Transgenic and Knock‐out Mice: Models of Neurological Disease
- 28 January 1994
- journal article
- review article
- Published by Wiley in Brain Pathology
- Vol. 4 (1) , 3-20
- https://doi.org/10.1111/j.1750-3639.1994.tb00806.x
Abstract
Besides providing useful model systems for basic science, studies based on modification of the mammalian germ line are changing our understanding of pathogenetic principles. In this article, we review the most popular techniques for generating specific germ line mutations in vivo and discuss the impact of various transgenic models on the study of neurodegenerative diseases. The "gain of function" approach, i.e., ectopic expression of exogenous genes in neural structures, has deepened our understanding of neurodegeneration resulting from infection with papova viruses, picorna viruses, and human retroviruses. Further, inappropriate expression of mutated cellular molecules in the nervous system of transgenic mice is proving very useful for studying conditions whose pathogenesis is controversial, such as Alzheimer's disease and motor neuron diseases. As a complementary approach, ablation of entire cell lineages by tissue-specific expression of toxins has been useful in defining the role of specific cellular compartments. Modeling of recessive genetic diseases, such as Lesch-Nyhan syndrome, was helped by the development of techniques for targeted gene deletion (colloquially termed "gene knock-out"). Introduction of subtle homozygous mutations in the mouse genome was made possible by the latter approach. Such "loss of function" mutants have been used for clarifying the role of molecules thought to be involved in development and structural maintenance of the nervous system, such as the receptors for nerve growth factor and the P0 protein of peripheral myelin. In addition, these models are showing their assets also in the study of enigmatic diseases such as spongiform encephalopathies.Keywords
This publication has 154 references indexed in Scilit:
- Endothelial cell transformation by polyomavirus middle T antigen in mice lacking Src-related kinasesCurrent Biology, 1994
- Mutations in Cu/Zn superoxide dismutase gene are associated with familial amyotrophic lateral sclerosisNature, 1993
- A 'unified theory' of prion propagationNature, 1991
- The dysmyelinating mouse mutations shiverer (shi) and myelin deficient (shi mld )Behavior Genetics, 1990
- Endothelial cell tumors develop in transgenic mice carrying polyoma virus middle T oncogeneCell, 1987
- Association of the polyomavirus middle-T antigen with c-yes proteinNature, 1987
- Hypothesis: Interference with Axonal Transport of Neurofilament as a Common Pathogenetic Mechanism in Certain Diseases of the Central Nervous SystemNew England Journal of Medicine, 1985
- Prevention of bronchopulmonary dysplasia by administration of bovine superoxide dismutase in preterm infants with respiratory distress syndromeThe Journal of Pediatrics, 1984
- Compact myelin exists in the absence of basic protein in the shiverer mutant mouseNature, 1980
- Radioprotection of mice by superoxide dismtuaseBiochemical and Biophysical Research Communications, 1975