The Effect of the Shiverer Mutation on Myelin Basic Protein Expression in Homozygous and Heterozygous Mouse Brain
- 1 June 1983
- journal article
- research article
- Published by Wiley in Journal of Neurochemistry
- Vol. 40 (6) , 1680-1686
- https://doi.org/10.1111/j.1471-4159.1983.tb08142.x
Abstract
We report (a) that the shiverer mutation has pleiotropic phenotypic effects on myelin basic protein expression in the CNS of homozygous (shi/shi) mice and (b) that each of the effects of the shiverer allele is expressed co-dominantly with the wild-type allele in heterozygous (+/shi) animals. First, the total amount of myelin basic protein, as determined by radioimmunoassay, that accumulates in the CNS is approximately 0.1% of the wildtype amount in shi/shi animals and approximately 50% in +/shi animals. Second, the four major forms of myelin basic protein, with molecular weights of 21,500, 18,500, 17,000, and 14,000, that are present in wild-type mouse CNS are undetectable in either whole brain or purified myelin of shi/shi animals, and each of the four proteins is reduced commensurately in brain and myelin of +shi animals. Third, the small amount of myelin basic protein-related material that does accumulate in the shi/shi brain consists of several polypeptides, with molecular weights ranging from 25,000 to 100,000, the pattern of which is different from that found in wild-type brain. The pattern of myelin basic protein-related polypeptides in +lshi brain is a composite of the wild type and the shiverer mutant. Fourth, messenger RNA from shi/shi brain, when translated in vitro, encodes a set of myelin basic protein-related polypeptides qualitatively similar to that encoded by wild-type messenger RNA, except that the 18,500 and 14,000 translation products are greatly reduced, while other myelin basic protein-related translation products are spared. The pattern of myelin basic protein-related translation products for +/shi messenger RNA is intermediate between the patterns for +/+ and shi/shi messenger RNAs. The results suggest that the genetic lesion in the shiverer mutation impinges on the structural gene (or genes) encoding myelin basic protein or on a cis-acting regulatory element controlling that gene (or genes).Keywords
This publication has 16 references indexed in Scilit:
- Developmental regulation of myelin basic protein expression in mouse brainDevelopmental Biology, 1983
- Compact myelin exists in the absence of basic protein in the shiverer mutant mouseNature, 1980
- Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications.Proceedings of the National Academy of Sciences, 1979
- Brain lipid composition of the shiverer mouse: (genetic defect in myelin development)Journal of Neurochemistry, 1978
- Use of staphylococcal protein A as an immunological reagentJournal of Immunological Methods, 1978
- An Efficient mRNA‐Dependent Translation System from Reticulocyte LysatesEuropean Journal of Biochemistry, 1976
- The molecular genetics of mammalian glucuronidaseJournal of Cellular Physiology, 1975
- Magnesium precipitation of ribonucleoprotein complexes. Expedient techniques for the isolation of undegraded polysomes and messenger ribonucleic acidBiochemistry, 1974
- MYELINATION IN RAT BRAIN: METHOD OF MYELIN ISOLATION1Journal of Neurochemistry, 1973
- Immunological reactivity of insulin to sepharose coupled with insulin-antibody—Its use for the extraction of insulin from serumBiochemical and Biophysical Research Communications, 1970