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Accession Number: | Q02455 |
Protein Name: | Protein MLP1 |
Length: | 1875 |
Molecular Weight: | 218456.00 |
Species: | Saccharomyces cerevisiae (Baker's yeast) [4932] |
Location1 / Topology2 / Orientation3: | Nucleus1 |
Substrate |
Cross database links:
DIP: | DIP-6675N DIP-6675N DIP-6675N DIP-6675N |
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RefSeq: | NP_013021.1 |
Entrez Gene ID: | 853970 |
Pfam: | PF07926 |
KEGG: | sce:YKR095W sce:YKR095W sce:YKR095W sce:YKR095W |
Gene Ontology
GO:0005643
C:nuclear pore
GO:0005654
C:nucleoplasm
GO:0005515
F:protein binding
GO:0043021
F:ribonucleoprotein binding
GO:0006281
P:DNA repair
GO:0051237
P:maintenance of RNA location
GO:0006406
P:mRNA export from nucleus
GO:0071048
P:nuclear retention of unspliced pre-mRNA at ...
GO:0006606
P:protein import into nucleus
GO:0090204
P:protein localization to nuclear pore
GO:0090203
P:transcriptional activation by promoter-term...
GO:0071048
P:nuclear retention of unspliced pre-mRNA at the site of transcription
GO:0016973
P:poly(A)+ mRNA export from nucleus
GO:0034398
P:telomere tethering at nuclear periphery
GO:0090203
P:transcriptional activation by promoter-terminator looping
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References (52)[1] “A new yeast gene with a myosin-like heptad repeat structure.” Koelling R.et.al. 8483450 [2] “The complete sequence of a 15,820 bp segment of Saccharomyces cerevisiae chromosome XI contains the UBI2 and MPL1 genes and three new open reading frames.” Bou G.et.al. 8154186 [3] “Complete DNA sequence of yeast chromosome XI.” Dujon B.et.al. 8196765 [4] “Proteins connecting the nuclear pore complex with the nuclear interior.” Strambio-de-Castillia C.et.al. 10085285 [5] “Nuclear pore complexes in the organization of silent telomeric chromatin.” Galy V.et.al. 10638763 [6] “Nuclear architecture and spatial positioning help establish transcriptional states of telomeres in yeast.” Feuerbach F.et.al. 11862215 [7] “Myosin-like proteins 1 and 2 are not required for silencing or telomere anchoring, but act in the Tel1 pathway of telomere length control.” Hediger F.et.al. 12490156 [8] “Global analysis of protein expression in yeast.” Ghaemmaghami S.et.al. 14562106 [9] “The C-terminal domain of myosin-like protein 1 (Mlp1p) is a docking site for heterogeneous nuclear ribonucleoproteins that are required for mRNA export.” Green D.M.et.al. 12531921 [10] “Nuclear retention of unspliced mRNAs in yeast is mediated by perinuclear Mlp1.” Galy V.et.al. 14718167 [11] “Targets of the cyclin-dependent kinase Cdk1.” Ubersax J.A.et.al. 14574415 [12] “Proteome-wide identification of in vivo targets of DNA damage checkpoint kinases.” Smolka M.B.et.al. 17563356 [13] “A multidimensional chromatography technology for in-depth phosphoproteome analysis.” Albuquerque C.P.et.al. 18407956 [14] “A new yeast gene with a myosin-like heptad repeat structure.” Koelling R.et.al. 8483450 [15] “The complete sequence of a 15,820 bp segment of Saccharomyces cerevisiae chromosome XI contains the UBI2 and MPL1 genes and three new open reading frames.” Bou G.et.al. 8154186 [16] “Complete DNA sequence of yeast chromosome XI.” Dujon B.et.al. 