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Open data
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Basic information
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Title | TRRAP and EP400 in the human Tip60 complex - composite map | |||||||||
![]() | TRRAP and EP400 in the human Tip60 complex - composite map | |||||||||
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![]() | Eukaryotic transcription / Histone acetyltransferase / chromatin remodeling / Complex / TRANSCRIPTION | |||||||||
Function / homology | ![]() transcription factor TFTC complex / Swr1 complex / protein antigen binding / regulation of double-strand break repair / SAGA complex / Formation of Senescence-Associated Heterochromatin Foci (SAHF) / DNA repair-dependent chromatin remodeling / NuA4 histone acetyltransferase complex / regulation of RNA splicing / positive regulation of double-strand break repair via homologous recombination ...transcription factor TFTC complex / Swr1 complex / protein antigen binding / regulation of double-strand break repair / SAGA complex / Formation of Senescence-Associated Heterochromatin Foci (SAHF) / DNA repair-dependent chromatin remodeling / NuA4 histone acetyltransferase complex / regulation of RNA splicing / positive regulation of double-strand break repair via homologous recombination / regulation of DNA repair / helicase activity / transcription coregulator activity / Formation of the beta-catenin:TCF transactivating complex / DNA Damage/Telomere Stress Induced Senescence / Hydrolases; Acting on acid anhydrides; Acting on acid anhydrides to facilitate cellular and subcellular movement / nucleosome / chromatin organization / HATs acetylate histones / regulation of apoptotic process / hydrolase activity / regulation of cell cycle / Ub-specific processing proteases / nuclear speck / DNA repair / chromatin binding / regulation of DNA-templated transcription / regulation of transcription by RNA polymerase II / positive regulation of DNA-templated transcription / Golgi apparatus / DNA binding / nucleoplasm / ATP binding / nucleus Similarity search - Function | |||||||||
Biological species | ![]() | |||||||||
Method | single particle reconstruction / cryo EM / Resolution: 3.5 Å | |||||||||
![]() | Li C / Smirnova E / Schnitzler C / Crucifix C / Concordet JP / Brion A / Poterszman A / SChultz P / Papai G / Ben-Shem A | |||||||||
Funding support | ![]()
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![]() | ![]() Title: Structure of the human TIP60-C histone exchange and acetyltransferase complex. Authors: Changqing Li / Ekaterina Smirnova / Charlotte Schnitzler / Corinne Crucifix / Jean Paul Concordet / Alice Brion / Arnaud Poterszman / Patrick Schultz / Gabor Papai / Adam Ben-Shem / ![]() Abstract: Chromatin structure is a key regulator of DNA transcription, replication and repair. In humans, the TIP60-EP400 complex (TIP60-C) is a 20-subunit assembly that affects chromatin