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PMID: 8152909 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

DNA looping by the HMG-box domains of HMG1 and modulation of DNA binding by the acidic C-terminal domain.

Nucleic acids research ·Vol. 22 ·No. 6 ·1994-03-25 ·Pages 1044-51

Stros M, Stokrová J, Thomas JO

Abstract

We have compared HMG1 with the product of tryptic removal of its acidic C-terminal domain termed HMG3, which contains two 'HMG-box' DNA-binding domains. (i) HMG3 has a higher affinity for DNA than HMG1. (ii) Both HMG1 and HMG3 supercoil circular DNA in the presence of topoisomerase I. Supercoiling by HMG3 is the same at approximately 50 mM and approximately 150 mM ionic strength, as is its affinity for DNA, whereas supercoiling by HMG1 is less at 150 mM than at 50 mM ionic strength although its affinity for DNA is unchanged, showing that the acidic C-terminal tail represses supercoiling at the higher ionic strength. (iii) Electron microscopy shows that HMG3 at a low protein:DNA input ratio (1:1 w/w; r = 1), and HMG1 at a 6-fold higher ratio, cause looping of relaxed circular DNA at 150 mM ionic strength. Oligomeric protein 'beads' are apparent at the bases of the loops and at cross-overs of DNA duplexes. (iv) HMG3 at high input ratios (r = 6), but not HMG1, causes DNA compaction without distortion of the B-form. The two HMG-box domains of HMG1 are thus capable of manipulating DNA by looping, compaction and changes in topology. The acidic C-tail down-regulates these effects by modulation of the DNA-binding properties.

