DNA structure alterations are the ultimate source of genetic variations. Without them, evolution would be impossible. While they are essential for DNA diversity, defects in DNA synthesis can lead to numerous genetic diseases. Due to increasingly innovative technologies, our knowledge of the human genome and genetic diseases has grown considerably over the last few years, allowing us to detect another class of variants affecting the chromosomal structure. DNA sequence can be altered in multiple ways: DNA sequence changes by substitution, deletion, or duplication of some nucleotides; chromosomal structure alterations by deletion, duplication, translocation, and inversion, ranging in size from kilobases to mega bases; changes in the cell's gen...
A wide variety of different types of pathogenic mutation occur in the human genome: single base-pair...
Haemophilia A (HA) is an X-linked bleeding disorder caused by diverse mutations in the human coagula...
The diagnosis of haemophilia A and the identification of carriers has greatly improved with knowledg...
Haemophilia A (HA) is caused by widespread mutations in the factor VIII gene. Although genetic alter...
Haemophilia A is the most common inherited bleeding disorder caused by defects in the F8C gene that ...
Mutations at the factor VIII gene locus causing Haemophilia A have now been identified In many patie...
Hemophilia B is an X-chromosome-linked inherited bleeding disorder primarily affecting males, but th...
Haemophilia A (HA) is caused by widespread mutations in the factor VIII gene. The high spontaneous m...
Hemophilias A and B are the most common hereditary hemorrhagic disorders that are caused by a defici...
Molecular genetic analysis of inherited bleeding disorders has been practised for over 30 years. Tec...
The distal Xq28 region is very gene-rich, comprising a relatively large number of low-copy repeats (...
To date the only point mutations demonstrated to cause hemophilia are C to T transitions in Taq \ si...
Disease-causing alterations within the F8 gene were identified in 177 hemophilia A families of Portu...
Haemophilia A is a common X-linked recessive disorder caused by mutations in F8 leading to deficie...
Hemophilia is a common X-linked coagulation disorder due to deficiency of factor VIII. The factor VI...
A wide variety of different types of pathogenic mutation occur in the human genome: single base-pair...
Haemophilia A (HA) is an X-linked bleeding disorder caused by diverse mutations in the human coagula...
The diagnosis of haemophilia A and the identification of carriers has greatly improved with knowledg...
Haemophilia A (HA) is caused by widespread mutations in the factor VIII gene. Although genetic alter...
Haemophilia A is the most common inherited bleeding disorder caused by defects in the F8C gene that ...
Mutations at the factor VIII gene locus causing Haemophilia A have now been identified In many patie...
Hemophilia B is an X-chromosome-linked inherited bleeding disorder primarily affecting males, but th...
Haemophilia A (HA) is caused by widespread mutations in the factor VIII gene. The high spontaneous m...
Hemophilias A and B are the most common hereditary hemorrhagic disorders that are caused by a defici...
Molecular genetic analysis of inherited bleeding disorders has been practised for over 30 years. Tec...
The distal Xq28 region is very gene-rich, comprising a relatively large number of low-copy repeats (...
To date the only point mutations demonstrated to cause hemophilia are C to T transitions in Taq \ si...
Disease-causing alterations within the F8 gene were identified in 177 hemophilia A families of Portu...
Haemophilia A is a common X-linked recessive disorder caused by mutations in F8 leading to deficie...
Hemophilia is a common X-linked coagulation disorder due to deficiency of factor VIII. The factor VI...
A wide variety of different types of pathogenic mutation occur in the human genome: single base-pair...
Haemophilia A (HA) is an X-linked bleeding disorder caused by diverse mutations in the human coagula...
The diagnosis of haemophilia A and the identification of carriers has greatly improved with knowledg...