structure through two ...Chromatin structure is a key regulator of DNA transcription, replication and repair. In humans, the TIP60-EP400 complex (TIP60-C) is a 20-subunit assembly that affects chromatin structure through two enzymatic activities: ATP-dependent exchange of histone H2A-H2B for H2A.Z-H2B, and histone acetylation. In yeast, however, these activities are performed by two independent complexes-SWR1 and NuA4, respectively. How the activities of the two complexes are merged into one supercomplex in humans, and what this association entails for the structure and mechanism of the proteins and their recruitment to chromatin, are unknown. Here we describe the structure of the endogenous human TIP60-C. We find a three-lobed architecture composed of SWR1-like (SWR1L) and NuA4-like (NuA4L) parts, which associate with a TRRAP activator-binding module. The huge EP400 subunit contains the ATPase motor, traverses the junction between SWR1L and NuA4L twice and constitutes the scaffold of the three-lobed architecture. NuA4L is completely rearranged compared with its yeast counterpart. TRRAP is flexibly tethered to NuA4L-in stark contrast to its robust connection to the completely opposite side of NuA4 in yeast. A modelled nucleosome bound to SWR1L, supported by tests of TIP60-C activity, suggests that some aspects of the histone exchange mechanism diverge from what is seen in yeast. Furthermore, a fixed actin module (as opposed to the mobile actin subcomplex in SWR1; ref. ), the flexibility of TRRAP and the weak effect of extranucleosomal DNA on exchange activity lead to a different, activator-based mode of enlisting TIP60-C to chromatin. | |||||||||
History |
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Structure visualization
Supplemental images |
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Downloads & links
-EMDB archive
Map data | ![]() | 315 MB | ![]() | |
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Header (meta data) | ![]() ![]() | 20.6 KB 20.6 KB | Display Display | ![]() |
Images | ![]() | 82.5 KB | ||
Filedesc metadata | ![]() | 9.8 KB | ||
Archive directory | ![]() ![]() | HTTPS FTP |
-Related structure data
Related structure data | ![]() 8qriMC ![]() 8qr1C C: citing same article ( M: atomic model generated by this map |
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Similar structure data | Similarity search - Function & homology ![]() |
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Links
EMDB pages | ![]() ![]() |
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Related items in Molecule of the Month |
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Map
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Annotation | TRRAP and EP400 in the human Tip60 complex - composite map | ||||||||||||||||||||||||||||||||||||
Projections & slices | Image control
Images are generated by Spider. | ||||||||||||||||||||||||||||||||||||
