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1.
Pharmacogenomics J ; 21(5): 594-607, 2021 10.
Article in English | MEDLINE | ID: mdl-34045667

ABSTRACT

Recombinant human growth hormone (r-hGH) is used as a therapeutic agent for disorders of growth including growth hormone deficiency (GHD) and Turner syndrome (TS). Treatment is costly and current methods to model response are inexact. GHD (n = 71) and TS patients (n = 43) were recruited to study response to r-hGH over 5 years. Analysis was performed using 1219 genetic markers and baseline (pre-treatment) blood transcriptome. Random forest was used to determine predictive value of transcriptomic data associated with growth response. No genetic marker passed the stringency criteria for prediction. However, we identified an identical set of genes in both GHD and TS whose expression could be used to classify therapeutic response to r-hGH with a high accuracy (AUC > 0.9). Combining transcriptomic markers with clinical phenotype was shown to significantly reduce predictive error. This work could be translated into a single genomic test linked to a prediction algorithm to improve clinical management. Trial registration numbers: NCT00256126 and NCT00699855.


Subject(s)
Human Growth Hormone/therapeutic use , Transcriptome/genetics , Child , Female , Gene Expression Profiling/methods , Genetic Markers/genetics , Growth Disorders/drug therapy , Growth Disorders/genetics , Human Growth Hormone/deficiency , Humans , Male , Prospective Studies , Treatment Outcome , Turner Syndrome/drug therapy , Turner Syndrome/genetics
2.
Nat Genet ; 39(1): 75-9, 2007 Jan.
Article in English | MEDLINE | ID: mdl-17143282

ABSTRACT

Noonan syndrome is a developmental disorder characterized by short stature, facial dysmorphia, congenital heart defects and skeletal anomalies. Increased RAS-mitogen-activated protein kinase (MAPK) signaling due to PTPN11 and KRAS mutations causes 50% of cases of Noonan syndrome. Here, we report that 22 of 129 individuals with Noonan syndrome without PTPN11 or KRAS mutation have missense mutations in SOS1, which encodes a RAS-specific guanine nucleotide exchange factor. SOS1 mutations cluster at codons encoding residues implicated in the maintenance of SOS1 in its autoinhibited form. In addition, ectopic expression of two Noonan syndrome-associated mutants induces enhanced RAS and ERK activation. The phenotype associated with SOS1 defects lies within the Noonan syndrome spectrum but is distinctive, with a high prevalence of ectodermal abnormalities but generally normal development and linear growth. Our findings implicate gain-of-function mutations in a RAS guanine nucleotide exchange factor in disease for the first time and define a new mechanism by which upregulation of the RAS pathway can profoundly change human development.


Subject(s)
Noonan Syndrome/genetics , SOS1 Protein/genetics , Animals , COS Cells , Chlorocebus aethiops , DNA Mutational Analysis/methods , Genetic Testing , Humans , Models, Molecular , Mutation , SOS1 Protein/chemistry , Transfection
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