDL SSIEIDTKVK IVEDAVVSSP SESPRTPMVE LVIPTEVVEL
ALVEDEEQQT TPRIPSPTEK SEVEQDIKSV QTSPQHQPKL DETAVQTSLE VQPDNQENES
QTLIVEITET EAQTTPRSEE QSVAVEISTT EIQTDVSGQP AETVEISSQT TVTTTIEKEL
QTTPKDSPRA PEAGSSDVVE SLVQDLVKDM TTDLPVRTSE QSTVTETTTT TETHVQTTTP
EPREQTEVIK PETAHEETST VELVQFADGE MQTTPPGDQQ PASLDDSSLT ATSISVSEPY
ELEVKTTVAI PADSDTSVAE PTVYEYTQTM QLPKQEKKSK KDKKKKQKNV PEVEQQLPED
QQISVTVEIA PELLSESGIV VSTNQQIEDV PHVTPVVDTP IESEEVETPK AQRVQLQITK
TTVYDEYPDL PVHITEQNKV LIASQQSKRS GAGPTSSAVT IEEVGSPTEE LVVPITPGPD
NLSGEPHNIW FSATTSVDKT PIELSQALIM SESLQHYPGQ QKLTQEPILI STKEAIGDRI
KQLKQASPQQ ATPLSNVLHL ATLSEQIKEL PTEQRILEVN EGLKDLDVAI KNGDKTVIQT
TVITVIEKVS TWLETIEYRV YLIRQNSNEG PSEEKLDNYN QLNDELSTIK QNVVQLERQL
SKAEPEPQLL QCVDSLKEHV DAVEQVTQQN QVQDSNDLDK WHNFEVLLYN VSSVLADLQQ
SYDLLINQEY PLSAKLAQLD ELEQQHEAAQ QQLAHLCQNA RAFQRDFPGK KMPQDVHNAF
ETSKNIANNI QAERERVLQL QSLAEEYEQT LKEFTKITVL ADKLVESPIV SSSLEQLNNE
VQKQRKFFVN LSHCRAMLES LEENIDSETR EKHSELHKEL YNRATSLLDK ASERSSKLVQ
AASRWTVLEK GMRDELQWLQ VAQQRVPDLS AVTSADYDQY TTLYQSLSND ISHHYVKMTQ
LSGIANKLQL LVQAPNLVEE TNEALIVLLK LREEVALYLH RLLVFKEIWV QYEQQTDKLE
AFVREAEQEL RNIQIPSQPT HQPIEHMRQF WEIKARFELH NNVRTDTGLS FEKSLQVIPL
ADEMLQRQFH AQLEDRWQAV AQAIELIQHN IVECLSSEDV PADEKLKMVE RELQEIYLTM
TSMKGVIKNE EELCLYIERV QVLRTRVGFI GNELGRIGLQ EPAIEPEKVG ELFSLSHKIS
TQIAEELEGA SVLRDQLQAI QEGISNQRKH QAKISVILDE CEAAERQGAD VLEKAVADCQ
AAGEELVISW QEIMRIRQML HTLPMRLKMS VSPVKLERDI SQLQDDHAFL ESKCTNIMAI
LRSRLAVWLR YERQLELVHG SVQETDFMME LIRVHGQVDY ERLRKATERL EGLAGDLHNR
EQLIDELKGA AKPLIESCDV QIVEQIESAV QEAVVAWNDT SENLQQLRTR YQRAVELWDK
YRNASAAVKN SIDQQMDAVK SLEQPLDALQ HAKVCQDNLT TQNDRILELR DIVAKIAADV
GLDASALMQG ELDALGQRLA ECKDAITTLA NVAETQDKER KELDKEVTLA KAYFNNVQQD
ISREAPQNPK ESEEQLAALR AHLQTLARTE EQLRQLKERH QNSEVAPSVA SSDDDGILEV
LALWQKIFQD TFQEYHRLST RLARSQNSSE ALRLWRQYLQ HVQSFLSCAI PEDYSSLREQ
QQLCAIHQNL LISQQSVLSE TPLESELSEQ YKALTNLHNE TLSRIMQRNG ELERRVSGWN
AYRQQLAALL DWLRQREAER NALQLRYIHL KRVPHLKHRL DAMIQQLDQG EQQSKALQEQ
QQELARHCDD ALATAMRMEQ ASIGQRISNL RAALKTWQGF LQRVTQLSES YEQRVNQLQQ
EFGAAQKLLD ANSESLPTQP AAIEQLLGSL RAQRVQLGAQ VSALESLTVT QEELKECISP
HDMKTIRQRN WLLWQQHADL DYQLANLINS IEERLSLLSN YQIRYDRISQ WLQRLEQRVE
KDADVTAMTN PEQAAKQLEQ QVNSELQLRD KEREWLLSTS RELLTLYSEP EVRSQVQQQS
DSLIDRWQRL KYLAKQKATK IGELKMTLLR LEERIALIRA WLFEVESQLD KPLNFESYTP
NVIEAKLKEH EQIQRSIEHH SSNVGEVLNL VEMLLNDADS WRTQVNTSGL AASAQNLEQR
WKNVCSQSAE RKARILTIWN LLQQLIKLTA EHKNWLGKQE SQIAGFERDQ KSHSKHKLEE
RQMELRAKLE ELESQSVNLR QLEQIYAKLA MSAGVEPENI QKLTLPTKVM VSMWRQLTPR
CHALLDAIDK DAKLMREFNN AQLEATNSLN AIQKALEQLP SAENQQTSKA EPKAVLQRLE
SLEKKLQDAQ QHVQQADNLA QEAKTRTKQQ PQLKQLLELV SAYTTLWQTV QTRIVTLKTT
WLTRAAQAAA SLPVSEAANA AVQVNTLSQR KLRQAQQMQR ETSITAKDAY IMELQTAITE
CQNNLDELQR TVVDKTRKPG PQKIAKLLGN AQSSTELVKH LSHLLLTECK ADDQAAEVDT
VAELTLRFDT LQSQWKARQQ HDQNASEVGR LTCPLCTQRN WQQIDNDLWR LEQWLQFAES
TQKAQSAPPS NIELLEDVTQ DHREFLLDLE SHKSIISSLN VVGDHLATHT LDTEKARQLR
SRLEADNERW NNVCINATKW QGLLQTALMG NSEFHQTIGE LVEWLQRTEQ NIKASEPVDL
TEERSVLETK FKKFKDLRAE LERCEPRVVS LQDAADQLLR SVEGSEQQSQ HTYERTLSRL
TDLRLRLQSL RRLSGIYIVK LGAVLGYEGD NLGVPLHMLS SELLDNTTLS TSSMQAAAPN
TENANNTDGG DAVDGDVINT TVLARGARFL GRVARASLPI QALMLLLLGV ATLVPHGEDY
TCMFSNTFAR SLEPMLSYPH GPPPT


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