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Genetic Modifiers of White Blood Cell Count, Albuminuria and Glomerular Filtration Rate in Children with Sickle Cell Anemia

Discovery and validation of genetic variants that influence disease severity in children with sickle cell anemia (SCA) could lead to early identification of high-risk patients, better screening strategies, and intervention with targeted and preventive therapy. We hypothesized that newly identified g...

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Autores principales: Schaefer, Beverly A., Flanagan, Jonathan M., Alvarez, Ofelia A., Nelson, Stephen C., Aygun, Banu, Nottage, Kerri A., George, Alex, Roberts, Carla W., Piccone, Connie M., Howard, Thad A., Davis, Barry R., Ware, Russell E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5053442/
https://www.ncbi.nlm.nih.gov/pubmed/27711207
http://dx.doi.org/10.1371/journal.pone.0164364
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author Schaefer, Beverly A.
Flanagan, Jonathan M.
Alvarez, Ofelia A.
Nelson, Stephen C.
Aygun, Banu
Nottage, Kerri A.
George, Alex
Roberts, Carla W.
Piccone, Connie M.
Howard, Thad A.
Davis, Barry R.
Ware, Russell E.
author_facet Schaefer, Beverly A.
Flanagan, Jonathan M.
Alvarez, Ofelia A.
Nelson, Stephen C.
Aygun, Banu
Nottage, Kerri A.
George, Alex
Roberts, Carla W.
Piccone, Connie M.
Howard, Thad A.
Davis, Barry R.
Ware, Russell E.
author_sort Schaefer, Beverly A.
collection PubMed
description Discovery and validation of genetic variants that influence disease severity in children with sickle cell anemia (SCA) could lead to early identification of high-risk patients, better screening strategies, and intervention with targeted and preventive therapy. We hypothesized that newly identified genetic risk factors for the general African American population could also impact laboratory biomarkers known to contribute to the clinical disease expression of SCA, including variants influencing the white blood cell count and the development of albuminuria and abnormal glomerular filtration rate. We first investigated candidate genetic polymorphisms in well-characterized SCA pediatric cohorts from three prospective NHLBI-supported clinical trials: HUSTLE, SWiTCH, and TWiTCH. We also performed whole exome sequencing to identify novel genetic variants, using both a discovery and a validation cohort. Among candidate genes, DARC rs2814778 polymorphism regulating Duffy antigen expression had a clear influence with significantly increased WBC and neutrophil counts, but did not affect the maximum tolerated dose of hydroxyurea therapy. The APOL1 G1 polymorphism, an identified risk factor for non-diabetic renal disease, was associated with albuminuria. Whole exome sequencing discovered several novel variants that maintained significance in the validation cohorts, including ZFHX4 polymorphisms affecting both the leukocyte and neutrophil counts, as well as AGGF1, CYP4B1, CUBN, TOR2A, PKD1L2, and CD163 variants affecting the glomerular filtration rate. The identification of robust, reliable, and reproducible genetic markers for disease severity in SCA remains elusive, but new genetic variants provide avenues for further validation and investigation.
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spelling pubmed-50534422016-10-27 Genetic Modifiers of White Blood Cell Count, Albuminuria and Glomerular Filtration Rate in Children with Sickle Cell Anemia Schaefer, Beverly A. Flanagan, Jonathan M. Alvarez, Ofelia A. Nelson, Stephen C. Aygun, Banu Nottage, Kerri A. George, Alex Roberts, Carla W. Piccone, Connie M. Howard, Thad A. Davis, Barry R. Ware, Russell E. PLoS One Research Article Discovery and validation of genetic variants that influence disease severity in children with sickle cell anemia (SCA) could lead to early identification of high-risk patients, better screening strategies, and intervention with targeted and preventive therapy. We hypothesized that newly identified genetic risk factors for the general African American population could also impact laboratory biomarkers known to contribute to the clinical disease expression of SCA, including variants influencing the white blood cell count and the development of albuminuria and abnormal glomerular filtration rate. We first investigated candidate genetic polymorphisms in well-characterized SCA pediatric cohorts from three prospective NHLBI-supported clinical trials: HUSTLE, SWiTCH, and TWiTCH. We also performed whole exome sequencing to identify novel genetic variants, using both a discovery and a validation cohort. Among candidate genes, DARC rs2814778 polymorphism regulating Duffy antigen expression had a clear influence with significantly increased WBC and neutrophil counts, but did not affect the maximum tolerated dose of hydroxyurea therapy. The APOL1 G1 polymorphism, an identified risk factor for non-diabetic renal disease, was associated with albuminuria. Whole exome sequencing discovered several novel variants that maintained significance in the validation cohorts, including ZFHX4 polymorphisms affecting both the leukocyte and neutrophil counts, as well as AGGF1, CYP4B1, CUBN, TOR2A, PKD1L2, and CD163 variants affecting the glomerular filtration rate. The identification of robust, reliable, and reproducible genetic markers for disease severity in SCA remains elusive, but new genetic variants provide avenues for further validation and investigation. Public Library of Science 2016-10-06 /pmc/articles/PMC5053442/ /pubmed/27711207 http://dx.doi.org/10.1371/journal.pone.0164364 Text en © 2016 Schaefer et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Schaefer, Beverly A.
Flanagan, Jonathan M.
Alvarez, Ofelia A.
Nelson, Stephen C.
Aygun, Banu
Nottage, Kerri A.
George, Alex
Roberts, Carla W.
Piccone, Connie M.
Howard, Thad A.
Davis, Barry R.
Ware, Russell E.
Genetic Modifiers of White Blood Cell Count, Albuminuria and Glomerular Filtration Rate in Children with Sickle Cell Anemia
title Genetic Modifiers of White Blood Cell Count, Albuminuria and Glomerular Filtration Rate in Children with Sickle Cell Anemia
title_full Genetic Modifiers of White Blood Cell Count, Albuminuria and Glomerular Filtration Rate in Children with Sickle Cell Anemia
title_fullStr Genetic Modifiers of White Blood Cell Count, Albuminuria and Glomerular Filtration Rate in Children with Sickle Cell Anemia
title_full_unstemmed Genetic Modifiers of White Blood Cell Count, Albuminuria and Glomerular Filtration Rate in Children with Sickle Cell Anemia
title_short Genetic Modifiers of White Blood Cell Count, Albuminuria and Glomerular Filtration Rate in Children with Sickle Cell Anemia
title_sort genetic modifiers of white blood cell count, albuminuria and glomerular filtration rate in children with sickle cell anemia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5053442/
https://www.ncbi.nlm.nih.gov/pubmed/27711207
http://dx.doi.org/10.1371/journal.pone.0164364
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