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. 2004 Apr 1;428(6982):529-35.
doi: 10.1038/nature02399.

The DNA sequence and biology of human chromosome 19

Jane Grimwood  1 Laurie A GordonAnne OlsenAstrid TerryJeremy SchmutzJane LamerdinUffe HellstenDavid GoodsteinOlivier CouronneMary Tran-GyamfiAndrea AertsMichael AltherrLinda AshworthEva BajorekStacey BlackElbert BranscombSean CaenepeelAnthony CarranoChenier CaoileYee Man ChanMari ChristensenCatherine A ClelandAlex CopelandEileen DalinParamvir DehalMirian DenysJohn C DetterJulio EscobarDave FlowersDea FotopulosCarmen GarciaAnca M GeorgescuTijana GlavinaMaria GomezEidelyn GonzalesMatthew GrozaNancy HammonTrevor HawkinsLauren HayduIsaac HoWayne HuangSanjay IsraniJamie JettKristen KadnerHeather KimballArthur KobayashiVladimer LarionovSun-Hee LeemFrederick LopezYunian LouSteve LowryStephanie MalfattiDiego MartinezPaula McCreadyCatherine MedinaJenna MorganKathryn NelsonMatt NolanIvan OvcharenkoSam PitluckMartin PollardAnthony P PopkiePaul PredkiGlenda QuanLucia RamirezSam RashJames RettererAlex RodriguezStephanine RogersAsaf SalamovAngelica SalazarXinwei SheDoug SmithTom SlezakVictor SolovyevNina ThayerHope TiceMing TsaiAnna UstaszewskaNu VoMark WagnerJeremy WheelerKevin WuGary XieJoan YangInna DubchakTerrence S FureyPieter DeJongMark DicksonDavid GordonEvan E EichlerLen A PennacchioPaul RichardsonLisa StubbsDaniel S RokhsarRichard M MyersEdward M RubinSusan M Lucas
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The DNA sequence and biology of human chromosome 19

Jane Grimwood et al. Nature. .

Abstract

Chromosome 19 has the highest gene density of all human chromosomes, more than double the genome-wide average. The large clustered gene families, corresponding high G + C content, CpG islands and density of repetitive DNA indicate a chromosome rich in biological and evolutionary significance. Here we describe 55.8 million base pairs of highly accurate finished sequence representing 99.9% of the euchromatin portion of the chromosome. Manual curation of gene loci reveals 1,461 protein-coding genes and 321 pseudogenes. Among these are genes directly implicated in mendelian disorders, including familial hypercholesterolaemia and insulin-resistant diabetes. Nearly one-quarter of these genes belong to tandemly arranged families, encompassing more than 25% of the chromosome. Comparative analyses show a fascinating picture of conservation and divergence, revealing large blocks of gene orthology with rodents, scattered regions with more recent gene family expansions and deletions, and segments of coding and non-coding conservation with the distant fish species Takifugu.

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