Abstract
During human development, the switch from fetal to adult hemoglobin (Hb) is not complete with the residual gamma-globin expression being restricted to a subset of erythrocytes termed "F cells" (FC). Statistical analyses have shown the FC trait to be influenced by a common sequence variant (C-->T) at position -158 upstream of the Ggamma-globin gene, termed the "XmnI-Ggamma polymorphism." The XmnI-Ggamma site is believed to be involved in the expression of the Ggamma-globin gene through interaction with transcription factors, and polymorphisms in the transcription factors could be influencing fetal Hb expression, conditional on the XmnI-Ggamma site. Using a two-locus model, in which the second locus was the known quantitative-trait locus (QTL) at the XmnI-Ggamma site, we showed suggestive linkage to chromosome 8q. A maximum single-point LOD score of 4.33 and a multipoint LOD score of 4.75 were found in a 15-20 cM region of chromosome 8q. A single-locus analysis failed to show linkage of FC to the region when the XmnI-Ggamma site was accounted for by removing its effects from the data or including it as a covariate. Results of the single-locus analysis were significant when the effects of the XmnI-Ggamma site were not accounted for in any way. The results of analysis in a large Indian kindred indicate that there is an interaction between the XmnI-Ggamma site and a QTL on chromosome 8q that is influencing the production of fetal Hb.
MeSH Terms
Chromosome Mapping
Chromosomes, Human, Pair 8/genetics
Fetal Hemoglobin/genetics
Gene Expression Regulation, Developmental
Genetic Markers/genetics
Genotype
Globins/genetics
Humans
Lod Score
Models, Genetic
Probability
Quantitative Trait, Heritable
Chemicals
Genetic Markers
Globins
Fetal Hemoglobin
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Garner Chad P
Department of Integrative Biology, University of California, Berkeley, Berkeley, CA 94720-3140, USA. cgarner@socrates.berkeley.edu
Tatu Thanusak
Best Steve
Creary Lisa
Thein Swee Lay
References (21)
21 references, click to expand
-
Genetic influences on F cells and other hematologic variables: a twin heritability study.
Blood. 2000 Jan 1;95(1):342-6
PMID: 10607722
-
Eukaryotic transcription: an interlaced network of transcription factors and chromatin-modifying machines.
Cell. 1998 Feb 6;92(3):307-13
PMID: 9476891
-
Fetal hemoglobin restriction to a few erythrocytes (F cells) in normal human adults.
Science. 1975 Apr 25;188(4186):361-3
PMID: 804182
-
Genetic control of F cells in human adults.
Blood. 1979 May;53(5):977-86
PMID: 373818
-
Common haplotype dependency of high G gamma-globin gene expression and high Hb F levels in beta-thalassemia and sickle cell anemia patients.
Proc Natl Acad Sci U S A. 1985 Apr;82(7):2111-4
PMID: 2580306
-
DNA sequence variation associated with elevated fetal G gamma globin production.
Blood. 1985 Oct;66(4):783-7
PMID: 2412616
-
Association of thalassaemia intermedia with a beta-globin gene haplotype.
Br J Haematol. 1987 Mar;65(3):367-73
PMID: 2436649
-
X-linked dominant control of F-cells in normal adult life: characterization of the Swiss type as hereditary persistence of fetal hemoglobin regulated dominantly by gene(s) on X chromosome.
Blood. 1988 Dec;72(6):1854-60
PMID: 2461753
-
Variation in hemoglobin F production among normal and sickle cell adults is not related to nucleotide substitutions in the gamma promoter regions.
Blood. 1991 Jan 1;77(1):174-7
PMID: 1702028
-
Variation of HbF and F-cell number with the G-gamma Xmn I (C-T) polymorphism in normal individuals.
Blood. 1992 Feb 1;79(3):832-3
PMID: 1370647
-
Fetal hemoglobin levels in sickle cell disease and normal individuals are partially controlled by an X-linked gene located at Xp22.2.
Blood. 1992 Aug 1;80(3):816-24
PMID: 1379090
-
The molecular basis of HPFH in a British family identified by heteroduplex formation.
Br J Haematol. 1993 May;84(1):106-10
PMID: 7687855
-
Detection of a major gene for heterocellular hereditary persistence of fetal hemoglobin after accounting for genetic modifiers.
Am J Hum Genet. 1994 Feb;54(2):214-28
PMID: 7508182
-
Genetic dissection of complex traits: guidelines for interpreting and reporting linkage results.
Nat Genet. 1995 Nov;11(3):241-7
PMID: 7581446
-
The VITESSE algorithm for rapid exact multilocus linkage analysis via genotype set-recoding and fuzzy inheritance.
Nat Genet. 1995 Dec;11(4):402-8
PMID: 7493020
-
Dissecting the loci controlling fetal haemoglobin production on chromosomes 11p and 6q by the regressive approach.
Nat Genet. 1996 Jan;12(1):58-64
PMID: 8528252
-
An STS-based map of the human genome.
Science. 1995 Dec 22;270(5244):1945-54
PMID: 8533086
-
A comprehensive genetic map of the human genome based on 5,264 microsatellites.
Nature. 1996 Mar 14;380(6570):152-4
PMID: 8600387
-
Beta-thalassaemia intermedia: is it possible consistently to predict phenotype from genotype?
Br J Haematol. 1998 Jan;100(1):70-8
PMID: 9450794
-
PedCheck: a program for identification of genotype incompatibilities in linkage analysis.
Am J Hum Genet. 1998 Jul;63(1):259-66
PMID: 9634505
-
Analysis of family resemblance. 3. Complex segregation of quantitative traits.
Am J Hum Genet. 1974 Jul;26(4):489-503
PMID: 4842773