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PMID: 3037090 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Insertion of an intermediate repetitive sequence into a sea urchin histone-gene spacer.

Journal of molecular evolution ·Vol. 24 ·No. 4 ·1987-00-00 ·Pages 346-56

Yager LN, Kaumeyer JF, Lee I, Weinberg ES

Abstract

A common polymorphism of the early embryonic histone-gene repeat of Strongylocentrotus purpuratus is a 195-bp insertion within the H4-H2B spacer. The sequence, found as an insert in histone-gene repeats of 6 of 22 individuals screened, is also found at approximately 50 sites elsewhere in the genome of every individual. We compare the sequences of the histone-gene spacers that do and do not contain the insert. The insert is found not to have transposon-like features, and no sequence in the original spacer has been duplicated to flank the insert. There is, however, a hexanucleotide sequence that is repeated three times at one end of the insert, and the element has inserted between direct repeats of 5 bp that were present in the original spacer. One of the copies found outside the histone gene cluster was cloned and sequenced and is compared with the insert. Again, no transposon-like features are evident. Regions flanking the homologous sequence in this clone were used as hybridization probes in whole-genome blots. Results indicate that the 195-bp sequence insert is itself embedded within a larger element that is repeated within the genome. Therefore, only a portion of a larger repetitive sequence has integrated into the histone-gene spacer. The sequence features of the insert, although not typical of mobile elements, may be representative of other illegitimate recombination events.

