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CARATTERIZZAZIONEFUNZIONALEDITRASCRITTIATTRAVERSOLINDIVIDUAZIONEDIELEMENTIDICONTROLLOPOSTTRASCRIZIONALEGRAZIANOPESOLEUNIVERSITDIMILANO7MARZO2002GRAZIANOPESOLEUNIMIITMICROARRAYEXPERIMENTRESULTGENECHARACTERIZATIONPROBLEMGENECLASSIFICATIONPROBLEMGENECHARACTERIZATIONPROBLEMESTSMRNA533CDSKNOWNGENEGENEIDENTIFICATIONTHROUGHDATABASESEARCHINGEGBLASTXGENEIDENTIFICATIONBYAAPATTERNDISCOVERYEGPFAM,ETCGENEIDENTIFICATIONBYNTPATTERNDISCOVERYEGUTRSITEPATTERNSESTASSEMBLINGGENECHARACTERIZATIONPROBLEMMRNA53CDSCDSDNAPROTEINEVENTUALALTERNATIVELYSPLICEDMRNASGENECHARACTERIZATIONPROBLEM3EST53CDSMRNA3UTRPOSTTRANSCRIPTIONALREGULATIONOFGENEEXPRESSIONSTABILITYTRANSLATIONSUBCELLULARLOCALIZATIONCDS3UTR5UTRMRNABIOLOGICALROLEOFMRNAUTRSNUCLEAREXPORTPOLYADENYLATIONSTATUSMRNACELLULARLOCALIZATIONCONTROLOFMRNASTABILITYCONTROLOFMRNATRANSLATIONFUNCTIONMEDIATEDBYOLIGONUCLEOTIDEPATTERNSSTEMLOOPSTRUCTURESPATTERNSKNOWNTOPLAYSOMEREGULATORYACTIVITYEXPERIMENTALASSAY,PHYLOGENETICFOOTPRINTINGNOVELPATTERNSCANDIDATEOFFUNCTIONALACTIVITYSTATISTICALANALYSESCARRIEDOUTONNONREDUNDANTDATABASESUTRDBRELEASE140JANUARY2001FUNCTIONALELEMENTSANNOTATIONUTRSITEDATABASECONSENSUSOLIGONUCLEOTIDESCONSENSUSSECONDARYSTRUCTURESREGULAREXPRESSIONSTRINGSCONSENSUSMATRICESEGAAUAAAPOLYADENYLATIONSITECX2,4CX3LIVMFYWCX8HX3,5HC2H2ZINCFINGERDETERMINISTICDESCRIPTIONOFTHEPATTERNYES/NOPROBABILISTICDESCRIPTIONOFTHEPATTERNTHRESHOLDVALUEAURICHELEMENTSARESAURICHELEMENTSARESPRESENTINTHE3UNTRANSLATEDREGIONOFMATURELYMPHOKINEANDCYTOKINEMRNASREGULATEMRNASTABILITYANDTRANSLATIONALEFFICIENCYBASEDONTHEIRSEQUENCEFEATURESANDFUNCTIONALPROPERTIESARESCANBEDIVIDEDINTOTHREECLASSESCLASSIIARESDIRECTASYNCHRONOUSCYTOPLASMICDEADENYLATIONPROCESSIVEKINETICSGENERATINGPOLYAMRNASAMONGMRNASWITHCLASSIIAREINTHEIR3UTRAREGMCSF,IL2THEMINIMUMNUMBEROFAUUUATANDEMMOTIFSTOACTIVATEPROCESSIVEDEGRADATIONIS4OFWHICHATLEAST3INTANDEMFURTHERMORE,ANAURICHREGION2030NTLONGIMMEDIATELY5TOTHECLUSTEROFAUUUAMOTIFSCANGREATLYENHANCETHEDEGRADATIONACTIVITYCDSAURICHAN5UTR3UTRAREIIAUUUACYTOPLASMICPOLYADENYLYLATIONCYTOPLASMICPOLYADENYLATIONISANEVOLUTIONARILYCONSERVEDMECHANISMREGULATINGTRANSLATIONALACTIVATIONOFASETOFQUIESCENTMATERNALMESSENGERRNASMRNASDURINGEARLYDEVELOPMENTCYTOPLASMICPOLYAELONGATIONOCCURSINAWIDERANGEOFSPECIES,RANGINGFROMCLAMTOMOUSETHERELEVANCEOFTHISPROCESSDURINGLATEOOGENESISANDEARLYEMBRYOGENESISHASBEENSHOWNBYSTUDIESINTHEMOUSE,XENOPUS,ANDDROSOPHILAINMOUSEANDXENOPUS,THEONLYVERTEBRATESSOFAREXAMINED,THECRITICALREGULATORYSEQUENCES,REFERREDTOASCYTOPLASMICPOLYADENYLATIONELEMENTSCPES,AREAURICHANDLOCATEDINTHE3UNTRANSLATEDREGION3UTRNEARTHECANONICALNUCLEARPOLYADENYLATIONELEMENTAAUAAA,WHICHALSOISREQUIREDFORPROPERPOLYAADDITIONTHECPEHASTHEGENERALSTRUCTUREOFUUUUUUAUHOWEVER,THECPEISNOTIDENTICALINALLMRNASANDITSPOSITIONVARIESRELATIVETOAAUAAAGENERALLYWITHIN100NUCLEOTIDESTHEMINIMALCPECAPABLETOSTIMULATEELONGATIONOFAPOLYATAILAPPEARSTOBEUUUUAU,ANDRECENTEXPERIMENTSSHOWALSOTHEEXISTENCEOFSUBSTANTIALCONTEXTANDPOSITIONEFFECTSONCPEFUNCTIONCDSUUUUUUAUAAUAAAAN5UTR3UTRCPEMRNAPATTERNSUSUALLYLOCATEDIN5OR3UTRSTHATAREABLETOFOLDINTOSPECIFICSECONDARYSTRUCTURESABLETOBERECOGNIZEDBYSPECIFICRNABINDINGPROTEINSHISTONE3UTRMRNAELEMENTMETAZOANHISTONE3UTRMRNAS,LACKINGAPOLYATAIL,CONTAINAHIGHLYCONSERVEDSTEMLOOPSTRUCTUREWITHASIXBASESTEMANDAFOURBASELOOPTHISSTEMLOOPSTRUCTUREPLAYSADIFFERENTROLEINTHENUCLEUSANDINTHECYTOPLASMINTHENUCLEUS,ITISINVOLVEDINPREMRNAPROCESSINGANDNUCLEOCYTOPLASMICTRANSPORT,WHEREASINTHECYTOPLASMITENHANCESTRANSLATIONEFFICIENCYANDREGULATESHISTONEMRNASTABILITYTHETRANSACTINGFACTORWHICHINTERACTSWITHTHE3UTRHAIRPINSTRUCTUREOFHISTONEMRNASISA31KDASTEMLOOPBINDINGPROTEININMAMMALSSLBPPRESENTBOTHINNUCLEIANDPOLYRIBOSOMESINMAMMALSINADDITIONTOSLBPHISTONEMRNAPROCESSINGREQUIRESATLEASTONEADDITIONALFACTORTHEU7SNRNP,WHICHBINDSAPURINERICHELEMENT1020NTDOWNSTREAMOFTHESTEMLOOPSEQUENCEHISTONEDOWNSTREAMELEMENT,HDETHEHISTONE3UTRHAIRPINSTRUCTUREISPECULIARINTHATTHEBASESOFTHESTEMARECONSERVEDUNLIKEMOSTFUNCTIONALHAIRPINMOTIFSWHERECONSERVEDBASESAREFOUNDINSINGLESTRANDEDLOOPREGIONSONLYTHESEQUENCEOFTHESTEMANFLANKINGSEQUENCESARECRITICALFORBINDINGOFTHESLBPSELENOCYSTEINEINSERTIONSEQUENCESECISSPECIFICINCORPORATIONOFSELENOCYSTEINEINSELENOPROTEINSISDIRECTEDBYUGACODONSRESIDINGWITHINTHECODINGSEQUENCEOFTHECORRESPONDINGMRNASTRANSLATIONOFUGA,USUALLYATERMINATIONCODON,ASSELENOCYSTEINEREQUIRESACONSERVEDSTEMLOOPSTRUCTURECALLED“SELENOCYSTEINEINSERTIONSEQUENCE“SECISLYINGINTHE3UTRREGIONOFSELENOPROTEINMRNASTHECONSENSUSSTRUCTUREOFSECISELEMENTDETERMINEDBYCOMPARATIVEANALYSISOFSEVERALSELENOPROTEINMRNASASWELLASONBOTHRNASEANDCHEMICALPROBINGUGASECISNANOSTCETHE3UTROFDROSOPHILANANOSMRNACONTAINSTHEESSENTIALSIGNALSFORGENERATINGTHENANOSGRADIENTEMANATINGFROMTHEPOSTERIORPOLEOFDROSOPHILAEMBRYOSTHEPOLARIZEDDISTRIBUTIONOFNANOSISGENERATEDBYTHELOCALIZATIONDEPENDENTTRANSLATIONOFNANOSMRNAINTHEPOLEPLASMTHETRANSLATIONCONTROLELEMENTTCECONSISTSOFAA90NTREGIONLOCATEDINTHE3UTROFNANOSMRNAWHICHISABLETOFOLDINTOABIPARTITESECONDARYSTRUCTURETHATISRECOGNIZEDBYSMAUGREPRESSORANDATLEASTONEADDITIONALFACTORASTEMLOOPBEARINGTHECUGGCPENTAMERINTHELOOPISREQUIREDFORSMAUGT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8000/BIOWWW/WORDUPGCGHTMLVYEBISHTTP/WWWSCCJSTGOJP8080/SANKICHI/MOTIFEXTRACTION/VPRATTHTTP/WWWIIUIBNO/INGE/PRATTHTML/VVERBUMCULUSHTTP/WWWCSPURDUEEDU/HOMES/STELO/VERBUMCULUS/VRSATOOLSHTTP/COPANCIFNUNAMMX/JVANHELD/RSATOOLS/TESTDATASET20SEQUENCES100NTLONGWITHA8MERSHAREDBY75OFTHEMOCCURRENCESWORDSOBSERVEDEXPECTEDCHISQUAREGGATCA1505836151GATCAA1506332596ATCAAA1506531696AGGATC70577270TGGATC60486310TCAAAG70666058GTGGAT40452805GCAAGC50692700GTTTGG40492509CAAAGT40562122OCCURRENCESWORDSOBSERVEDEXPECTEDCHISQUAREAGGATC70577270GCAAGC50692700GTTTGG40492509TCAAAGT40
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