Voxel size | X=Y=Z: 0.862 Å | ||||||||||||||||||||||||||||||||||||
Density |
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Symmetry | Space group: 1 | ||||||||||||||||||||||||||||||||||||
Details | EMDB XML:
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-Supplemental data
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Sample components
-Entire : Human Tip60 complex
Entire | Name: Human Tip60 complex |
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Components |
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-Supramolecule #1: Human Tip60 complex
Supramolecule | Name: Human Tip60 complex / type: complex / ID: 1 / Parent: 0 / Macromolecule list: all |
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Source (natural) | Organism: ![]() |
-Macromolecule #1: Transformation/transcription domain-associated protein
Macromolecule | Name: Transformation/transcription domain-associated protein type: protein_or_peptide / ID: 1 / Number of copies: 1 / Enantiomer: LEVO |
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Source (natural) | Organism: ![]() |
Molecular weight | Theoretical: 438.139531 KDa |
Sequence | String: MAFVATQGAT VVDQTTLMKK YLQFVAALTD VNTPDETKLK MMQEVSENFE NVTSSPQYST FLEHIIPRFL TFLQDGEVQF LQEKPAQQL RKLVLEIIHR IPTNEHLRPH TKNVLSVMFR FLETENEENV LICLRIIIEL HKQFRPPITQ EIHHFLDFVK Q IYKELPKV ...String: MAFVATQGAT VVDQTTLMKK YLQFVAALTD VNTPDETKLK MMQEVSENFE NVTSSPQYST FLEHIIPRFL TFLQDGEVQF LQEKPAQQL RKLVLEIIHR IPTNEHLRPH TKNVLSVMFR FLETENEENV LICLRIIIEL HKQFRPPITQ EIHHFLDFVK Q IYKELPKV VNRYFENPQV IPENTVPPPE MVGMITTIAV KVNPEREDSE TRTHSIIPRG SLSLKVLAEL PIIVVLMYQL YK LNIHNVV AEFVPLIMNT IAIQVSAQAR QHKLYNKELY ADFIAAQIKT LSFLAYIIRI YQELVTKYSQ QMVKGMLQLL SNC PAETAH LRKELLIAAK HILTTELRNQ FIPCMDKLFD ESILIGSGYT ARETLRPLAY STLADLVHHV RQHLPLSDLS LAVQ LFAKN IDDESLPSSI QTMSCKLLLN LVDCIRSKSE QESGNGRDVL MRMLEVFVLK FHTIARYQLS AIFKKCKPQS ELGAV EAAL PGVPTAPAAP GPAPSPAPVP APPPPPPPPP PATPVTPAPV PPFEKQGEKD KEDKQTFQVT DCRSLVKTLV CGVKTI TWG ITSCKAPGEA QFIPNKQLQP KETQIYIKLV KYAMQALDIY QVQIAGNGQT YIRVANCQTV RMKEEKEVLE HFAGVFT MM NPLTFKEIFQ TTVPYMVERI SKNYALQIVA NSFLANPTTS ALFATILVEY LLDRLPEMGS NVELSNLYLK LFKLVFGS V SLFAAENEQM LKPHLHKIVN SSMELAQTAK EPYNYFLLLR ALFRSIGGGS HDLLYQEFLP LLPNLLQGLN MLQSGLHKQ HMKDLFVELC LTVPVRLSSL LPYLPMLMDP LVSALNGSQT LVSQGLRTLE LCVDNLQPDF LYDHIQPVRA ELMQALWRTL RNPADSISH VAYRVLGKFG GSNRKMLKES QKLHYVVTEV QGPSITVEFS DCKASLQLPM EKAIETALDC LKSANTEPYY R RQAWEVIK CFLVAMMSLE DNKHALYQLL AHPNFTEKTI PNVIISHRYK AQDTPARKTF EQALTGAFMS AVIKDLRPSA LP FVASLIR HYTMVAVAQQ CGPFLLPCYQ VGSQPSTAMF HSEENGSKGM DPLVLIDAIA ICMAYEEKEL CKIGEVALAV IFD VASIIL GSKERACQLP LFSYIVERLC ACCYEQAWYA KLGGVVSIKF LMERLPLTWV LQNQQTFLKA LLFVMMDLTG EVSN GAVAM AKTTLEQLLM RCATPLKDEE RAEEIVAAQE KSFHHVTHDL VREVTSPNST VRKQAMHSLQ VLAQVTGKSV TVIME PHKE VLQDMVPPKK HLLRHQPANA QIGLMEGNTF CTTLQPRLFT MDLNVVEHKV FYTELLNLCE AEDSALTKLP CYKSLP SLV PLRIAALNAL AACNYLPQSR EKIIAALFKA LNSTNSELQE AGEACMRKFL EGATIEVDQI HTHMRPLLMM LGDYRSL TL NVVNRLTSVT