MeSH Terms
Animals Base Sequence DNA Restriction Enzymes DNA Transposable Elements Genes Histones/genetics Male Polymorphism, Genetic Repetitive Sequences, Nucleic Acid Sea Urchins/genetics Spermatozoa
Chemicals
DNA Transposable Elements Histones DNA Restriction Enzymes
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Yager L N
Kaumeyer J F
Lee I
Weinberg E S
References (44)
44 references, click to expand
  1. Labeling deoxyribonucleic acid to high specific activity in vitro by nick translation with DNA polymerase I.
    J Mol Biol. 1977 Jun 15;113(1):237-51 PMID: 881736
  2. An unusual transposon with long terminal inverted repeats in the sea urchin Strongylocentrotus purpuratus.
    Nature. 1983 Nov 24-30;306(5941):342-7 PMID: 6316151
  3. The single-copy DNA sequence polymorphism of the sea urchin Strongylocentrotus purpuratus.
    Cell. 1978 Dec;15(4):1175-86 PMID: 728997
  4. Molecular evolution of the human adult alpha-globin-like gene region: insertion and deletion of Alu family repeats and non-Alu DNA sequences.
    Proc Natl Acad Sci U S A. 1983 Oct;80(19):5970-4 PMID: 6310609
  5. Molecular analysis of large transposable elements carrying the white locus of Drosophila melanogaster.
    EMBO J. 1983;2(6):853-60 PMID: 16453456
  6. An unusual evolutionary behaviour of a sea urchin histone gene cluster.
    EMBO J. 1982;1(1):27-33 PMID: 16453405
  7. Insertion of a short repetitive sequence (D88I) in a sea urchin gene: a typical interspersed repeat?
    J Mol Evol. 1984;20(3-4):195-201 PMID: 6096568
  8. Eucaryotic transposable genetic elements with inverted terminal repeats.
    Cell. 1980 Jul;20(3):639-47 PMID: 6251970
  9. Distinct organizations and patterns of expression of early and late histone gene sets in the sea urchin.
    Nature. 1983 Jan 13;301(5896):120-5 PMID: 6296688
  10. Interspersed sequence organization and developmental representation of cloned poly(A) RNAs from sea urchin eggs.
    J Mol Biol. 1983 Jun 25;167(2):361-89 PMID: 6191038
  11. Transposition of Tn554 does not generate a target duplication.
    Nature. 1984 Jan 19-25;307(5948):292-4 PMID: 6320000
  12. Genomic instability and mobile genetic elements in regions surrounding two discoidin I genes of Dictyostelium discoideum.
    Mol Cell Biol. 1984 Apr;4(4):671-80 PMID: 6325889
  13. New M13 vectors for cloning.
    Methods Enzymol. 1983;101:20-78 PMID: 6310323
  14. Evolving sea urchin histone genes--nucleotide polymorphisms in the H4 gene and spacers of Strongylocentrotus purpuratus.
    J Mol Evol. 1984;20(3-4):215-26 PMID: 6439878
  15. Long and short repeats of sea urchin DNA and their evolution.
    Chromosoma. 1981;84(1):19-32 PMID: 7297249
  16. Detection of specific sequences among DNA fragments separated by gel electrophoresis.
    J Mol Biol. 1975 Nov 5;98(3):503-17 PMID: 1195397
  17. A ubiquitous family of repeated DNA sequences in the human genome.
    J Mol Biol. 1979 Aug 15;132(3):289-306 PMID: 533893
  18. Length and sequence heterogeneity of the histone gene repeat unit of the sea urchin, S. purpuratus.
    Cell. 1978 Jun;14(2):247-57 PMID: 667939
  19. Fractionation of renatured repetitive human DNA according to thermal stability, sequence length, and renaturation rate.
    Biochim Biophys Acta. 1978 Mar 29;518(1):37-52 PMID: 629979
  20. Tsp transposons: a heterogeneous family of mobile sequences in the genome of the sea urchin Strongylocentrotus purpuratus.
    Mol Cell Biol. 1985 Oct;5(10):2814-25 PMID: 3016516
  21. Evolutionary change in the repetition frequency of sea urchin DNA sequences.
    Cell. 1978 Oct;15(2):649-60 PMID: 719756
  22. Renaturation rate studies of a single family of interspersed repeated sequences in human deoxyribonucleic acid.
    Biochemistry. 1981 May 26;20(11):3003-10 PMID: 6788076
  23. A rapid alkaline extraction procedure for screening recombinant plasmid DNA.
    Nucleic Acids Res. 1979 Nov 24;7(6):1513-23 PMID: 388356
  24. SEA URCHIN DNA SEQUENCE VARIATION AND REDUCED INTERSPECIES DIFFERENCES OF THE LESS VARIABLE DNA SEQUENCES.
    Evolution. 1982 Jul;36(4):665-676 PMID: 28568239
  25. Unusual structure of the FB family of transposable elements in Drosophila.
    Cell. 1981 Jun;24(3):753-63 PMID: 6265101
  26. A high speed, high capacity homology matrix: zooming through SV40 and polyoma.
    Nucleic Acids Res. 1982 Aug 11;10(15):4765-82 PMID: 6290988
  27. Sequence comparisons of non-allelic late histone genes and their early stage counterparts. Evidence for gene conversion within the sea urchin late stage gene family.
    J Mol Biol. 1984 Apr 25;174(4):647-62 PMID: 6587117
  28. Orphons: dispersed genetic elements derived from tandem repetitive genes of eucaryotes.
    Cell. 1981 Mar;23(3):651-63 PMID: 6784929
  29. TU elements: a heterogeneous family of modularly structured eucaryotic transposons.
    Mol Cell Biol. 1985 May;5(5):991-1001 PMID: 2987685
  30. The DNA sequence of sea urchin (S. purpuratus) H2A, H2B and H3 histone coding and spacer regions.
    Cell. 1978 Nov;15(3):1033-44 PMID: 728984
  31. Purification of sea urchin ribosomal RNA genes with a single-strand specific nuclease.
    Biochim Biophys Acta. 1976 Jan 19;418(2):167-74 PMID: 1247541
  32. Dictyostelium transposable element DIRS-1 preferentially inserts into DIRS-1 sequences.
    Mol Cell Biol. 1984 Oct;4(10):2207-13 PMID: 6095047
  33. Sequence, organization and expression of late embryonic H3 and H4 histone genes from the sea urchin, Strongylocentrotus purpuratus.
    Nucleic Acids Res. 1986 Jun 11;14(11):4557-76 PMID: 3714486
  34. Conversion of RNA to DNA in mammals: Alu-like elements and pseudogenes.
    Nature. 1983 Feb 10;301(5900):471-2 PMID: 6185852
  35. Repetitive sequences in eukaryotic DNA and their expression.
    Annu Rev Biochem. 1982;51:813-44 PMID: 7051966
  36. Sea urchin (lytechinus pictus) late-stage histone H3 and H4 genes: characterization and mapping of a clustered but nontandemly linked multigene family.
    Cell. 1982 Dec;31(2 Pt 1):383-93 PMID: 6297764
  37. Determination of nucleic acid sequence homologies and relative concentrations by a dot hybridization procedure.
    Nucleic Acids Res. 1979 Nov 24;7(6):1541-52 PMID: 503860
  38. Repetitive sequences of the sea urchin genome. Distribution of members of specific repetitive families.
    J Mol Biol. 1981 Jan 5;145(1):5-28 PMID: 7265203
  39. Concentration of DNA solutions by extraction with 2-butanol.
    Biochim Biophys Acta. 1975 Jan 6;378(1):18-21 PMID: 235311
  40. Sequencing end-labeled DNA with base-specific chemical cleavages.
    Methods Enzymol. 1980;65(1):499-560 PMID: 6246368
  41. Dictyostelium transposable element DIRS-1 has 350-base-pair inverted terminal repeats that contain a heat shock promoter.
    Proc Natl Acad Sci U S A. 1984 May;81(9):2660-4 PMID: 6326136
  42. A convenient and adaptable package of DNA sequence analysis programs for microcomputers.
    Nucleic Acids Res. 1982 Jan 11;10(1):51-9 PMID: 6278412
  43. Structure and unusual characteristics of a new family of transposable elements in the sea urchin Strongylocentrotus purpuratus.
    Mol Cell Biol. 1985 Oct;5(10):2804-13 PMID: 3016515
  44. Sequence analysis of the insertion element ISH1.8 and of associated structural changes in the genome of phage PhiH of the archaebacterium Halobacterium halobium.
    EMBO J. 1984 Aug;3(8):1717-22 PMID: 16453543
Article Info
Journal
Journal of molecular evolution
Abbr.
J Mol Evol
ISSN
0022-2844
Published
1987-00-00
Pages
346-56
Language
English
Region
Germany
NLM ID
0360051
Subset
IM
Grants
NIGMS NIH HHS · GM22155 · United States
Databases
GENBANK
X05413, X05414, X05415, X05416, X05417
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