Common variation in KITLG and at 5q31.3 predisposes to testicular germ cell cancer.
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Interaction of occupational and personal risk factors in workforce health and safetyAdolescent and adult risk factors for testicular cancerEtiology and early pathogenesis of malignant testicular germ cell tumors: towards possibilities for preinvasive diagnosisBone Marrow Blood Vessels: Normal and Neoplastic NicheZebrafish Germ Cell TumorsClose ties: an exploratory Colored Eco-Genetic Relationship Map (CEGRM) study of social connections of men in Familial Testicular Cancer (FTC) families.Interaction between DMRT1 function and genetic background modulates signaling and pluripotency to control tumor susceptibility in the fetal germ lineFetal cyclophosphamide exposure induces testicular cancer and reduced spermatogenesis and ovarian follicle numbers in miceEvolution and gene capture in ancient endogenous retroviruses - insights from the crocodilian genomesA second independent locus within DMRT1 is associated with testicular germ cell tumor susceptibilityVariants near DMRT1, TERT and ATF7IP are associated with testicular germ cell cancerThe genomic landscape of testicular germ cell tumours: from susceptibility to treatment.Male reproductive disorders, diseases, and costs of exposure to endocrine-disrupting chemicals in the European Union.Cross platform analysis of methylation, miRNA and stem cell gene expression data in germ cell tumors highlights characteristic differences by tumor histology.Age-specific incidence data indicate four mutations are required for human testicular cancers.Mutations in LRRC50 predispose zebrafish and humans to seminomas.Pediatric primary central nervous system germ cell tumors of different prognosis groups show characteristic miRNome traits and chromosome copy number variations.LINE-1 methylation is inherited in familial testicular cancer kindreds.Beyond genome-wide association studies: genetic heterogeneity and individual predisposition to cancer.Urological cancer related to familial syndromes.Seminoma and embryonal carcinoma footprints identified by analysis of integrated genome-wide epigenetic and expression profiles of germ cell cancer cell linesTumor loci and their interactions on mouse chromosome 19 that contribute to testicular germ cell tumorsGenetic alterations of chromosomes, p53 and p16 genes in low- and high-grade bladder cancer.Genome-wide association studies in cancer--current and future directionsDissecting the molecular pathways of (testicular) germ cell tumour pathogenesis; from initiation to treatment-resistance.A compendium of genome-wide associations for cancer: critical synopsis and reappraisal.Heterozygous deletion at the RLN1 locus in a family with testicular germ cell cancer identified by integrating copy number variation data with phenome and interactome information.Genetic determinants of lipid traits in diverse populations from the population architecture using genomics and epidemiology (PAGE) studyThe developing story of Sprouty and cancer.Studying the impact of early life exposures to pesticides on the risk of testicular germ cell tumors during adulthood (TESTIS project): study protocol.Bone morphogenetic protein signalling activity distinguishes histological subsets of paediatric germ cell tumours.Familial testicular germ cell tumoursDeficiency of splicing factor 1 suppresses the occurrence of testicular germ cell tumors.Delayed Recognition of Disorders of Sex Development (DSD): A Missed Opportunity for Early Diagnosis of Malignant Germ Cell Tumors.Fetal radiation exposure induces testicular cancer in genetically susceptible miceA functional p53 responsive polymorphism in KITLG, rs4590952, does not affect the risk of breast cancer.Genome-wide association studies of cancer.A polymorphic p53 response element in KIT ligand influences cancer risk and has undergone natural selection.A review of cancer risk prediction models with genetic variants.The ter mutation in the rat Dnd1 gene initiates gonadal teratomas and infertility in both genders
P2860
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P2860
Common variation in KITLG and at 5q31.3 predisposes to testicular germ cell cancer.
description
2009 nî lūn-bûn
@nan
2009 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2009 թվականի մայիսին հրատարակված գիտական հոդված
@hy
2009年の論文
@ja
2009年論文
@yue
2009年論文
@zh-hant
2009年論文
@zh-hk
2009年論文
@zh-mo
2009年論文
@zh-tw
2009年论文
@wuu
name
Common variation in KITLG and at 5q31.3 predisposes to testicular germ cell cancer
@nl
Common variation in KITLG and at 5q31.3 predisposes to testicular germ cell cancer.
@ast
Common variation in KITLG and at 5q31.3 predisposes to testicular germ cell cancer.
@en
type
label
Common variation in KITLG and at 5q31.3 predisposes to testicular germ cell cancer
@nl
Common variation in KITLG and at 5q31.3 predisposes to testicular germ cell cancer.
@ast
Common variation in KITLG and at 5q31.3 predisposes to testicular germ cell cancer.
@en
prefLabel
Common variation in KITLG and at 5q31.3 predisposes to testicular germ cell cancer
@nl
Common variation in KITLG and at 5q31.3 predisposes to testicular germ cell cancer.
@ast
Common variation in KITLG and at 5q31.3 predisposes to testicular germ cell cancer.
@en
P2093
P2860
P50
P3181
P356
P1433
P1476
Common variation in KITLG and at 5q31.3 predisposes to testicular germ cell cancer.
@en
P2093
Andrew K Godwin
Anthony Albano
Daniel J Rader
David J Vaughn
Joellen Weaver
Lauren M Smith
Mingyao Li
Nandita Mitra
Peter A Kanetsky
P2860
P2888
P304
P3181
P356
10.1038/NG.393
P407
P577
2009-05-31T00:00:00Z
P5875
P6179
1022113991