To access publisher's full text version of this article click on the hyperlink belowDe novo mutations (DNMs) cause a large proportion of severe rare diseases of childhood. DNMs that occur early may result in mosaicism of both somatic and germ cells. Such early mutations can cause recurrence of disease. We scanned 1,007 sibling pairs from 251 families and identified 878 DNMs shared by siblings (ssDNMs) at 448 genomic sites. We estimated DNM recurrence probability based on parental mosaicism, sharing of DNMs among siblings, parent-of-origin, mutation type and genomic position. We detected 57.2% of ssDNMs in the parental blood. The recurrence probability of a DNM decreases by 2.27% per year for paternal DNMs and 1.78% per year for maternal DNM...
Objective De novo mutations contribute significantly to severe early-onset genetic disorders. Even i...
Germline mutation detection from human DNA sequence data is challenging due to the rarity of such ev...
Germline mutations are a driving force behind genome evolution and genetic disease. We investigated ...
New human mutations are thought to originate in germ cells, thus making a recurrence of the same mut...
This is the author accepted manuscript. The final version is available from Nature via the DOI in th...
Item does not contain fulltextNew human mutations are thought to originate in germ cells, thus makin...
The genomes of individuals with severe, undiagnosed developmental disorders are enriched in damaging...
New human mutations are thought to originate in germ cells, thus making a recurrence of the same mut...
Human de novo single-nucleotide variation (SNV) rate is estimated to range between 0.82-1.70×10(-8) ...
We analyzed the whole genome sequences of a family of four, consisting of two siblings and their par...
The majority of children with Dravet syndrome (DS) are caused by de novo SCN1A mutations. To investi...
Aside from inheriting half of the genome of each of our parents, we are born with a small number of ...
Studies of de novo mutation (DNM) have typically excluded some of the most repetitive and complex re...
Objective De novo mutations contribute significantly to severe early-onset genetic disorders. Even i...
Germline mutation detection from human DNA sequence data is challenging due to the rarity of such ev...
Germline mutations are a driving force behind genome evolution and genetic disease. We investigated ...
New human mutations are thought to originate in germ cells, thus making a recurrence of the same mut...
This is the author accepted manuscript. The final version is available from Nature via the DOI in th...
Item does not contain fulltextNew human mutations are thought to originate in germ cells, thus makin...
The genomes of individuals with severe, undiagnosed developmental disorders are enriched in damaging...
New human mutations are thought to originate in germ cells, thus making a recurrence of the same mut...
Human de novo single-nucleotide variation (SNV) rate is estimated to range between 0.82-1.70×10(-8) ...
We analyzed the whole genome sequences of a family of four, consisting of two siblings and their par...
The majority of children with Dravet syndrome (DS) are caused by de novo SCN1A mutations. To investi...
Aside from inheriting half of the genome of each of our parents, we are born with a small number of ...
Studies of de novo mutation (DNM) have typically excluded some of the most repetitive and complex re...
Objective De novo mutations contribute significantly to severe early-onset genetic disorders. Even i...
Germline mutation detection from human DNA sequence data is challenging due to the rarity of such ev...
Germline mutations are a driving force behind genome evolution and genetic disease. We investigated ...