The new dysmorphology: application of insights from basic developmental biology to the understanding of human birth defects.
- 12 September 1995
- journal article
- review article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 92 (19) , 8566-8573
- https://doi.org/10.1073/pnas.92.19.8566
Abstract
Information obtained from studies of developmental and cellular processes in lower organisms is beginning to make significant contributions to the understanding of the pathogenesis of human birth defects, and it is now becoming possible to treat birth defects as inborn errors of development. Mutations in genes for transcription factors, receptors, cell adhesion molecules, intercellular junctions, molecules involved in signal transduction, growth factors, structural proteins, enzymes, and transporters have been identified in genetically caused human malformations and dysplasias. The identification of these mutations and the analysis of their developmental effects have been greatly facilitated by the existence of natural or engineered models in the mouse and even of related mutations in Drosophila, and in some instances a remarkable conservation of function in development has been observed, even between widely separated species.Keywords
This publication has 86 references indexed in Scilit:
- Mutations of theConnexin43Gap-Junction Gene in Patients with Heart Malformations and Defects of LateralityNew England Journal of Medicine, 1995
- Thanatophoric dysplasia (types I and II) caused by distinct mutations in fibroblast growth factor receptor 3Nature Genetics, 1995
- Campomelic dysplasia and autosomal sex reversal caused by mutations in an SRY-related geneNature, 1994
- The limb bud — part twoNature, 1994
- PAX6 gene dosage effect in a family with congenital cataracts, aniridia, anophthalmia and central nervous system defectsNature Genetics, 1994
- Assignment of an autosomal sex reversa– locus (SRA1) and campomelic dysplasia (CMPD1) to 17q24.3–q25.1Nature Genetics, 1993
- A heterozygous 4-bp deletion mutation in the Gsα gene (GNAS1) in a patient with albright hereditary osteodystrophyGenomics, 1992
- Germline intronic and exonic mutations in the Wilms' tumour gene (WT1) affecting urogenital developmentNature Genetics, 1992
- Contiguous gene syndromes: A component of recognizable syndromesThe Journal of Pediatrics, 1986
- Retinoic Acid EmbryopathyNew England Journal of Medicine, 1985