8196765 [17] “Proteins connecting the nuclear pore complex with the nuclear interior.” Strambio-de-Castillia C.et.al. 10085285 [18] “Nuclear pore complexes in the organization of silent telomeric chromatin.” Galy V.et.al. 10638763 [19] “Nuclear architecture and spatial positioning help establish transcriptional states of telomeres in yeast.” Feuerbach F.et.al. 11862215 [20] “Myosin-like proteins 1 and 2 are not required for silencing or telomere anchoring, but act in the Tel1 pathway of telomere length control.” Hediger F.et.al. 12490156 [21] “Global analysis of protein expression in yeast.” Ghaemmaghami S.et.al. 14562106 [22] “The C-terminal domain of myosin-like protein 1 (Mlp1p) is a docking site for heterogeneous nuclear ribonucleoproteins that are required for mRNA export.” Green D.M.et.al. 12531921 [23] “Nuclear retention of unspliced mRNAs in yeast is mediated by perinuclear Mlp1.” Galy V.et.al. 14718167 [24] “Targets of the cyclin-dependent kinase Cdk1.” Ubersax J.A.et.al. 14574415 [25] “Proteome-wide identification of in vivo targets of DNA damage checkpoint kinases.” Smolka M.B.et.al. 17563356 [26] “A multidimensional chromatography technology for in-depth phosphoproteome analysis.” Albuquerque C.P.et.al. 18407956 [27] “A new yeast gene with a myosin-like heptad repeat structure.” Koelling R.et.al. 8483450 [28] “The complete sequence of a 15,820 bp segment of Saccharomyces cerevisiae chromosome XI contains the UBI2 and MPL1 genes and three new open reading frames.” Bou G.et.al. 8154186 [29] “Complete DNA sequence of yeast chromosome XI.” Dujon B.et.al. 8196765 [30] “Proteins connecting the nuclear pore complex with the nuclear interior.” Strambio-de-Castillia C.et.al. 10085285 [31] “Nuclear pore complexes in the organization of silent telomeric chromatin.” Galy V.et.al. 10638763 [32] “Nuclear architecture and spatial positioning help establish transcriptional states of telomeres in yeast.” Feuerbach F.et.al. 11862215 [33] “Myosin-like proteins 1 and 2 are not required for silencing or telomere anchoring, but act in the Tel1 pathway of telomere length control.” Hediger F.et.al. 12490156 [34] “Global analysis of protein expression in yeast.” Ghaemmaghami S.et.al. 14562106 [35] “The C-terminal domain of myosin-like protein 1 (Mlp1p) is a docking site for heterogeneous nuclear ribonucleoproteins that are required for mRNA export.” Green D.M.et.al. 12531921 [36] “Nuclear retention of unspliced mRNAs in yeast is mediated by perinuclear Mlp1.” Galy V.et.al. 14718167 [37] “Targets of the cyclin-dependent kinase Cdk1.” Ubersax J.A.et.al. 14574415 [38] “Proteome-wide identification of in vivo targets of DNA damage checkpoint kinases.” Smolka M.B.et.al. 17563356 [39] “A multidimensional chromatography technology for in-depth phosphoproteome analysis.” Albuquerque C.P.et.al. 18407956 [40] “A new yeast gene with a myosin-like heptad repeat structure.” Koelling R.et.al. 8483450 [41] “The complete sequence of a 15,820 bp segment of Saccharomyces cerevisiae chromosome XI contains the UBI2 and MPL1 genes and three new open reading frames.” Bou G.et.al. 8154186 [42] “Complete DNA sequence of yeast chromosome XI.” Dujon B.et.al. 8196765 [43] “Proteins connecting the nuclear