TY - JOUR
T1 - 2q31.1 microdeletion syndrome
T2 - redefining the associated clinical phenotype
AU - Dimitrov, Boyan
AU - Balikova, Irina
AU - de Ravel, Thomy
AU - Van Esch, Hilde
AU - De Smedt, Maryse
AU - Baten, Emiel
AU - Vermeesch, Joris Robert
AU - Bradinova, Irena
AU - Simeonov, Emil
AU - Devriendt, Koen
AU - Fryns, Jean-Pierre
AU - Debeer, Philippe
PY - 2011/2
Y1 - 2011/2
N2 - INTRODUCTION: The clinical phenotype of the chromosome 2q31 deletion syndrome consists of limb anomalies ranging from monodactylous ectrodactyly, brachydactyly and syndactyly to camptodactyly. Additional internal organ anomalies-for example, heart defects, ocular anomalies-may be present. Hemizygosity for HOXD13 and EVX2 genes was thought to cause the observed skeletal defects. Recently, based on the phenotype of patients with overlapping 2q31 interstitial deletions, a new SHFM5 locus was proposed, proximal to the HOXD cluster, between EVX2 and marker D2S294. DLX1 and DLX2 haploinsufficiency was suggested as the most plausible explanation for the observed SHFM-like limb anomalies in these cases.METHODS AND RESULTS: Five unique, interstitial 2q31 deletion patients were selected to further characterise the 2q31 region and to establish a genotype/phenotype correlation map. The size of the deletions was delineated with a chromosome 2 specific tiling path bacterial artificial chromosome (BAC) array. The clinical and molecular data for this group of patients were compared to others in the literature. A common locus for the observed skeletal anomalies, including the HOXD genes and surrounding regulatory sequences, was delineated. These results correlate with recently published studies in animal models. In addition, a critical region for the facial gestalt of the 2q31.1 microdeletion syndrome was delineated.CONCLUSIONS: These results reinforce the hypothesis that the variable skeletal phenotype in 2q31 deletion patients is a result of hemizygosity for the HOXD genes and that the 2q31.1 microdeletion syndrome is a well defined and clinically recognisable phenotype.
AB - INTRODUCTION: The clinical phenotype of the chromosome 2q31 deletion syndrome consists of limb anomalies ranging from monodactylous ectrodactyly, brachydactyly and syndactyly to camptodactyly. Additional internal organ anomalies-for example, heart defects, ocular anomalies-may be present. Hemizygosity for HOXD13 and EVX2 genes was thought to cause the observed skeletal defects. Recently, based on the phenotype of patients with overlapping 2q31 interstitial deletions, a new SHFM5 locus was proposed, proximal to the HOXD cluster, between EVX2 and marker D2S294. DLX1 and DLX2 haploinsufficiency was suggested as the most plausible explanation for the observed SHFM-like limb anomalies in these cases.METHODS AND RESULTS: Five unique, interstitial 2q31 deletion patients were selected to further characterise the 2q31 region and to establish a genotype/phenotype correlation map. The size of the deletions was delineated with a chromosome 2 specific tiling path bacterial artificial chromosome (BAC) array. The clinical and molecular data for this group of patients were compared to others in the literature. A common locus for the observed skeletal anomalies, including the HOXD genes and surrounding regulatory sequences, was delineated. These results correlate with recently published studies in animal models. In addition, a critical region for the facial gestalt of the 2q31.1 microdeletion syndrome was delineated.CONCLUSIONS: These results reinforce the hypothesis that the variable skeletal phenotype in 2q31 deletion patients is a result of hemizygosity for the HOXD genes and that the 2q31.1 microdeletion syndrome is a well defined and clinically recognisable phenotype.
KW - Abnormalities, Multiple/genetics
KW - Chromosome Deletion
KW - Chromosome Disorders/genetics
KW - Chromosomes, Artificial, Bacterial
KW - Chromosomes, Human, Pair 2/genetics
KW - Comparative Genomic Hybridization
KW - Female
KW - Hemizygote
KW - Homeodomain Proteins/genetics
KW - Humans
KW - In Situ Hybridization, Fluorescence
KW - Infant, Newborn
KW - Limb Deformities, Congenital/genetics
KW - Male
KW - Phenotype
KW - Syndrome
KW - Transcription Factors/genetics
U2 - 10.1136/jmg.2010.079491
DO - 10.1136/jmg.2010.079491
M3 - Article
C2 - 21068127
SN - 0022-2593
VL - 48
SP - 98
EP - 104
JO - Journal of Medical Genetics
JF - Journal of Medical Genetics
IS - 2
ER -