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Simultaneous detection of microsatellite repeats and SNPs in the macrophage migration inhibitory factor (MIF) gene by thin-film biosensor chips and application to rural field studies

Microsatellite repeat and single nucleotide polymorphisms (SNPs) are abundant sources of genetic variation, but existing methodologies cannot simultaneously detect these variants in a facile or inexpensive way. We describe herein a thin-film biosensor chip based on an allele-discriminating oligonucl...

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Detalles Bibliográficos
Autores principales: Zhong, Xiao-bo, Leng, Lin, Beitin, Anna, Chen, Rui, McDonald, Courtney, Hsiao, Betty, Jenison, Robert D., Kang, Insoo, Park, Sung-Hwan, Lee, Annette, Gregersen, Peter, Thuma, Philip, Bray-Ward, Patricia, Ward, David C., Bucala, Richard
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1182331/
https://www.ncbi.nlm.nih.gov/pubmed/16077028
http://dx.doi.org/10.1093/nar/gni123
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author Zhong, Xiao-bo
Leng, Lin
Beitin, Anna
Chen, Rui
McDonald, Courtney
Hsiao, Betty
Jenison, Robert D.
Kang, Insoo
Park, Sung-Hwan
Lee, Annette
Gregersen, Peter
Thuma, Philip
Bray-Ward, Patricia
Ward, David C.
Bucala, Richard
author_facet Zhong, Xiao-bo
Leng, Lin
Beitin, Anna
Chen, Rui
McDonald, Courtney
Hsiao, Betty
Jenison, Robert D.
Kang, Insoo
Park, Sung-Hwan
Lee, Annette
Gregersen, Peter
Thuma, Philip
Bray-Ward, Patricia
Ward, David C.
Bucala, Richard
author_sort Zhong, Xiao-bo
collection PubMed
description Microsatellite repeat and single nucleotide polymorphisms (SNPs) are abundant sources of genetic variation, but existing methodologies cannot simultaneously detect these variants in a facile or inexpensive way. We describe herein a thin-film biosensor chip based on an allele-discriminating oligonucleotide array that enables genotyping for both microsatellite repeats and SNPs in a single analysis. We validated this methodology for the functionally polymorphic −794 CATT(5–8) repeat and −173 G/C SNP present in the promoter of the human gene for macrophage migration inhibitory factor (MIF). In a comparison of 30 samples collected at a rural hospital in Zambia, we observed a 100% concordance for both the CATT repeat and G/C SNP between the biosensor methodology and the conventional capillary electrophoresis. The biosensor chips are low in cost and once printed, they are robust and require no instrumentation for analysis. When combined with multiple displacement amplification, this methodology can be utilized in primitive settings for the genotyping of nanogram quantities of DNA present in blood, dried and stored on filter paper samples. We applied this methodology to a field study of MIF genotype in children with malaria, and provide first evidence for a potential association between MIF alleles and malaria infection. We also present data supporting significant population stratification of the low- versus high-expression forms of MIF that may bear on the role of this gene in infectious diseases.
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spelling pubmed-11823312005-08-03 Simultaneous detection of microsatellite repeats and SNPs in the macrophage migration inhibitory factor (MIF) gene by thin-film biosensor chips and application to rural field studies Zhong, Xiao-bo Leng, Lin Beitin, Anna Chen, Rui McDonald, Courtney Hsiao, Betty Jenison, Robert D. Kang, Insoo Park, Sung-Hwan Lee, Annette Gregersen, Peter Thuma, Philip Bray-Ward, Patricia Ward, David C. Bucala, Richard Nucleic Acids Res Methods Online Microsatellite repeat and single nucleotide polymorphisms (SNPs) are abundant sources of genetic variation, but existing methodologies cannot simultaneously detect these variants in a facile or inexpensive way. We describe herein a thin-film biosensor chip based on an allele-discriminating oligonucleotide array that enables genotyping for both microsatellite repeats and SNPs in a single analysis. We validated this methodology for the functionally polymorphic −794 CATT(5–8) repeat and −173 G/C SNP present in the promoter of the human gene for macrophage migration inhibitory factor (MIF). In a comparison of 30 samples collected at a rural hospital in Zambia, we observed a 100% concordance for both the CATT repeat and G/C SNP between the biosensor methodology and the conventional capillary electrophoresis. The biosensor chips are low in cost and once printed, they are robust and require no instrumentation for analysis. When combined with multiple displacement amplification, this methodology can be utilized in primitive settings for the genotyping of nanogram quantities of DNA present in blood, dried and stored on filter paper samples. We applied this methodology to a field study of MIF genotype in children with malaria, and provide first evidence for a potential association between MIF alleles and malaria infection. We also present data supporting significant population stratification of the low- versus high-expression forms of MIF that may bear on the role of this gene in infectious diseases. Oxford University Press 2005 2005-08-02 /pmc/articles/PMC1182331/ /pubmed/16077028 http://dx.doi.org/10.1093/nar/gni123 Text en © The Author 2005. Published by Oxford University Press. All rights reserved
spellingShingle Methods Online
Zhong, Xiao-bo
Leng, Lin
Beitin, Anna
Chen, Rui
McDonald, Courtney
Hsiao, Betty
Jenison, Robert D.
Kang, Insoo
Park, Sung-Hwan
Lee, Annette
Gregersen, Peter
Thuma, Philip
Bray-Ward, Patricia
Ward, David C.
Bucala, Richard
Simultaneous detection of microsatellite repeats and SNPs in the macrophage migration inhibitory factor (MIF) gene by thin-film biosensor chips and application to rural field studies
title Simultaneous detection of microsatellite repeats and SNPs in the macrophage migration inhibitory factor (MIF) gene by thin-film biosensor chips and application to rural field studies
title_full Simultaneous detection of microsatellite repeats and SNPs in the macrophage migration inhibitory factor (MIF) gene by thin-film biosensor chips and application to rural field studies
title_fullStr Simultaneous detection of microsatellite repeats and SNPs in the macrophage migration inhibitory factor (MIF) gene by thin-film biosensor chips and application to rural field studies
title_full_unstemmed Simultaneous detection of microsatellite repeats and SNPs in the macrophage migration inhibitory factor (MIF) gene by thin-film biosensor chips and application to rural field studies
title_short Simultaneous detection of microsatellite repeats and SNPs in the macrophage migration inhibitory factor (MIF) gene by thin-film biosensor chips and application to rural field studies
title_sort simultaneous detection of microsatellite repeats and snps in the macrophage migration inhibitory factor (mif) gene by thin-film biosensor chips and application to rural field studies
topic Methods Online
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1182331/
https://www.ncbi.nlm.nih.gov/pubmed/16077028
http://dx.doi.org/10.1093/nar/gni123
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