Haplotype block and superblock structures of the alpha1-adrenergic receptor genes reveal echoes from the chromosomal past
- 16 October 2004
- journal article
- Published by Springer Nature in Molecular Genetics and Genomics
- Vol. 272 (5) , 519-529
- https://doi.org/10.1007/s00438-004-1074-9
Abstract
A significant proportion of the human genome is contained within haplotype blocks across which pairwise linkage disequilibrium (LD) is very high. However, LD is also often high between markers at more remote distances, and within different haplotype blocks. Here, we evaluate the origins of haplotype block structure in the three genes for alpha1 adrenergic receptors (alpha1-AR) in the human genome ( ADRA1A, ADRA1B and ADRA1D) by genotyping dense single-nucleotide polymorphism (SNP) marker maps, and show that LD signals between distant markers are due to the presence of extended haplotype superblocks in individuals with ancient chromosomes which have escaped historic recombination. ARs mediate the physiological effects of epinephrine and norepinephrine, and are targets of many therapeutic drugs. This work has identified haplotype backgrounds of alpha1-AR missense variants, haplotype block structures in US Caucasians and African Americans, and haplotype tag SNPs for each block, and we present strong evidence for ancient haplotype block superstructure at these genes which has been partially disrupted by recombination, and evidence for reinstatement of linkage disequilibrium by subsequent recombination events. ADRA1A is comprised of four haplotype blocks in US Caucasians, while in African Americans Block 1 is split. ADRA1B has four blocks in US Caucasians, but in African Americans only the first two blocks are present. ADRA1D has two blocks in US Caucasians, and the first block is replaced by two smaller blocks in African Americans. For both ADRA1A and ADRA1B, haplotype superstructures may represent a novel, higher-level hierarchy in the human genome, which may reduce redundancy of testing by further aggregation of genotype data.Keywords
This publication has 29 references indexed in Scilit:
- Systemic Overexpression of the α1B‐Adrenergic Receptor in Mice: An Animal Model of EpilepsyEpilepsia, 2002
- Role of the α 1D - Adrenegric Receptor in the Development of Salt-Induced HypertensionHypertension, 2002
- The Structure of Haplotype Blocks in the Human GenomeScience, 2002
- MEK1/2–ERK1/2 Mediates α1-Adrenergic Receptor-stimulated Hypertrophy in Adult Rat Ventricular MyocytesJournal of Molecular and Cellular Cardiology, 2001
- A study of alpha-adrenoceptor gene polymorphisms and Alzheimer diseaseJournal Of Neural Transmission-Parkinsons Disease and Dementia Section, 2001
- α1-Adrenoceptor Subtypes Differentially Couple to Growth Promotion and Inhibition in Chinese Hamster Ovary CellsBiochemical and Biophysical Research Communications, 2000
- ??1A-Adrenergic receptor polymorphismPharmacogenetics, 1999
- The MEKK-JNK Pathway Is Stimulated by α1-Adrenergic Receptor and Ras Activation and Is Associated with in Vitro and in Vivo Cardiac HypertrophyJournal of Biological Chemistry, 1997
- Protein kinase C-dependent activation of cytosolic phospholipase A2 and mitogen-activated protein kinase by alpha 1-adrenergic receptors in Madin-Darby canine kidney cells.Journal of Clinical Investigation, 1996
- A two-allele Pstl RFLP for the alpha-1C adrenergic receptor gene (ADRA1C)Human Molecular Genetics, 1992