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61
result(s) for
"Gardner, Eugene J."
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Genomic Diagnosis of Rare Pediatric Disease in the United Kingdom and Ireland
by
Hurles, Matthew E.
,
Andrews, Katrina
,
Kaplanis, Joanna
in
Algorithms
,
Child
,
Child Behavior Disorders - diagnosis
2023
The DDD study recruited more than 13,500 families with probands with severe, probably monogenic disorders in the United Kingdom and Ireland and obtained a genetic diagnosis in approximately 41% of probands.
Journal Article
Saturation genome editing of DDX3X clarifies pathogenicity of germline and somatic variation
by
Adams, David J.
,
Radford, Elizabeth J.
,
Andersson, Malin H. L.
in
13/106
,
49/47
,
631/208/191/1908
2023
Loss-of-function of
DDX3X
is a leading cause of neurodevelopmental disorders (NDD) in females.
DDX3X
is also a somatically mutated cancer driver gene proposed to have tumour promoting and suppressing effects. We perform saturation genome editing of
DDX3X
, testing in vitro the functional impact of 12,776 nucleotide variants. We identify 3432 functionally abnormal variants, in three distinct classes. We train a machine learning classifier to identify functionally abnormal variants of NDD-relevance. This classifier has at least 97% sensitivity and 99% specificity to detect variants pathogenic for NDD, substantially out-performing in silico predictors, and resolving up to 93% of variants of uncertain significance. Moreover, functionally-abnormal variants can account for almost all of the excess nonsynonymous
DDX3X
somatic mutations seen in
DDX3X
-driven cancers. Systematic maps of variant effects generated in experimentally tractable cell types have the potential to transform clinical interpretation of both germline and somatic disease-associated variation.
Pathogenic variants of
DDX3X
are associated with neurodevelopmental disorders (NDD) and cancer. Here, the authors perform saturation genome editing of
DDX3X
to test the functional impact of 12,776 variants, develop a machine learning classifier to identify variants relevant for NDD, and show that
DDX3X
predominantly acts as a tumour suppressor in cancer.
Journal Article
Shared and distinct genetic etiologies for different types of clonal hematopoiesis
2023
Clonal hematopoiesis (CH)—age-related expansion of mutated hematopoietic clones—can differ in frequency and cellular fitness by CH type (e.g., mutations in driver genes (CHIP), gains/losses and copy-neutral loss of chromosomal segments (mCAs), and loss of sex chromosomes). Co-occurring CH raises questions as to their origin, selection, and impact. We integrate sequence and genotype array data in up to 482,378 UK Biobank participants to demonstrate shared genetic architecture across CH types. Our analysis suggests a cellular evolutionary trade-off between different types of CH, with LOY occurring at lower rates in individuals carrying mutations in established CHIP genes. We observed co-occurrence of CHIP and mCAs with overlap at
TET2
,
DNMT3A
, and
JAK2
, in which CHIP precedes mCA acquisition. Furthermore, individuals carrying overlapping CH had high risk of future lymphoid and myeloid malignancies. Finally, we leverage shared genetic architecture of CH traits to identify 15 novel loci associated with leukemia risk.
Types of clonal hematopoiesis (CH) differ in frequency and fitness. These findings uncover shared genetic architecture, suggest evolutionary trade-offs between CH types, and detail elevated leukemia risk in individuals with overlapping types of CH.
Journal Article
Contribution of retrotransposition to developmental disorders
2019
Mobile genetic Elements (MEs) are segments of DNA which can copy themselves and other transcribed sequences through the process of retrotransposition (RT). In humans several disorders have been attributed to RT, but the role of RT in severe developmental disorders (DD) has not yet been explored. Here we identify RT-derived events in 9738 exome sequenced trios with DD-affected probands. We ascertain 9 de novo MEs, 4 of which are likely causative of the patient’s symptoms (0.04%), as well as 2 de novo gene retroduplications. Beyond identifying likely diagnostic RT events, we estimate genome-wide germline ME mutation rate and selective constraint and demonstrate that coding RT events have signatures of purifying selection equivalent to those of truncating mutations. Overall, our analysis represents a comprehensive interrogation of the impact of retrotransposition on protein coding genes and a framework for future evolutionary and disease studies.
Retrotransposition events have been linked to some human disorders. Here, Gardner et al. systematically search for mobile genetic elements (ME) in trio whole exome-sequencing datasets and ascertain 9 de novo MEs and further estimate genome-wide germline ME burden and constraint.
