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   Mutations in LRRC50 Predispose Zebrafish and Humans to Seminomas  
   
نویسنده basten s.g. ,davis e.e. ,gillis a.j.m. ,van rooijen e. ,stoop h. ,babala n. ,logister i. ,heath z.g. ,jonges t.n. ,katsanis n. ,voest e.e. ,van eeden f.j. ,medema r.h. ,ketting r.f. ,schulte-merker s. ,looijenga l.h.j. ,giles r.h.
منبع plos genetics - 2013 - دوره : 9 - شماره : 4
چکیده    Seminoma is a subclass of human testicular germ cell tumors (tgct),the most frequently observed cancer in young men with a rising incidence. here we describe the identification of a novel gene predisposing specifically to seminoma formation in a vertebrate model organism. zebrafish carrying a heterozygous nonsense mutation in leucine-rich repeat containing protein 50 (lrrc50 also called dnaaf1),associated previously with ciliary function,are found to be highly susceptible to the formation of seminomas. genotyping of these zebrafish tumors shows loss of heterozygosity (loh) of the wild-type lrrc50 allele in 44.4% of tumor samples,correlating with tumor progression. in humans we identified heterozygous germline lrrc50 mutations in two different pedigrees with a family history of seminomas,resulting in a nonsense arg488* change and a missense thr590met change,which show reduced expression of the wild-type allele in seminomas. zebrafish in vivo complementation studies indicate the thr590met to be a loss-of-function mutation. moreover,we show that a pathogenic gln307glu change is significantly enriched in individuals with seminoma tumors (13% of our cohort). together,our study introduces an animal model for seminoma and suggests lrrc50 to be a novel tumor suppressor implicated in human seminoma pathogenesis. © 2013 basten et al.
آدرس department of medical oncology,university medical center utrecht,utrecht, Netherlands, center for human disease modeling,department of pediatrics,department of cell biology,duke university medical center,durham,nc, United States, department of pathology,erasmus mc,university medical center rotterdam,daniel den hoed cancer center,josephine nefkens institute,rotterdam, Netherlands, department of medical oncology,university medical center utrecht,utrecht,netherlands,hubrecht institute,knaw and university medical center utrecht,utrecht, Netherlands, department of pathology,erasmus mc,university medical center rotterdam,daniel den hoed cancer center,josephine nefkens institute,rotterdam, Netherlands, department of medical oncology,university medical center utrecht,utrecht, Netherlands, department of medical oncology,university medical center utrecht,utrecht,netherlands,hubrecht institute,knaw and university medical center utrecht,utrecht, Netherlands, center for human disease modeling,department of pediatrics,department of cell biology,duke university medical center,durham,nc, United States, department of pathology,university medical center utrecht,utrecht, Netherlands, center for human disease modeling,department of pediatrics,department of cell biology,duke university medical center,durham,nc, United States, department of medical oncology,university medical center utrecht,utrecht, Netherlands, hubrecht institute,knaw and university medical center utrecht,utrecht, Netherlands, department of medical oncology,university medical center utrecht,utrecht, Netherlands, hubrecht institute,knaw and university medical center utrecht,utrecht, Netherlands, hubrecht institute,knaw and university medical center utrecht,utrecht, Netherlands, hubrecht institute,knaw and university medical center utrecht,utrecht, Netherlands, department of medical oncology,university medical center utrecht,utrecht,netherlands,department of nephrology and hypertension,university medical center utrecht,utrecht, Netherlands
 
     
   
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