The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of congenital cardiovascular defects(1), It is the genetic basis of DiGeorge syndrome and causes the most common deletion syndrome in humans(2). Because the deleted region is largely conserved in the mouse, we were able to engineer a chromosome deletion (Df1) spanning a segment of the murine region homologous to the human deleted region. Here we describe heterozygously deleted (Df1/+) mice with cardiovascular abnormalities of the same type as those associated with del22q11; we have traced the embryological origin of these abnormalities to defective development of the fourth pharyngeal arch arteries. Genetic complementation of the deletion using a chr...
We have constructed a comparative map in mouse of the critical region of human 22q11 deleted in DiGe...
Several constitutional chromosomal rearrangements occur on human chromosome 17. Patients who carry c...
We have constructed a comparative map in mouse of the critical region of human 22q11 deleted in DiGe...
The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of conge...
The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of conge...
The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of conge...
The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of conge...
The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of conge...
The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of conge...
Heterozygous deletions within human chromosome 22q11.2 are the genetic basis of DiGeorge syndrome (D...
Heterozygous deletions within human chromosome 22q11.2 are the genetic basis of DiGeorge syndrome (D...
Heterozygous deletions within human chromosome 22q11.2 are the genetic basis of DiGeorge syndrome (D...
Heterozygous deletions within human chromosome 22q11.2 are the genetic basis of DiGeorge syndrome (D...
Several constitutional chromosomal rearrangements occur on human chromosome 17. Patients who carry c...
We have constructed a comparative map in mouse of the critical region of human 22q11 deleted in DiGe...
We have constructed a comparative map in mouse of the critical region of human 22q11 deleted in DiGe...
Several constitutional chromosomal rearrangements occur on human chromosome 17. Patients who carry c...
We have constructed a comparative map in mouse of the critical region of human 22q11 deleted in DiGe...
The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of conge...
The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of conge...
The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of conge...
The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of conge...
The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of conge...
The heterozygous chromosome deletion within the band 22q11 (del22q11) is an important cause of conge...
Heterozygous deletions within human chromosome 22q11.2 are the genetic basis of DiGeorge syndrome (D...
Heterozygous deletions within human chromosome 22q11.2 are the genetic basis of DiGeorge syndrome (D...
Heterozygous deletions within human chromosome 22q11.2 are the genetic basis of DiGeorge syndrome (D...
Heterozygous deletions within human chromosome 22q11.2 are the genetic basis of DiGeorge syndrome (D...
Several constitutional chromosomal rearrangements occur on human chromosome 17. Patients who carry c...
We have constructed a comparative map in mouse of the critical region of human 22q11 deleted in DiGe...
We have constructed a comparative map in mouse of the critical region of human 22q11 deleted in DiGe...
Several constitutional chromosomal rearrangements occur on human chromosome 17. Patients who carry c...
We have constructed a comparative map in mouse of the critical region of human 22q11 deleted in DiGe...