Home LiteratureArticle Details
PMID: 19169360 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Histo-blood group gene polymorphisms as potential genetic modifiers of infection and cystic fibrosis lung disease severity.

PloS one ·Vol. 4 ·No. 1 ·2009-00-00 ·Pages e4270

Taylor-Cousar JL, Zariwala MA, Burch LH, Pace RG, Drumm ML, Calloway H, Fan H, Weston BW, Wright FA, Knowles MR, Gene Modifier Study Group

Abstract

The pulmonary phenotype in cystic fibrosis (CF) is variable; thus, environmental and genetic factors likely contribute to clinical heterogeneity. We hypothesized that genetically determined ABO histo-blood group antigen (ABH) differences in glycosylation may lead to differences in microbial binding by airway mucus, and thus predispose to early lung infection and more severe lung disease in a subset of patients with CF. Clinical information and DNA was collected on >800 patients with the DeltaF508/DeltaF508 genotype. Patients in the most severe and mildest quartiles for lung phenotype were enrolled. Blood samples underwent lymphocyte transformation and DNA extraction using standard methods. PCR and sequencing were performed using standard techniques to identify the 9 SNPs required to determine ABO blood type, and to identify the four SNPs that account for 90-95% of Lewis status in Caucasians. Allele identification of the one nonsynonymous SNP in FUT2 that accounts for >95% of the incidence of nonsecretor phenotype in Caucasians was completed using an ABI Taqman assay. The overall prevalence of ABO types, and of FUT2 (secretor) and FUT 3 (Lewis) alleles was consistent with that found in the Caucasian population. There was no difference in distribution of ABH type in the severe versus mild patients, or the age of onset of Pseudomonas aeruginosa infection in the severe or mild groups. Multivariate analyses of other clinical phenotypes, including gender, asthma, and meconium ileus demonstrated no differences between groups based on ABH type. Polymorphisms in the genes encoding ABO blood type, secretor or Lewis genotypes were not shown to associate with severity of CF lung disease, or age of onset of P. aeruginosa infection, nor was there any association with other clinical phenotypes in a group of 808 patients homozygous for the DeltaF508 mutation.

