Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Identification of novel silent KEL alleles causing KEL:−5 (Ko) phenotype or discordance between KEL:1,−2 phenotype/KEL*01/02 genotype

View through CrossRef
BackgroundThe Kell system, encoded by the KEL gene, is one of the most clinically important blood group systems. Molecular defects may lead to the absence of Kell antigen expression. The very rare KEL:5 results from silent KEL genes, also called KELnull alleles. In a few cases, the rare KEL:1,−2 phenotype may be associated with silent KEL*02 alleles.Study Design and MethodsThe aim of this study was to perform DNA investigations to identify silent KEL alleles among 10 KEL:–5 patients and 121 individuals presenting the rare KEL:1,−2 phenotype. Serologic investigations were performed on patients' red blood cells and serum. The KEL gene analysis was done by using a BeadChip assay (HEA Version, 1.2, Immucor), real‐time polymerase chain reaction, and/or sequencing of all 19 exons of the KEL gene.ResultsIn KEL:–5 patients, two novel KELnull alleles were described: 821G>A being the second described KELnull allele on a KEL*01 backbone and 184Tdel. In the 121 KEL:1,−2 individuals, nine (7.4%) were found to display a discordant KEL:1,−2 phenotype and KEL*01/KEL*02 genotype. Three novel silent KEL*02 alleles were described: 1084C>A, 1708G>A, and IVS11+5g>a.ConclusionThe number of silent KEL alleles and the notion that KEL null alleles are on a KEL*02 background may evolve in the coming years. Systematic DNA analysis showed that the number of discordant phenotype/genotype results, related to silent KEL*02 alleles was higher than expected in France. These data emphasize that clinical practice based on DNA analysis for blood group antigens requires caution and should improve the performance of the blood group phenotype prediction.
Title: Identification of novel silent KEL alleles causing KEL:−5 (Ko) phenotype or discordance between KEL:1,−2 phenotype/KEL*01/02 genotype
Description:
BackgroundThe Kell system, encoded by the KEL gene, is one of the most clinically important blood group systems.
Molecular defects may lead to the absence of Kell antigen expression.
The very rare KEL:5 results from silent KEL genes, also called KELnull alleles.
In a few cases, the rare KEL:1,−2 phenotype may be associated with silent KEL*02 alleles.
Study Design and MethodsThe aim of this study was to perform DNA investigations to identify silent KEL alleles among 10 KEL:–5 patients and 121 individuals presenting the rare KEL:1,−2 phenotype.
Serologic investigations were performed on patients' red blood cells and serum.
The KEL gene analysis was done by using a BeadChip assay (HEA Version, 1.
2, Immucor), real‐time polymerase chain reaction, and/or sequencing of all 19 exons of the KEL gene.
ResultsIn KEL:–5 patients, two novel KELnull alleles were described: 821G>A being the second described KELnull allele on a KEL*01 backbone and 184Tdel.
In the 121 KEL:1,−2 individuals, nine (7.
4%) were found to display a discordant KEL:1,−2 phenotype and KEL*01/KEL*02 genotype.
Three novel silent KEL*02 alleles were described: 1084C>A, 1708G>A, and IVS11+5g>a.
ConclusionThe number of silent KEL alleles and the notion that KEL null alleles are on a KEL*02 background may evolve in the coming years.
Systematic DNA analysis showed that the number of discordant phenotype/genotype results, related to silent KEL*02 alleles was higher than expected in France.
These data emphasize that clinical practice based on DNA analysis for blood group antigens requires caution and should improve the performance of the blood group phenotype prediction.

Related Results

The Impact of IL28B Gene Polymorphisms on Drug Responses
The Impact of IL28B Gene Polymorphisms on Drug Responses
To achieve high therapeutic efficacy in the patient, information on pharmacokinetics, pharmacodynamics, and pharmacogenetics is required. With the development of science and techno...
Expression and polymorphism of genes in gallstones
Expression and polymorphism of genes in gallstones
ABSTRACT Through the method of clinical case control study, to explore the expression and genetic polymorphism of KLF14 gene (rs4731702 and rs972283) and SR-B1 gene...
Three uncommon KEL alleles in one family with unusual Kell phenotypes explain a 35‐year old conundrum
Three uncommon KEL alleles in one family with unusual Kell phenotypes explain a 35‐year old conundrum
BackgroundKell is a complex blood group system comprising 35 antigens. Kell antigens are absent from rare red cells of the Ko (null) phenotype and expressed only weakly in the Kmod...
Assessment of economic and environmental impacts of two typical cotton genotypes with contrasting potassium efficiency
Assessment of economic and environmental impacts of two typical cotton genotypes with contrasting potassium efficiency
AbstractIt is essential to produce optimal crop yields while reducing adverse environmental impacts of overfertilization. Therefore, nutrient‐efficient plants may play a major role...
The KEL24 and KEL14 alleles of the Kell blood group system
The KEL24 and KEL14 alleles of the Kell blood group system
BACKGROUND: The Kell blood group system consists of at least 21 antigens, which may be classified into five sets of alleles and at least 10 independently expressed antigens. The mo...

Back to Top