pore complex with the nuclear interior.” Strambio-de-Castillia C.et.al. 10085285 [44] “Nuclear pore complexes in the organization of silent telomeric chromatin.” Galy V.et.al. 10638763 [45] “Nuclear architecture and spatial positioning help establish transcriptional states of telomeres in yeast.” Feuerbach F.et.al. 11862215 [46] “Myosin-like proteins 1 and 2 are not required for silencing or telomere anchoring, but act in the Tel1 pathway of telomere length control.” Hediger F.et.al. 12490156 [47] “Global analysis of protein expression in yeast.” Ghaemmaghami S.et.al. 14562106 [48] “The C-terminal domain of myosin-like protein 1 (Mlp1p) is a docking site for heterogeneous nuclear ribonucleoproteins that are required for mRNA export.” Green D.M.et.al. 12531921 |
External Searches:
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Analyze:
Predict TMSs (Predict number of transmembrane segments) | ||||
FASTA formatted sequence |
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1: MSDHDTPMES IQNGENSDER LNAIASFFGC SLEQVKSFDG DVVKHLNDKL LQFNELKSEN 61: LKVTVSFDEL KASSLKKIDG LKTEMENVIR ENDKIRKERN DTFVKFESVE NEKMKLSSEL 121: EFVKRKLDDL TEEKKETQSN QQRTLKILDE RLKEIELVRV ENNRSNSECK KLRSTIMDLE 181: TKQQGYITND LNSRTELERK TQELTLLQSN NDWLEKELRS KNEQYLSYRQ KTDKVILDIR 241: NELNRLRNDF QMERTNNDVL KQKNNELSKS LQEKLLEIKG LSDSLNSEKQ EFSAEMSLKQ 301: RLVDLLESQL NAVKEELNSI RELNTAKVIA DDSKKQTPEN EDLLKELQLT KEKLAQCEKE 361: CLRLSSITDE ADEDNENLSA KSSSDFIFLK KQLIKERRTK EHLQNQIETF IVELEHKVPI 421: INSFKERTDM LENELNNAAL LLEHTSNEKN AKVKELNAKN QKLVECENDL QTLTKQRLDL 481: CRQIQYLLIT NSVSNDSKGP LRKEEIQFIQ NIMQEDDSTI TESDSQKVVT ERLVEFKNII 541: QLQEKNAELL KVVRNLADKL ESKEKKSKQS LQKIESETVN EAKEAIITLK SEKMDLESRI 601: EELQKELEEL KTSVPNEDAS YSNVTIKQLT ETKRDLESQV QDLQTRISQI TRESTENMSL 661: LNKEIQDLYD SKSDISIKLG KEKSSRILAE ERFKLLSNTL DLTKAENDQL RKRFDYLQNT 721: ILKQDSKTHE TLNEYVSCKS KLSIVETELL NLKEEQKLRV HLEKNLKQEL NKLSPEKDSL 781: RIMVTQLQTL QKEREDLLEE TRKSCQKKID ELEDALSELK KETSQKDHHI KQLEEDNNSN 841: IEWYQNKIEA LKKDYESVIT SVDSKQTDIE KLQYKVKSLE KEIEEDKIRL HTYNVMDETI 901: NDDSLRKELE KSKINLTDAY SQIKEYKDLY ETTSQSLQQT NSKLDESFKD FTNQIKNLTD 961: EKTSLEDKIS LLKEQMFNLN NELDLQKKGM EKEKADFKKR ISILQNNNKE VEAVKSEYES 1021: KLSKIQNDLD QQTIYANTAQ NNYEQELQKH ADVSKTISEL REQLHTYKGQ VKTLNLSRDQ 1081: LENALKENEK SWSSQKESLL EQLDLSNSRI EDLSSQNKLL YDQIQIYTAA DKEVNNSTNG 1141: PGLNNILITL RRERDILDTK VTVAERDAKM LRQKISLMDV ELQDARTKLD NSRVEKENHS 1201: SIIQQHDDIM EKLNQLNLLR ESNITLRNEL ENNNNKKKEL QSELDKLKQN VAPIESELTA 1261: LKYSMQEKEQ ELKLAKEEVH RWKKRSQDIL EKHEQLSSSD YEKLESEIEN LKEELENKER 1321: QGAEAEEKFN RLRRQAQERL KTSKLSQDSL TEQVNSLRDA KNVLENSLSE ANARIEELQN 1381: AKVAQGNNQL EAIRKLQEDA EKASRELQAK LEESTTSYES TINGLNEEIT TLKEEIEKQR 1441: QIQQQLQATS ANEQNDLSNI VESMKKSFEE DKIKFIKEKT QEVNEKILEA QERLNQPSNI 1501: NMEEIKKKWE SEHEQEVSQK IREAEEALKK RIRLPTEEKI NKIIERKKEE LEKEFEEKVE 1561: ERIKSMEQSG EIDVVLRKQL EAKVQEKQKE LENEYNKKLQ EELKDVPHSS HISDDERDKL 1621: RAEIESRLRE EFNNELQAIK KKSFDEGKQQ AMMKTTLLER KLAKMESQLS ETKQSAESPP 1681: KSVNNVQNPL LGLPRKIEEN SNSPFNPLLS GEKLLKLNSK SSSGGFNPFT SPSPNKHLQN 1741: DNDKRESLAN KTDPPTHLEP SFNIPASRGL ISSSSTLSTD TNDEELTSNN PAQKDSSNRN 1801: VQSEEDTEKK KEGEPVKRGE AIEEQTKSNK RPIDEVGELK NDEDDTTENI NESKKIKTED 1861: EEEKETDKVN DENSI