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Immunology|January 26, 2005
V(H) replacement in rearranged immunoglobulin genesJohn M Darlow, David I StottImmunogenetics|May 18, 2006
Gene conversion in human rearranged immunoglobulin genesJohn M Darlow, David I StottImmunology|March 19, 2004
Non-functional immunoglobulin G transcripts in a case of hyper-immunoglobulin M syndrome similar to type 4John M Darlow, Alex M Farrell, David I StottScientific Reports|February 12, 2020
Investigation of DNA variants specific to ROBO2 Isoform 'a' in Irish vesicoureteric reflux patients reveals marked CpG island variationJohn M Darlow, Mark G Dobson, Andrew J Green, et al.Human Mutation|March 24, 2009
The increased incidence of the RET p.Gly691Ser variant in French-Canadian vesicoureteric reflux patients is not replicated by a larger study in IrelandJohn M Darlow, Niamh H N Molloy, Andrew J Green, et al.Kidney International|March 29, 2013
Heterozygous non-synonymous ROBO2 variants are unlikely to be sufficient to cause familial vesicoureteric refluxMark G Dobson, John M Darlow, Manuela Hunziker, et al.Familial Cancer|January 8, 2017
Mutation screening of ACKR3 and COPS8 in kidney cancer cases from the CONFIRM studyMaryam Mahmoodi, Tu Nguyen-Dumont, Fleur Hammet, et al.Scientific Reports|January 10, 2018
Publisher Correction: Genome-wide linkage and association study implicates the 10q26 region as a major genetic contributor to primary nonsyndromic vesicoureteric refluxJohn M Darlow, Rebecca Darlay, Mark G Dobson, et al.Scientific Reports|November 4, 2017
Genome-wide linkage and association study implicates the 10q26 region as a major genetic contributor to primary nonsyndromic vesicoureteric refluxJohn M Darlow, Rebecca Darlay, Mark G Dobson, et al.Journal of the American Society of Nephrology : JASN|August 23, 2014
Urinary tract effects of HPSE2 mutationsHelen M Stuart, Neil A Roberts, Emma N Hilton, et al.Pageof 2