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Comparative Analysis of Three Guinea Pig Satellite DNAs by Restriction Nucleases.

Authors :
Altenburger, Werner
Hörz, Wolfram
Zachau, Hans G.
Source :
European Journal of Biochemistry; 3/1/77, Vol. 73 Issue 2, p393-400, 8p
Publication Year :
1977

Abstract

The structures of guinea pig satellite DNAs I, II, and III have been analyzed by digestion with seven restriction nucleases. From the cleavage patterns it is obvious that the long-range periodicities in these three satellites differ rather characteristically. Satellite I is fairly resistant to six nucleases and gives only a number of weak discrete bands which do not show a simple regularity. By the restriction nuclease from Arthrobacter luteus, however, it is cleaved extensively and yields very heterogeneous breakdown products. This is consistent with the high extent of divergence previously found for this satellite, e. g. by sequence analysis. Satellite II is almost completely resistant to all nucleases, indicative of a high degree of sequence homogeneity of this satellite. Satellite III is completely broken by the restriction nuclease from Bacillus subtilis into fragments which form a novel, highly regular series of bands in gel electrophoresis. The patterns show that the satellite is composed of tandem repeats of approximately 215 nucleotide pairs length, each repeat unit containing two cleavage sites for this nuclease. The data are consistent with the assumption that 30–40% of all cleavage sites have been eliminated by a random process. Satellite III DNA yields weak degradation patterns of the same periodicity with a number of other restriction nucleases. Cleavage sites for these nucleases are clustered on separate small segments of the satellite DNA. In this respect, the satellite is similar to others, notably the mouse satellite DNA. The three guinea pig satellites are examples of more general types of satellite structures also found in other organisms. Similarities and differences to other satellites are discussed with special consideration to theories on the evolution of this class of DNA. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00142956
Volume :
73
Issue :
2
Database :
Complementary Index
Journal :
European Journal of Biochemistry
Publication Type :
Academic Journal
Accession number :
13723689
Full Text :
https://doi.org/10.1111/j.1432-1033.1977.tb11330.x