MeSH Terms
ABO Blood-Group System/genetics Adolescent Adult Blood Group Antigens/genetics Cystic Fibrosis/genetics,microbiology,pathology Female Genetic Predisposition to Disease Humans Lung/metabolism Male Mucus/microbiology Polymorphism, Genetic Polymorphism, Single Nucleotide Pseudomonas Infections/genetics,pathology Pseudomonas aeruginosa/metabolism
Chemicals
ABO Blood-Group System Blood Group Antigens
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Taylor-Cousar Jennifer L
Pulmonary Division, Internal Medicine and Pediatrics, Albuquerque, New Mexico, University of New Mexico Health Sciences Center, United States of America. [email protected]
Zariwala Maimoona A
Burch Lauranell H
Pace Rhonda G
Drumm Mitchell L
Calloway Hollin
Fan Haiying
Weston Brent W
Wright Fred A
Knowles Michael R
Gene Modifier Study Group
References (41)
41 references, click to expand
  1. ABH secretor status in cystic fibrosis--a negative report.
    Eur J Respir Dis. 1985 Nov;67(5):381-4 PMID: 4085589
  2. Differential binding of Pseudomonas aeruginosa to normal and cystic fibrosis tracheobronchial mucins.
    Glycobiology. 1994 Jun;4(3):307-16 PMID: 7949656
  3. Expression of human chromosome 19p alpha(1,3)-fucosyltransferase genes in normal tissues. Alternative splicing, polyadenylation, and isoforms.
    J Biol Chem. 1995 Aug 25;270(34):20112-22 PMID: 7650030
  4. Terminal glycosylation in cystic fibrosis (CF): a review emphasizing the airway epithelial cell.
    Glycoconj J. 2001 Sep;18(9):649-59 PMID: 12386452
  5. Heritability of lung disease severity in cystic fibrosis.
    Am J Respir Crit Care Med. 2007 May 15;175(10):1036-43 PMID: 17332481
  6. Classifying severity of cystic fibrosis lung disease using longitudinal pulmonary function data.
    Am J Respir Crit Care Med. 2006 Oct 1;174(7):780-6 PMID: 16858011
  7. Influence of the combined ABO, FUT2, and FUT3 polymorphism on susceptibility to Norwalk virus attachment.
    J Infect Dis. 2005 Sep 15;192(6):1071-7 PMID: 16107962
  8. The role of respiratory viruses in cystic fibrosis.
    J Cyst Fibros. 2008 Jul;7(4):320-8 PMID: 18255355
  9. Intestinal mucins from cystic fibrosis mice show increased fucosylation due to an induced Fucalpha1-2 glycosyltransferase.
    Biochem J. 2002 Nov 1;367(Pt 3):609-16 PMID: 12164788
  10. ABH and Lewis histo-blood group antigens, a model for the meaning of oligosaccharide diversity in the face of a changing world.
    Biochimie. 2001 Jul;83(7):565-73 PMID: 11522384
  11. Interactions of the fucose-specific Pseudomonas aeruginosa lectin, PA-IIL, with mammalian glycoconjugates bearing polyvalent Lewis(a) and ABH blood group glycotopes.
    Biochimie. 2006 Oct;88(10):1479-92 PMID: 16762477
  12. Longitudinal relationship among growth, nutritional status, and pulmonary function in children with cystic fibrosis: analysis of the Cystic Fibrosis Foundation National CF Patient Registry.
    J Pediatr. 2000 Sep;137(3):374-80 PMID: 10969263
  13. Altered sialyl- and fucosyl-linkage on mucins in cystic fibrosis patients promotes formation of the sialyl-Lewis X determinant on salivary MUC-5B and MUC-7.
    Pflugers Arch. 2001;443 Suppl 1:S55-61 PMID: 11845304
  14. Isolation of an adhesin from Staphylococcus aureus that binds Lewis a blood group antigen and its relevance to sudden infant death syndrome.
    FEMS Immunol Med Microbiol. 1994 May;8(4):315-20 PMID: 8061655
  15. Identification of the cystic fibrosis gene: cloning and characterization of complementary DNA.
    Science. 1989 Sep 8;245(4922):1066-73 PMID: 2475911
  16. Interaction between a novel TGFB1 haplotype and CFTR genotype is associated with improved lung function in cystic fibrosis.
    Hum Mol Genet. 2008 Jul 15;17(14):2228-37 PMID: 18424453
  17. Influence of Lewis alpha1-3/4-L-fucosyltransferase (FUT3) gene mutations on enzyme activity, erythrocyte phenotyping, and circulating tumor marker sialyl-Lewis a levels.
    J Biol Chem. 1996 Dec 13;271(50):32260-8 PMID: 8943285
  18. Cystic fibrosis: a worldwide analysis of CFTR mutations--correlation with incidence data and application to screening.