RLFPNSFNDK FCDQMMQHLR KWMEVVVITH KGGQRSDGNE SISECGRCPL SPFCQFEEMK ICSAIINL F HLIPAAPQTL VKPLLEVVMK TERAMLIEAG SPFREPLIKF LTRHPSQTVE LFMMEATLND PQWSRMFMSF LKHKDARPL RDVLAANPNR FITLLLPGGA QTAVRPGSPS TSTMRLDLQF QAIKIISIIV KNDDSWLASQ HSLVSQLRRV WVSENFQERH RKENMAATN WKEPKLLAYC LLNYCKRNYG DIELLFQLLR AFTGRFLCNM TFLKEYMEEE IPKNYSIAQK RALFFRFVDF N DPNFGDEL KAKVLQHILN PAFLYSFEKG EGEQLLGPPN PEGDNPESIT SVFITKVLDP EKQADMLDSL RIYLLQYATL LV EHAPHHI HDNNKNRNSK LRRLMTFAWP CLLSKACVDP ACKYSGHLLL AHIIAKFAIH KKIVLQVFHS LLKAHAMEAR AIV RQAMAI LTPAVPARME DGHQMLTHWT RKIIVEEGHT VPQLVHILHL IVQHFKVYYP VRHHLVQHMV SAMQRLGFTP SVTI EQRRL AVDLSEVVIK WELQRIKDQQ PDSDMDPNSS GEGVNSVSSS IKRGLSVDSA QEVKRFRTAT GAISAVFGRS QSLPG ADSL LAKPIDKQHT DTVVNFLIRV ACQVNDNTNT AGSPGEVLSR RCVNLLKTAL RPDMWPKSEL KLQWFDKLLM TVEQPN QVN YGNICTGLEV LSFLLTVLQS PAILSSFKPL QRGIAACMTC GNTKVLRAVH SLLSRLMSIF PTEPSTSSVA SKYEELE CL YAAVGKVIYE GLTNYEKATN ANPSQLFGTL MILKSACSNN PSYIDRLISV FMRSLQKMVR EHLNPQAASG STEATSGT S ELVMLSLELV KTRLAVMSME MRKNFIQAIL TSLIEKSPDA KILRAVVKIV EEWVKNNSPM AANQTPTLRE KSILLVKMM TYIEKRFPED LELNAQFLDL VNYVYRDETL SGSELTAKLE PAFLSGLRCA QPLIRAKFFE VFDNSMKRRV YERLLYVTCS QNWEAMGNH FWIKQCIELL LAVCEKSTPI GTSCQGAMLP SITNVINLAD SHDRAAFAMV THVKQEPRER ENSESKEEDV E IDIELAPG DQTSTPKTKE LSEKDIGNQL HMLTNRHDKF LDTLREVKTG ALLSAFVQLC HISTTLAEKT WVQLFPRLWK IL SDRQQHA LAGEISPFLC SGSHQVQRDC QPSALNCFVE AMSQCVPPIP IRPCVLKYLG KTHNLWFRST LMLEHQAFEK GLS LQIKPK QTTEFYEQES ITPPQQEILD SLAELYSLLQ EEDMWAGLWQ KRCKYSETAT AIAYEQHGFF EQAQESYEKA MDKA KKEHE RSNASPAIFP EYQLWEDHWI RCSKELNQWE ALTEYGQSKG HINPYLVLEC AWRVSNWTAM KEALVQVEVS CPKEM AWKV NMYRGYLAIC HPEEQQLSFI ERLVEMASSL AIREWRRLPH VVSHVHTPLL QAAQQIIELQ EAAQINAGLQ PTNLGR NNS LHDMKTVVKT WRNRLPIVSD DLSHWSSIFM WRQHHYQGKP TWSGMHSSSI VTAYENSSQH DPSSNNAMLG VHASASA II QYGKIARKQG LVNVALDILS RIHTIPTVPI VDCFQKIRQQ VKCYLQLAGV MGKNECMQGL EVIESTNLKY FTKEMTAE F YALKGMFLAQ INKSEEANKA FSAAVQMHDV LVKAWAMWGD YLENIFVKER QLHLGVSAIT CYLHACRHQN ESKSRKYLA KVLWLLSFDD DKNTLADAVD KYCIGVPPIQ WLAWIPQLLT CLVGSEGKLL LNLISQVGRV YPQAVYFPIR TLYLTLKIEQ RERYKSDPG PIRATAPMWR CSRIMHMQRE LHPTLLSSLE GIVDQMVWFR ENWHEEVLRQ LQQGLAKCYS VAFEKSGAVS D AKITPHTL NFVKKLVSTF GVGLENVSNV STMFSSAASE SLARRAQATA QDPVFQKLKG QFTTDFDFSV PGSMKLHNLI SK LKKWIKI LEAKTKQLPK FFLIEEKCRF LSNFSAQTAE VEIPGEFLMP KPTHYYIKIA RFMPRVEIVQ KHNTAARRLY IRG HNGKIY PYLVMNDACL TESRREERVL QLLRLLNPCL EKRKETTKRH LFFTVPRVVA VSPQMRLVED NPSSLSLVEI YKQR CAKKG IEHDNPISRY YDRLATVQAR GTQASHQVLR DILKEVQSNM VPRSMLKEWA LHTFPNATDY WTFRKMFTIQ LALIG FAEF VLHLNRLNPE MLQIAQDTGK LNVAYFRFDI NDATGDLDAN RPVPFRLTPN ISEFLTTIGV SGPLTASMIA VARCFA QPN FKVDGILKTV LRDEIIAWHK KTQEDTSSPL SAAGQPENMD SQQLVSLVQK AVTAIMTRLH NLAQFEGGES KVNTLVA AA NSLDNLCRMD PAWHPWL UniProtKB: Transformation/transcription domain-associated protein |
-Macromolecule #2: E1A-binding protein p400
Macromolecule | Name: E1A-binding protein p400 / type: protein_or_peptide / ID: 2 / Number of copies: 1 / Enantiomer: LEVO EC number: Hydrolases; Acting on acid anhydrides; Acting on acid anhydrides to facilitate cellular and subcellular movement |
