Genetics of Human Laterality Disorders: Insights from Vertebrate Model Systems
- 1 September 2003
- journal article
- review article
- Published by Annual Reviews in Annual Review of Genomics and Human Genetics
- Vol. 4 (1) , 1-32
- https://doi.org/10.1146/annurev.genom.4.070802.110428
Abstract
Many internal organs in the vertebrate body are asymmetrically oriented along the left-right (L-R) body axis. Organ asymmetry and some components of the molecular signaling pathways that direct L-R development are highly conserved among vertebrate species. Although individuals with full reversal of organ L-R asymmetry (situs inversus totalis) are healthy, significant morbidity and mortality is associated with perturbations in laterality that result in discordant orientation of organ systems and complex congenital heart defects. In humans and other vertebrates, genetic alterations of L-R signaling pathways can result in a wide spectrum of laterality defects. In this review we categorize laterality defects in humans, mice, and zebrafish into specific classes based on altered patterns of asymmetric gene expression, organ situs defects, and midline phenotypes. We suggest that this classification system provides a conceptual framework to help consolidate the disparate laterality phenotypes reported in humans and vertebrate model organisms, thereby refining our understanding of the genetics of L-R development. This approach helps suggest candidate genes and genetic pathways that might be perturbed in human laterality disorders and improves diagnostic criteria.Keywords
This publication has 203 references indexed in Scilit:
- PKCγ Regulates Syndecan-2 Inside-Out Signaling during Xenopus Left-Right DevelopmentCell, 2002
- Diffusion of Nodal Signaling Activity in the Absence of the Feedback Inhibitor Lefty2Developmental Cell, 2001
- Genetic steps to organ laterality in zebrafishComparative and Functional Genomics, 2001
- Cerberus regulates left–right asymmetry of the embryonic head and heartCurrent Biology, 1999
- Retinoic Acid Directs Cardiac Laterality and the Expression of Early Markers of Precardiac AsymmetryDevelopmental Biology, 1997
- Human situs determination and chromosome constitution 46,XY,ins(7;8)(q22;q12q24)American Journal of Medical Genetics, 1993
- Human situs determination is probably controlled by several different genesAmerican Journal of Medical Genetics, 1992
- Balanced translocation 12/13 and situs abnormalities: Homology of early pattern formation in man and lower organisms?American Journal of Medical Genetics, 1991
- Editorial comment on the paper by de la Monte and Hutchins on familial polyaspleniaAmerican Journal of Medical Genetics, 1985
- Familial clustering of situs inversus totalis, and asplenia and polysplenia syndromesAmerican Journal of Medical Genetics, 1983