    Hum Mutat. 2002 Jun;19(6):575-606 PMID: 12007216
  19. Associations of blood group-related antigens to FEV1, wheezing, and asthma.
    Am J Respir Crit Care Med. 1996 Jan;153(1):76-82 PMID: 8542166
  20. Early pulmonary inflammation in infants with cystic fibrosis.
    Am J Respir Crit Care Med. 1995 Apr;151(4):1075-82 PMID: 7697234
  21. Abnormal fucosylation of ileal mucus in cystic fibrosis: I. A histochemical study using peroxidase labelled lectins.
    J Clin Pathol. 1990 Dec;43(12):1014-8 PMID: 2266173
  22. Is ABH nonsecretor status a risk factor for obstructive lung disease?
    Am J Epidemiol. 1980 Mar;111(3):285-91 PMID: 7361751
  23. Role of sialic acid in saliva-mediated aggregation of Pseudomonas aeruginosa isolated from cystic fibrosis patients.
    Infect Immun. 1987 Oct;55(10):2364-9 PMID: 3115896
  24. Sequence variation at the human ABO locus.
    Ann Hum Genet. 2002 Jan;66(Pt 1):1-27 PMID: 12014997
  25. Genetic modifiers of lung disease in cystic fibrosis.
    N Engl J Med. 2005 Oct 6;353(14):1443-53 PMID: 16207846
  26. Genetic background of Lewis negative blood group phenotype and its association with atherosclerotic disease in the NHLBI family heart study.
    J Intern Med. 2000 Jun;247(6):689-98 PMID: 10886491
  27. Association of respiratory viral infections with pulmonary deterioration in patients with cystic fibrosis.
    N Engl J Med. 1984 Dec 27;311(26):1653-8 PMID: 6504106
  28. Noroviruses bind to human ABO, Lewis, and secretor histo-blood group antigens: identification of 4 distinct strain-specific patterns.
    J Infect Dis. 2003 Jul 1;188(1):19-31 PMID: 12825167
  29. Five novel missense mutations of the Lewis gene (FUT3) in African (Xhosa) and Caucasian populations in South Africa.
    Hum Genet. 1998 Jun;102(6):675-80 PMID: 9703429
  30. Secretor genotyping for A385T, G428A, C571T, C628T, 685delTGG, G849A, and other mutations from a single PCR.
    Transfusion. 2000 Jul;40(7):856-60 PMID: 10924615
  31. The phenotypic consequences of CFTR mutations.
    Ann Hum Genet. 2003 Sep;67(Pt 5):471-85 PMID: 12940920
  32. Mucus clearance as a primary innate defense mechanism for mammalian airways.
    J Clin Invest. 2002 Mar;109(5):571-7 PMID: 11877463
  33. ABO/Secretor genetic complex and susceptibility to asthma in childhood.
    Eur Respir J. 2001 Jun;17(6):1236-8 PMID: 11491170
  34. Modifier genetics: cystic fibrosis.
    Annu Rev Genomics Hum Genet. 2005;6:237-60 PMID: 16124861
  35. The relation between genotype and phenotype in cystic fibrosis--analysis of the most common mutation (delta F508).
    N Engl J Med. 1990 Nov 29;323(22):1517-22 PMID: 2233932
  36. Altered carbohydrate composition of salivary mucins from patients with cystic fibrosis and the adhesion of Pseudomonas aeruginosa.
    Am J Respir Cell Mol Biol. 1993 Sep;9(3):323-34 PMID: 8398170
  37. Longitudinal development of mucoid Pseudomonas aeruginosa infection and lung disease progression in children with cystic fibrosis.
    JAMA. 2005 Feb 2;293(5):581-8 PMID: 15687313
  38. Cystic fibrosis epithelial cells have a receptor for pathogenic bacteria on their apical surface.
    Proc Natl Acad Sci U S A. 1995 Mar 28;92(7):3019-23 PMID: 7708767
  39. Pathophysiology and management of pulmonary infections in cystic fibrosis.
    Am J Respir Crit Care Med. 2003 Oct 15;168(8):918-51 PMID: 14555458
  40. Strategies for identifying modifier genes in cystic fibrosis.
    Proc Am Thorac Soc. 2007 Jan;4(1):52-7 PMID: 17202292
  41. Study of the oligosaccharide units from mucus glycoproteins of meconium from normal infants and from cases of cystic fibrosis with meconium ileus.
    Clin Sci (Lond). 1979 Nov;57(5):445-51 PMID: 519953
Article Info
Journal
PloS one
Abbr.
PLoS One
ISSN
1932-6203
Published
2009-00-00
Epub
2009-00-26
Pages
e4270
Language
English
Region
United States
NLM ID
101285081
PMCID
PMC2627933
Subset
IM
Grants
NHLBI NIH HHS · F32 HL082207 · United States
NIDDK NIH HHS · P30 DK027651 · United States
NHLBI NIH HHS · R01 HL068890 · United States
NHLBI NIH HHS · 1F32HL082207-01 · United States
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]