Journal Article
Rare variant associations with birth weight identify genes involved in adipose tissue regulation, placental function and insulin-like growth factor signalling
2025
Investigating the genetic factors influencing human birth weight may lead to biological insights into fetal growth and long-term health. We report analyses of rare variants that impact birth weight when carried by either fetus or mother, using whole exome sequencing data in up to 234,675 participants. Rare protein-truncating and deleterious missense variants are collapsed to perform gene burden tests. We identify 9 genes; 5 with fetal-only effects on birth weight, 1 with maternal-only effects, 3 with both, and observe directionally concordant associations in an independent sample. Four of the genes were previously implicated by GWAS of birth weight.
IGF1R
and
PAPPA2
(fetal and maternal-acting) have known roles in insulin-like growth factor bioavailability and signalling.
PPARG, INHBE
and
ACVR1C
(fetal-acting) are involved in adipose tissue regulation, and the latter two also show associations with favourable adiposity patterns in adults. We highlight the dual role of
PPARG
(fetal-acting) in adipocyte differentiation and placental angiogenesis.
NOS3
(fetal and maternal-acting)
, NRK
(fetal), and
ADAMTS8
(maternal-acting) have been implicated in placental function and hypertension. To conclude, our analysis of rare coding variants identifies regulators of fetal adipose tissue and fetoplacental angiogenesis as determinants of birth weight, and further evidence for the role of insulin-like growth factors.
An exome-wide association study for fetal and maternal rare deleterious variants affecting the normal variation in birth weight identifies nine genes involved in adipose tissue regulation, placental function and insulin-like growth factor signalling.
Journal Article
Reduced reproductive success is associated with selective constraint on human genes
2022
Genome-wide sequencing of human populations has revealed substantial variation among genes in the intensity of purifying selection acting on damaging genetic variants
1
. Although genes under the strongest selective constraint are highly enriched for associations with Mendelian disorders, most of these genes are not associated with disease and therefore the nature of the selection acting on them is not known
2
. Here we show that genetic variants that damage these genes are associated with markedly reduced reproductive success, primarily owing to increased childlessness, with a stronger effect in males than in females. We present evidence that increased childlessness is probably mediated by genetically associated cognitive and behavioural traits, which may mean that male carriers are less likely to find reproductive partners. This reduction in reproductive success may account for 20% of purifying selection against heterozygous variants that ablate protein-coding genes. Although this genetic association may only account for a very minor fraction of the overall likelihood of being childless (less than 1%), especially when compared to more influential sociodemographic factors, it may influence how genes evolve over time.
Human genetic variants that impair genes that are intolerant of damaging genetic variation are associated with lower reproductive success that is probably mediated by genetically associated cognitive and behavioural traits, particularly in males.
Journal Article
Penetrance of pathogenic genetic variants associated with premature ovarian insufficiency
by
Day, Felix R.
,
Wood, Andrew R.
,
Prague, Julia K.
in
631/208/2489/1512
,
692/163/2743/2730
,
Adult
2023
Premature ovarian insufficiency (POI) affects 1% of women and is a leading cause of infertility. It is often considered to be a monogenic disorder, with pathogenic variants in ~100 genes described in the literature. We sought to systematically evaluate the penetrance of variants in these genes using exome sequence data in 104,733 women from the UK Biobank, 2,231 (1.14%) of whom reported at natural menopause under the age of 40 years. We found limited evidence to support any previously reported autosomal dominant effect. For nearly all heterozygous effects on previously reported POI genes, we ruled out even modest penetrance, with 99.9% (13,699 out of 13,708) of all protein-truncating variants found in reproductively healthy women. We found evidence of haploinsufficiency effects in several genes, including
TWNK
(1.54 years earlier menopause,
P
= 1.59 × 10
−6
) and
SOHLH2
(3.48 years earlier menopause,
P
= 1.03 × 10
−4
). Collectively, our results suggest that, for the vast majority of women, POI is not caused by autosomal dominant variants either in genes previously reported or currently evaluated in clinical diagnostic panels. Our findings, plus previous studies, suggest that most POI cases are likely oligogenic or polygenic in nature, which has important implications for future clinical genetic studies, and genetic counseling for families affected by POI.
Using exome sequencing data from 104,733 postmenopausal women in the UK Biobank, an analysis of 105 gene variants previously reported as associated with premature ovarian insufficiency reveals that most cases are not monogenic.
