Somatic and germinal mosaicism for the steroid sulfatase gene deletion in a steroid sulfatase deficiency carrier. 2002

Sergio Alberto Cuevas-Covarrubias, and Ana Luisa Jiménez-Vaca, and Luz María González-Huerta, and Margarita Valdes-Flores, and Maria Del Refugio Rivera-Vega, and Guadalupe Maya-Nunez, and Susana H Kofman-Alfaro
Servicio de Genetica, Hospital General de Mexico, Facultad de Medicina, UNAM, Mexico, DF, México. sergioa@servidor.unam.mx

Steroid sulfatase deficiency results in X-linked ichthyosis, an inborn error of metabolism in which the principal molecular defect is the complete deletion of the steroid sulfatase gene and flanking markers. Mosaicism for the steroid sulfatase gene has not yet been reported in X-linked ichthyosis. In this study we describe an X-linked ichthyosis patient with complete deletion of the steroid sulfatase gene and his mother with somatic and germinal mosaicism for this molecular defect. The family (X-linked ichthyosis patient, grandmother, mother, and sister) was analyzed through steroid sulfatase enzyme assay, polymerase chain reaction, DNA markers, and fluorescence in situ hybridization of the steroid sulfatase gene. Steroid sulfatase activity was undetectable in the X-linked ichthyosis patient, very low in the mother, and normal in the grandmother and sister. The X-linked ichthyosis patient showed a 2 Mb deletion of the steroid sulfatase gene and flanking regions from 5'DXS1139 to 3'DXF22S1. The mother showed one copy of the steroid sulfatase gene in 98.5% of oral cells and in 80% of leukocytes. The grandmother and sister showed two copies of the steroid sulfatase gene. The origin of the X chromosome with the deletion of the steroid sulfatase gene corresponded to the grandfather of the proband. We report the first case of somatic and germinal mosaicism of the steroid sulfatase gene in an X-linked ichthyosis carrier and propose DNA slippage as the most plausible mechanism in the genesis of this mosaicism.

UI MeSH Term Description Entries
D009030 Mosaicism The occurrence in an individual of two or more cell populations of different chromosomal constitutions, derived from a single ZYGOTE, as opposed to CHIMERISM in which the different cell populations are derived from more than one zygote.
D005260 Female Females
D006579 Heterozygote An individual having different alleles at one or more loci regarding a specific character. Carriers, Genetic,Genetic Carriers,Carrier, Genetic,Genetic Carrier,Heterozygotes
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D001192 Arylsulfatases Enzymes that catalyze the hydrolysis of a phenol sulfate to yield a phenol and sulfate. Arylsulfatase A, B, and C have been separated. A deficiency of arylsulfatases is one of the causes of metachromatic leukodystrophy (LEUKODYSTROPHY, METACHROMATIC). EC 3.1.6.1. Arylsulfatase,Arylsulfate Sulfohydrolase,Arylsulfate Sulfohydrolases,Arylsulphatase,Arylsulphatases,Pseudo Arylsulfatase A,Sulfohydrolase, Arylsulfate
D016114 Ichthyosis, X-Linked Chronic form of ichthyosis that is inherited as a sex-linked recessive trait carried on the X-chromosome and transmitted to the male offspring. It is characterized by severe scaling, especially on the extremities, and is associated with steroid sulfatase deficiency. Ichthyosis, Sex-Linked,Steroid Sulfatase Deficiency Disease,Placental Steroid Sulfatase Deficiency,Steroid Sulfatase Deficiency,Deficiencies, Steroid Sulfatase,Deficiency, Steroid Sulfatase,Ichthyoses, Sex-Linked,Ichthyoses, X-Linked,Ichthyosis, Sex Linked,Ichthyosis, X Linked,Steroid Sulfatase Deficiencies,Sulfatase Deficiencies, Steroid,Sulfatase Deficiency, Steroid
D017353 Gene Deletion A genetic rearrangement through loss of segments of DNA or RNA, bringing sequences which are normally separated into close proximity. This deletion may be detected using cytogenetic techniques and can also be inferred from the phenotype, indicating a deletion at one specific locus. Deletion, Gene,Deletions, Gene,Gene Deletions
D043266 Steryl-Sulfatase An arylsulfatase with high specificity towards sulfated steroids. Defects in this enzyme are the cause of ICHTHYOSIS, X-LINKED. 3 Beta-Hydroxysteroid Sulfate Sulfatase,Arylsulfatase C,Arylsulphatase C,Cholesterol Sulfatase,Cholesterol Sulfate Sulfatase,DHEA Sulfatase,Dehydroepiandrosterone Sulfate Sulfatase,Estrone Sulfate Sulfatase,Estrone Sulfate Sulfohydrolase,Steroid Sulfatase,Steroid Sulfohydrolase,Steroid Sulphatase,Sterol Sulfatase,Sterylsulfatase,3 Beta Hydroxysteroid Sulfate Sulfatase,Steryl Sulfatase,Sulfatase, Cholesterol,Sulfatase, Cholesterol Sulfate,Sulfatase, DHEA,Sulfatase, Dehydroepiandrosterone Sulfate,Sulfatase, Estrone Sulfate,Sulfatase, Steroid,Sulfatase, Sterol,Sulfate Sulfatase, Cholesterol,Sulfate Sulfatase, Dehydroepiandrosterone,Sulfate Sulfatase, Estrone,Sulfate Sulfohydrolase, Estrone,Sulfohydrolase, Estrone Sulfate,Sulfohydrolase, Steroid,Sulphatase, Steroid

Related Publications

Sergio Alberto Cuevas-Covarrubias, and Ana Luisa Jiménez-Vaca, and Luz María González-Huerta, and Margarita Valdes-Flores, and Maria Del Refugio Rivera-Vega, and Guadalupe Maya-Nunez, and Susana H Kofman-Alfaro
March 1995, American journal of medical genetics,
Sergio Alberto Cuevas-Covarrubias, and Ana Luisa Jiménez-Vaca, and Luz María González-Huerta, and Margarita Valdes-Flores, and Maria Del Refugio Rivera-Vega, and Guadalupe Maya-Nunez, and Susana H Kofman-Alfaro
February 1992, European journal of pediatrics,
Sergio Alberto Cuevas-Covarrubias, and Ana Luisa Jiménez-Vaca, and Luz María González-Huerta, and Margarita Valdes-Flores, and Maria Del Refugio Rivera-Vega, and Guadalupe Maya-Nunez, and Susana H Kofman-Alfaro
January 1994, Human mutation,
Sergio Alberto Cuevas-Covarrubias, and Ana Luisa Jiménez-Vaca, and Luz María González-Huerta, and Margarita Valdes-Flores, and Maria Del Refugio Rivera-Vega, and Guadalupe Maya-Nunez, and Susana H Kofman-Alfaro
August 1977, Pediatric research,
Sergio Alberto Cuevas-Covarrubias, and Ana Luisa Jiménez-Vaca, and Luz María González-Huerta, and Margarita Valdes-Flores, and Maria Del Refugio Rivera-Vega, and Guadalupe Maya-Nunez, and Susana H Kofman-Alfaro
September 2016, European journal of medical genetics,
Sergio Alberto Cuevas-Covarrubias, and Ana Luisa Jiménez-Vaca, and Luz María González-Huerta, and Margarita Valdes-Flores, and Maria Del Refugio Rivera-Vega, and Guadalupe Maya-Nunez, and Susana H Kofman-Alfaro
August 1999, Blood,
Sergio Alberto Cuevas-Covarrubias, and Ana Luisa Jiménez-Vaca, and Luz María González-Huerta, and Margarita Valdes-Flores, and Maria Del Refugio Rivera-Vega, and Guadalupe Maya-Nunez, and Susana H Kofman-Alfaro
March 2005, European journal of human genetics : EJHG,
Sergio Alberto Cuevas-Covarrubias, and Ana Luisa Jiménez-Vaca, and Luz María González-Huerta, and Margarita Valdes-Flores, and Maria Del Refugio Rivera-Vega, and Guadalupe Maya-Nunez, and Susana H Kofman-Alfaro
October 2009, Prenatal diagnosis,
Sergio Alberto Cuevas-Covarrubias, and Ana Luisa Jiménez-Vaca, and Luz María González-Huerta, and Margarita Valdes-Flores, and Maria Del Refugio Rivera-Vega, and Guadalupe Maya-Nunez, and Susana H Kofman-Alfaro
November 1985, Obstetrics and gynecology,
Sergio Alberto Cuevas-Covarrubias, and Ana Luisa Jiménez-Vaca, and Luz María González-Huerta, and Margarita Valdes-Flores, and Maria Del Refugio Rivera-Vega, and Guadalupe Maya-Nunez, and Susana H Kofman-Alfaro
February 1997, Human genetics,
Copied contents to your clipboard!