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Source (natural) | Organism: ![]() |
Molecular weight | Theoretical: 343.867312 KDa |
Sequence | String: MHHGTGPQNV QHQLQRSRAC PGSEGEEQPA HPNPPPSPAA PFAPSASPSA PQSPSYQIQQ LMNRSPATGQ NVNITLQSVG PVVGGNQQI TLAPLPLPSP TSPGFQFSAQ PRRFEHGSPS YIQVTSPLSQ QVQTQSPTQP SPGPGQALQN VRAGAPGPGL G LCSSSPTG ...String: MHHGTGPQNV QHQLQRSRAC PGSEGEEQPA HPNPPPSPAA PFAPSASPSA PQSPSYQIQQ LMNRSPATGQ NVNITLQSVG PVVGGNQQI TLAPLPLPSP TSPGFQFSAQ PRRFEHGSPS YIQVTSPLSQ QVQTQSPTQP SPGPGQALQN VRAGAPGPGL G LCSSSPTG GFVDASVLVR QISLSPSSGG HFVFQDGSGL TQIAQGAQVQ LQHPGTPITV RERRPSQPHT QSGGTIHHLG PQ SPAAAGG AGLQPLASPS HITTANLPPQ ISSIIQGQLV QQQQVLQGPP LPRPLGFERT PGVLLPGAGG AAGFGMTSPP PPT SPSRTA VPPGLSSLPL TSVGNTGMKK VPKKLEEIPP ASPEMAQMRK QCLDYHYQEM QALKEVFKEY LIELFFLQHF QGNM MDFLA FKKKHYAPLQ AYLRQNDLDI EEEEEEEEEE EEKSEVINDE VKVVTGKDGQ TGTPVAIATQ LPPKVSAAFS SQQQP FQQA LAGSLVAGAG STVETDLFKR QQAMPSTGMA EQSKRPRLEV GHQGVVFQHP GADAGVPLQQ LMPTAQGGMP PTPQAA QLA GQRQSQQQYD PSTGPPVQNA ASLHTPLPQL PGRLPPAGVP TAALSSALQF AQQPQVVEAQ TQLQIPVKTQ QPNVPIP AP PSSQLPIPPS QPAQLALHVP TPGKVQVQAS QLSSLPQMVA STRLPVDPAP PCPRPLPTSS TSSLAPVSGS GPGPSPAR S SPVNRPSSAT NKALSPVTSR TPGVVASAPT KPQSPAQNAT SSQDSSQDTL TEQITLENQV HQRIAELRKA GLWSQRRLP KLQEAPRPKS HWDYLLEEMQ WMATDFAQER RWKVAAAKKL VRTVVRHHEE KQLREERGKK EEQSRLRRIA ASTAREIECF WSNIEQVVE IKLRVELEEK RKKALNLQKV SRRGKELRPK GFDALQESSL DSGMSGRKRK ASISLTDDEV DDEEETIEEE E ANEGVVDH QTELSNLAKE AELPLLDLMK LYEGAFLPSS QWPRPKPDGE DTSGEEDADD CPGDRESRKD LVLIDSLFIM DQ FKAAERM NIGKPNAKDI ADVTAVAEAI LPKGSARVTT SVKFNAPSLL YGALRDYQKI GLDWLAKLYR KNLNGILADE AGL GKTVQI IAFFAHLACN EGNWGPHLVV VRSCNILKWE LELKRWCPGL KILSYIGSHR ELKAKRQEWA EPNSFHVCIT SYTQ FFRGL TAFTRVRWKC LVIDEMQRVK GMTERHWEAV FTLQSQQRLL LIDSPLHNTF LELWTMVHFL VPGISRPYLS SPLRA PSEE SQDYYHKVVI RLHRVTQPFI LRRTKRDVEK QLTKKYEHVL KCRLSNRQKA LYEDVILQPG TQEALKSGHF VNVLSI LVR LQRICNHPGL VEPRHPGSSY VAGPLEYPSA SLILKALERD FWKEADLSMF DLIGLENKIT RHEAELLSKK KIPRKLM EE ISTSAAPAAR PAAAKLKASR LFQPVQYGQK PEGRTVAFPS THPPRTAAPT TASAAPQGPL RGRPPIATFS ANPEAKAA A APFQTSQASA SAPRHQPASA SSTAASPAHP AKLRAQTTAQ ASTPGQPPPQ PQAPSHAAGQ SALPQRLVLP SQAQARLPS GEVVKIAQLA SITGPQSRVA QPETPVTLQF QGSKFTLSHS QLRQLTAGQP LQLQGSVLQI VSAPGQPYLR APGPVVMQTV SQAGAVHGA LGSKPPAGGP SPAPLTPQVG VPGRVAVNAL AVGEPGTASK PASPIGGPTQ EEKTRLLKER LDQIYLVNER R CSQAPVYG RDLLRICALP SHGRVQWRGS LDGRRGKEAG PAHSYTSSSE SPSELMLTLC RCGESLQDVI DRVAFVIPPV VA APPSLRV PRPPPLYSHR MRILRQGLRE HAAPYFQQLR QTTAPRLLQF PELRLVQFDS GKLEALAILL QKLKSEGRRV LIL SQMILM LDILEMFLNF HYLTYVRIDE NASSEQRQEL MRSFNRDRRI FCAILSTHSR TTGINLVEAD TVVFYDNDLN PVMD AKAQE WCDRIGRCKD IHIYRLVSGN SIEEKLLKNG TKDLIREVAA QGNDYSMAFL TQRTIQELFE VYSPMDDAGF PVKAE EFVV LSQEPSVTET IAPKIARPFI EALKSIEYLE EDAQKSAQEG VLGPHTDALS SDSENMPCDE EPSQLEELAD FMEQLT PIE KYALNYLELF HTSIEQEKER NSEDAVMTAV RAWEFWNLKT LQEREARLRL EQEEAELLTY TREDAYSMEY VYEDVDG QT EVMPLWTPPT PPQDDSDIYL DSVMCLMYEA