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   Mutations in SLC29a3,encoding an equilibrative nucleoside transporter ENT3,cause a familial histiocytosis syndrome (Faisalabad histiocytosis) and familial Rosai-Dorfman disease  
   
نویسنده morgan n.v. ,morris m.r. ,cangul h. ,gleeson d. ,straatman-iwanowska a. ,davies n. ,keenan s. ,pasha s. ,rahman f. ,gentle d. ,vreeswijk m.p.g. ,devilee p. ,knowles m.a. ,ceylaner s. ,trembath r.c. ,dalence c. ,kismet e. ,lu v.k. ,rossbach h.-c. ,gissen p. ,tannahill d. ,maher e.r.
منبع plos genetics - 2010 - دوره : 6 - شماره : 2
چکیده    The histiocytoses are a heterogeneous group of disorders characterised by an excessive number of histiocytes. in most cases the pathophysiology is unclear and treatment is nonspecific. faisalabad histiocytosis (fhc) (mim 602782) has been classed as an autosomal recessively inherited form of histiocytosis with similarities to rosai-dorfman disease (rdd) (also known as sinus histiocytosis with massive lymphadenopathy (shml)). to elucidate the molecular basis of fhc,we performed autozygosity mapping studies in a large consanguineous family and identified a novel locus at chromosome 10q22.1. mutation analysis of candidate genes within the target interval identified biallelic germline mutations in slc29a3 in the fhc kindred and in two families reported to have familial rdd. analysis of slc29a3 expression during mouse embryogenesis revealed widespread expression by e14.5 with prominent expression in the central nervous system,eye,inner ear,and epithelial tissues including the gastrointestinal tract. slc29a3 encodes an intracellular equilibrative nucleoside transporter (hent3) with affinity for adenosine. recently germline mutations in slc29a3 were also described in two rare autosomal recessive disorders with overlapping phenotypes: (a) h syndrome (mim 612391) that is characterised by cutaneous hyperpigmentation and hypertrichosis,hepatomegaly,heart anomalies,hearing loss,and hypogonadism; and (b) phid (pigmented hypertrichosis with insulin-dependent diabetes mellitus) syndrome. our findings suggest that a variety of clinical diagnoses (h and phid syndromes,fhc,and familial rdd) can be included in a new diagnostic category of slc29a3 spectrum disorder. © 2010 morgan et al.
آدرس wellchild paediatric research centre,department of medical and molecular genetics,university of birmingham college of medical and dental sciences,edgbaston,birmingham, United Kingdom, wellchild paediatric research centre,department of medical and molecular genetics,university of birmingham college of medical and dental sciences,edgbaston,birmingham,united kingdom,cancer research uk renal molecular oncology group,department of medical and molecular genetics,university of birmingham college of medical and dental sciences,edgbaston,birmingham, United Kingdom, wellchild paediatric research centre,department of medical and molecular genetics,university of birmingham college of medical and dental sciences,edgbaston,birmingham,united kingdom,department of medical genetics,uludag university school of medicine,bursa, Turkey, wellcome trust sanger institute,cambridge, United Kingdom, wellchild paediatric research centre,department of medical and molecular genetics,university of birmingham college of medical and dental sciences,edgbaston,birmingham, United Kingdom, school of biosciences,university of birmingham school of medicine,birmingham, United Kingdom, wellcome trust sanger institute,cambridge,united kingdom,european bioinformatics institute,cambridge, United Kingdom, wellchild paediatric research centre,department of medical and molecular genetics,university of birmingham college of medical and dental sciences,edgbaston,birmingham, United Kingdom, wellchild paediatric research centre,department of medical and molecular genetics,university of birmingham college of medical and dental sciences,edgbaston,birmingham, United Kingdom, wellchild paediatric research centre,department of medical and molecular genetics,university of birmingham college of medical and dental sciences,edgbaston,birmingham,united kingdom,cancer research uk renal molecular oncology group,department of medical and molecular genetics,university of birmingham college of medical and dental sciences,edgbaston,birmingham, United Kingdom, department of human genetics,center for human and clinical genetics,leiden university medical center,leiden, Netherlands, department of human genetics,center for human and clinical genetics,leiden university medical center,leiden,netherlands,clinical genetics and the department of pathology,leiden university medical center,leiden, Netherlands, cancer research uk clinical centre,leeds institute for molecular medicine,st. james's university hospital,leeds, United Kingdom, medical genetics intergen genetics centre,ankara, Turkey, department of medical and molecular genetics,king's college london school of medicine,guy's hospital,london, United Kingdom, division of paediatric haematology/oncology,st. joseph children's hospital,tampa,fl, United States, department of pediatric oncology,gulhane military medical academy,ankara, Turkey, department of pediatric oncology,gulhane military medical academy,ankara, Turkey, division of paediatric haematology/oncology,st. joseph children's hospital,tampa,fl, United States, wellchild paediatric research centre,department of medical and molecular genetics,university of birmingham college of medical and dental sciences,edgbaston,birmingham, United Kingdom, wellcome trust sanger institute,cambridge,united kingdom,cranfield health,cranfield university,bedford, United Kingdom, wellchild paediatric research centre,department of medical and molecular genetics,university of birmingham college of medical and dental sciences,edgbaston,birmingham,united kingdom,cancer research uk renal molecular oncology group,department of medical and molecular genetics,university of birmingham college of medical and dental sciences,edgbaston,birmingham,united kingdom,west midlands region genetics service,birmingham women's hospital,edgbaston, United Kingdom
 
     
   
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