Whole genome sequencing (WGS) allows the identification of human knockouts (HKOs), individuals in whom loss of function (LoF) variants disrupt both alleles of a given gene. HKOs are a valuable model for understanding the consequences of genes function loss. Naturally occurring biallelic LoF variants tend to be significantly enriched in "genetic isolates," making these populations specifically suited for HKO studies. In this work, a meticulous WGS data analysis combined with an in-depth phenotypic assessment of 947 individuals from three Italian genetic isolates led to the identification of ten biallelic LoF variants in ten OMIM genes associated with known autosomal recessive diseases. Notably, only a minority of the identified HKOs (C7, F12...
Examining complete gene knockouts within a viable organism can inform on gene function. We sequenced...
The use of autozygosity as a mapping tool in the search for autosomal recessive disease genes is wel...
Genome-sequencing studies indicate that all humans carry many genetic variants predicted to cause lo...
Whole genome sequencing (WGS) allows the identification of human knockouts (HKOs), individuals in wh...
Genetic variants predicted to seriously disrupt the function of human protein-coding genes—so-called...
Every human carries at least a hundred loss-of-function (LoF) variants predicted to severely disrupt...
Loss-of-function mutations cause many mendelian diseases. Here we aimed to create a catalog of autos...
A major goal of biomedicine is to understand the function of every gene in the human genome. Loss-of...
A major goal of biomedicine is to understand the function of every gene in the human genome. Loss-of...
Consanguineous offspring have elevated levels of homozygosity. Autozygous stretches within their gen...
International audienceHumans homozygous or hemizygous for variants predicted to cause a loss of func...
Purpose: Genome-wide association studies (GWAS) have been instrumental to our understanding of the g...
<div><p>The use of autozygosity as a mapping tool in the search for autosomal recessive disease gene...
Genome-sequencing studies indicate that all humans carry many genetic variants predicted to cause lo...
Genome-sequencing studies indicate that all humans carry many genetic variants predicted to cause lo...
Examining complete gene knockouts within a viable organism can inform on gene function. We sequenced...
The use of autozygosity as a mapping tool in the search for autosomal recessive disease genes is wel...
Genome-sequencing studies indicate that all humans carry many genetic variants predicted to cause lo...
Whole genome sequencing (WGS) allows the identification of human knockouts (HKOs), individuals in wh...
Genetic variants predicted to seriously disrupt the function of human protein-coding genes—so-called...
Every human carries at least a hundred loss-of-function (LoF) variants predicted to severely disrupt...
Loss-of-function mutations cause many mendelian diseases. Here we aimed to create a catalog of autos...
A major goal of biomedicine is to understand the function of every gene in the human genome. Loss-of...
A major goal of biomedicine is to understand the function of every gene in the human genome. Loss-of...
Consanguineous offspring have elevated levels of homozygosity. Autozygous stretches within their gen...
International audienceHumans homozygous or hemizygous for variants predicted to cause a loss of func...
Purpose: Genome-wide association studies (GWAS) have been instrumental to our understanding of the g...
<div><p>The use of autozygosity as a mapping tool in the search for autosomal recessive disease gene...
Genome-sequencing studies indicate that all humans carry many genetic variants predicted to cause lo...
Genome-sequencing studies indicate that all humans carry many genetic variants predicted to cause lo...
Examining complete gene knockouts within a viable organism can inform on gene function. We sequenced...
The use of autozygosity as a mapping tool in the search for autosomal recessive disease genes is wel...
Genome-sequencing studies indicate that all humans carry many genetic variants predicted to cause lo...