TPIPEAKLPP VYVRKERKRH KTDPSAAGRK KKQRHGEAVV PPRSLFDR A TPGLLKIRRE GKEQKKNILL KQQVPFAKPL PTFAKPTAEP GQDNPEWLIS EDWALLQAVK QLLELPLNLT IVSPAHTPN WDLVSDVVNS CSRIYRSSKQ CRNRYENVII PREEGKSKNN RPLRTSQIYA QDENATHTQL YTSHFDLMKM TAGKRSPPIK PLLGMNPFQ KNPKHASVLA ESGINYDKPL PPIQVASLRA ERIAKEKKAL ADQQKAQQPA VAQPPPPQPQ PPPPPQQPPP P LPQPQAAG SQPPAGPPAV QPQPQPQPQT QPQPVQAPAK AQPAITTGGS AAVLAGTIKT SVTGTSMPTG AVSGNVIVNT IA GVPAATF QSINKRLASP VAPGALTTPG GSAPAQVVHT QPPPRAVGSP ATATPDLVSM ATTQGVRAVT SVTASAVVTT NLT PVQTPA RSLVPQVSQA TGVQLPGKTI TPAHFQLLRQ QQQQQQQQQQ QQQQQQQQQQ QQQQQQQQTT TTSQVQVPQI QGQA QSPAQ IKAVGKLTPE HLIKMQKQKL QMPPQPPPPQ AQSAPPQPTA QVQVQTSQPP QQQSPQLTTV TAPRPGALLT GTTVA NLQV ARLTRVPTSQ LQAQGQMQTQ APQPAQVALA KPPVVSVPAA VVSSPGVTTL PMNVAGISVA IGQPQKAAGQ TVVAQP VHM QQLLKLKQQA VQQQKAIQPQ AAQGPAAVQQ KITAQQITTP GAQQKVAYAA QPALKTQFLT TPISQAQKLA GAQQVQT QI QVAKLPQVVQ QQTPVASIQQ VASASQQASP QTVALTQATA AGQQVQMIPA VTATAQVVQQ KLIQQQVVTT ASAPLQTP G APNPAQVPAS SDSPSQQPKL QMRVPAVRLK TPTKPPCQ UniProtKB: E1A-binding protein p400 |
-Experimental details
-Structure determination
Method | cryo EM |
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![]() | single particle reconstruction |
Aggregation state | particle |
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Sample preparation
Concentration | 0.2 mg/mL | ||||||||||||||||
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Buffer | pH: 8 Component:
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Vitrification | Cryogen name: ETHANE / Chamber humidity: 95 % / Chamber temperature: 279 K / Instrument: FEI VITROBOT MARK IV |
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Electron microscopy
Microscope | FEI TITAN KRIOS |
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Image recording | Film or detector model: GATAN K3 BIOQUANTUM (6k x 4k) / Average electron dose: 52.0 e/Å2 |
Electron beam | Acceleration voltage: 300 kV / Electron source: ![]() |
Electron optics | Illumination mode: FLOOD BEAM / Imaging mode: BRIGHT FIELD / Cs: 0.01 mm / Nominal defocus max: 3.2 µm / Nominal defocus min: 1.5 µm |
Sample stage | Specimen holder model: FEI TITAN KRIOS AUTOGRID HOLDER / Cooling holder cryogen: NITROGEN |
Experimental equipment | ![]() Model: Titan Krios / Image courtesy: FEI Company |
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Image processing
Startup model | Type of model: OTHER / Details: Ab-initio |
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Final reconstruction | Resolution.type: BY AUTHOR / Resolution: 3.5 Å / Resolution method: FSC 0.143 CUT-OFF / Software - Name: cryoSPARC / Number images used: 181210 |
Initial angle assignment | Type: MAXIMUM LIKELIHOOD / Software - Name: cryoSPARC |
Final angle assignment | Type: MAXIMUM LIKELIHOOD / Software - Name: cryoSPARC |
-Atomic model buiding 1
Refinement | Space: REAL / Protocol: RIGID BODY FIT |
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Output model | ![]() PDB-8qri: |