Journal Article
Genetic links between ovarian ageing, cancer risk and de novo mutation rates
2024
Human genetic studies of common variants have provided substantial insight into the biological mechanisms that govern ovarian ageing
1
. Here we report analyses of rare protein-coding variants in 106,973 women from the UK Biobank study, implicating genes with effects around five times larger than previously found for common variants (
ETAA1
,
ZNF518A
,
PNPLA8
,
PALB2
and
SAMHD1
). The
SAMHD1
association reinforces the link between ovarian ageing and cancer susceptibility
1
, with damaging germline variants being associated with extended reproductive lifespan and increased all-cause cancer risk in both men and women. Protein-truncating variants in
ZNF518A
are associated with shorter reproductive lifespan—that is, earlier age at menopause (by 5.61 years) and later age at menarche (by 0.56 years). Finally, using 8,089 sequenced trios from the 100,000 Genomes Project (100kGP), we observe that common genetic variants associated with earlier ovarian ageing associate with an increased rate of maternally derived de novo mutations. Although we were unable to replicate the finding in independent samples from the deCODE study, it is consistent with the expected role of DNA damage response genes in maintaining the genetic integrity of germ cells. This study provides evidence of genetic links between age of menopause and cancer risk.
Analyses focusing on protein-truncating variants from 106,973 women from in the UK Biobank identify variants in genes that reinforce the link between reproductive lifespan in women and cancer risk in both sexes.
Journal Article
Protein-truncating variants in BSN are associated with severe adult-onset obesity, type 2 diabetes and fatty liver disease
by
Berumen-Campos, Jaime
,
Chukanova, Maria
,
Lawler, Katherine
in
631/208/205/2138
,
692/308/2056
,
692/699/2743/393
2024
Obesity is a major risk factor for many common diseases and has a substantial heritable component. To identify new genetic determinants, we performed exome-sequence analyses for adult body mass index (BMI) in up to 587,027 individuals. We identified rare loss-of-function variants in two genes (
BSN
and
APBA1
) with effects substantially larger than those of well-established obesity genes such as
MC4R
. In contrast to most other obesity-related genes, rare variants in
BSN
and
APBA1
were not associated with normal variation in childhood adiposity. Furthermore,
BSN
protein-truncating variants (PTVs) magnified the influence of common genetic variants associated with BMI, with a common variant polygenic score exhibiting an effect twice as large in
BSN
PTV carriers than in noncarriers. Finally, we explored the plasma proteomic signatures of
BSN
PTV carriers as well as the functional consequences of
BSN
deletion in human induced pluripotent stem cell-derived hypothalamic neurons. Collectively, our findings implicate degenerative processes in synaptic function in the etiology of adult-onset obesity.
Analyses of whole-exome sequencing data identify rare loss-of-function variants in
BSN
associated with adult-onset obesity, type 2 diabetes and fatty liver disease, with stronger effect sizes than those observed for variants in known obesity risk genes such as
MC4R.
Journal Article
Federated analysis of autosomal recessive coding variants in 29,745 developmental disorder patients from diverse populations
by
Retterer, Kyle
,
Sheridan, Eamonn
,
Hurles, Matthew E.
in
631/208/212
,
631/208/2489
,
631/208/366
2024
Autosomal recessive coding variants are well-known causes of rare disorders. We quantified the contribution of these variants to developmental disorders in a large, ancestrally diverse cohort comprising 29,745 trios, of whom 20.4% had genetically inferred non-European ancestries. The estimated fraction of patients attributable to exome-wide autosomal recessive coding variants ranged from ~2–19% across genetically inferred ancestry groups and was significantly correlated with average autozygosity. Established autosomal recessive developmental disorder-associated (ARDD) genes explained 84.0% of the total autosomal recessive coding burden, and 34.4% of the burden in these established genes was explained by variants not already reported as pathogenic in ClinVar. Statistical analyses identified two novel ARDD genes:
KBTBD2
and
ZDHHC16
. This study expands our understanding of the genetic architecture of developmental disorders across diverse genetically inferred ancestry groups and suggests that improving strategies for interpreting missense variants in known ARDD genes may help diagnose more patients than discovering the remaining genes.
Analysis of autosomal recessive coding variants in 29,745 trios from the DDD study and GeneDx provides insights into the genetic architecture of developmental disorders across ancestrally diverse populations.
Journal Article