MeSH Terms
Animals Binding Sites Cattle Circular Dichroism DNA/chemistry,metabolism DNA Topoisomerases, Type I/metabolism DNA, Superhelical/metabolism High Mobility Group Proteins/chemistry,metabolism Microscopy, Electron Nucleic Acid Conformation Osmolar Concentration Peptide Fragments/chemistry,metabolism Trypsin/metabolism
Chemicals
DNA, Superhelical High Mobility Group Proteins Peptide Fragments DNA Trypsin DNA Topoisomerases, Type I
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Stros M
Institute of Biophysics, Czech Academy of Sciences, Brno.
Stokrová J
Thomas J O
References (66)
66 references, click to expand
  1. Nucleolar transcription factor hUBF contains a DNA-binding motif with homology to HMG proteins.
    Nature. 1990 Apr 26;344(6269):830-6 PMID: 2330041
  2. Solution structure of a DNA-binding domain from HMG1.
    Nucleic Acids Res. 1993 Jul 25;21(15):3427-36 PMID: 8346022
  3. Single-strand DNA binding protein from rat liver: interactions with supercoiled DNA.
    Nucleic Acids Res. 1980 Nov 11;8(21):4955-68 PMID: 6255439
  4. Single-strand deoxyribonucleic acid binding protein from rat liver changes the helical structure of deoxyribonucleic acid.
    Biochemistry. 1981 Jun 9;20(12):3598-603 PMID: 6266457
  5. The DNA binding site of HMG1 protein is composed of two similar segments (HMG boxes), both of which have counterparts in other eukaryotic regulatory proteins.
    EMBO J. 1992 Mar;11(3):1055-63 PMID: 1547772
  6. Cleavage of structural proteins during the assembly of the head of bacteriophage T4.
    Nature. 1970 Aug 15;227(5259):680-5 PMID: 5432063
  7. The binding of the chromosomal protein HMG-2a to DNA regions of reduced stabilities.
    J Biol Chem. 1986 Jan 25;261(3):1349-54 PMID: 3003066
  8. Specific recognition of cruciform DNA by nuclear protein HMG1.
    Science. 1989 Feb 24;243(4894 Pt 1):1056-9 PMID: 2922595
  9. High mobility group protein 1 preferentially conserves torsion in negatively supercoiled DNA.
    Biochemistry. 1989 Jun 27;28(13):5658-64 PMID: 2550058
  10. The HMG domain of lymphoid enhancer factor 1 bends DNA and facilitates assembly of functional nucleoprotein structures.
    Cell. 1992 Apr 3;69(1):185-95 PMID: 1555239
  11. Structural features of the HMG chromosomal proteins and their genes.
    Biochim Biophys Acta. 1990 Jul 30;1049(3):231-43 PMID: 2200521
  12. Non-histone chromosomal protein HMG1 modulates the histone H1-induced condensation of DNA.
    J Biol Chem. 1987 Jan 15;262(2):524-6 PMID: 3804996
  13. Salt-dependent co-operative interaction of histone H1 with linear DNA.
    J Mol Biol. 1986 Feb 20;187(4):569-80 PMID: 3712436
  14. High mobility group proteins HMG1 and HMG2 do not decrease the melting temperature of DNA.
    Biochem Biophys Res Commun. 1984 May 16;120(3):782-8 PMID: 6233973
  15. Nonhistone chromosomal protein HMG 1 interactions with DNA. Fluorescence and thermal denaturation studies.
    J Biol Chem. 1985 Sep 5;260(19):10613-20 PMID: 4030760
  16. Identification of the core-histone-binding domains of HMG1 and HMG2.
    Biochim Biophys Acta. 1986 May 5;866(4):242-51 PMID: 3697355
  17. Loss of chromosomal high mobility group proteins HMG1 and HMG2 when mouse neuroblastoma and Friend erythroleukemia cells become committed to differentiation.
    Proc Natl Acad Sci U S A. 1981 Oct;78(10):5988-92 PMID: 6458811
  18. DNA looping and Sp1 multimer links: a mechanism for transcriptional synergism and enhancement.
    Proc Natl Acad Sci U S A. 1991 Jul 1;88(13):5670-4 PMID: 2062845
  19. A stable alpha-helical element in the carboxy-terminal domain of free and chromatin-bound histone H1 from sea urchin sperm.
    EMBO J. 1989 Sep;8(9):2591-9 PMID: 2583125
  20. Interaction between domains in chromosomal protein HMG-1.
    EMBO J. 1984 Jun;3(6):1255-61 PMID: 6086312
  21. General method for isolation of DNA sequences that interact with specific nuclear proteins in chromosomes: binding of the high mobility group protein HMG-T to a subset of the protamine gene family.
    Biochemistry. 1985 Dec 31;24(27):8021-8 PMID: 4092053
  22. DNA--protein interactions. HMG has DNA wrapped up.
    Nature. 1992 May 28;357(6376):282-3 PMID: 1589033
  23. Specific binding of chromosomal protein HMG1 to DNA damaged by the anticancer drug cisplatin.
    Science. 1992 Apr 10;256(5054):234-7 PMID: 1566071
  24. Conformation and domain structure of the non-histone chromosomal proteins HMG 1 and 2. Domain interactions.
    Eur J Biochem. 1984 Sep 3;143(2):323-30 PMID: 6236082
  25. Conformational changes associated with f-1 histone-deoxyribonucleic acid complexes. Circular dichroism studies.
    Biochemistry. 1970 Jul 7;9(14):2814-22 PMID: 5459534
  26. Calcium modulates the binding of high-mobility-group protein 1 to DNA.
    Biochem Int. 1990 Aug;21(5):891-9 PMID: 2256951
  27. A novel continuous sequence of 41 aspartic and glutamic residues in a non-histone chromosomal protein.
    Nature. 1978 Jan 19;271(5642):281-2 PMID: 622171
  28. Structure of the HMG box motif in the B-domain of HMG1.
    EMBO J. 1993 Apr;12(4):1311-9 PMID: 8467791
  29. Partial denaturation mapping of cloned histone DNA from the sea urchin Psammechinus miliaris.
    Nature. 1976 Nov 4;264(5581):31-4 PMID: 1069909
  30. Nonhistone proteins HMG1 and HMG2 change the DNA helical structure.
    Science. 1978 Mar 24;199(4335):1345-6 PMID: 628842
  31. Electron microscopy of supercoiled pEJ4 DNA containing homopurine.homopyrimidine sequences.
    J Biomol Struct Dyn. 1989 Apr;6(5):891-8 PMID: 2590507
  32. The nonspecific DNA-binding and -bending proteins HMG1 and HMG2 promote the assembly of complex nucleoprotein structures.
    Genes Dev. 1993 Aug;7(8):1521-34 PMID: 8339930
  33. The specific interactions of HMG 1 and 2 with negatively supercoiled DNA are modulated by their acidic C-terminal domains and involve cysteine residues in their HMG 1/2 boxes.
    Biochemistry. 1993 Apr 6;32(13):3238-48 PMID: 8461290
  34. DNA and histone H1 interact with different domains of HMG 1 and 2 proteins.
    EMBO J. 1983;2(10):1759-64 PMID: 6227477
  35. Interactions of a purified non-histone chromosomal protein with DNA and histone.
    Eur J Biochem. 1974 Sep 1;47(2):263-70 PMID: 4472153
  36. High-mobility-group 1 protein mediates DNA bending as determined by ring closures.
    Proc Natl Acad Sci U S A. 1993 Oct 15;90(20):9465-9 PMID: 8415724
  37. DNA looping and the helical repeat in vitro and in vivo: effect of HU protein and enhancer location on Hin invertasome assembly.
    EMBO J. 1993 Jun;12(6):2503-12 PMID: 8508775
  38. Identification of a single-stranded DNA binding protein from rat liver with high mobility group protein 1.
    J Biol Chem. 1982 Mar 25;257(6):2722-5 PMID: 6460762
  39. Amino terminal sequence of the mitochondrial protein mtDBP-C: similarity with nonhistone chromosomal proteins HMG 1 and 2.
    Biochimie. 1991 May;73(5):615-6 PMID: 1764507
  40. NaeI endonuclease binding to pBR322 DNA induces looping.
    Biochemistry. 1991 Feb 19;30(7):2006-10 PMID: 1847081
  41. HMG-proteins 1 and 2 are required for transcription of chromatin by endogenous RNA polymerase.
    Biochem Biophys Res Commun. 1982 Aug 31;107(4):1279-84 PMID: 6215919
  42. HMGs everywhere.
    Curr Biol. 1992 Apr;2(4):208-10 PMID: 15335978
  43. Eukaryotic topoisomerases recognize nucleic acid topology by preferentially interacting with DNA crossovers.
    EMBO J. 1990 Dec;9(13):4555-62 PMID: 2176156
  44. Domain structure in high molecular weight high mobility group nonhistone chromatin proteins.
    Nature. 1982 Nov 4;300(5887):76-8 PMID: 6215587
  45. Core histone-DNA interactions in sea urchin sperm chromatin. The N-terminal tail of H2B interacts with linker DNA.
    Eur J Biochem. 1990 Jan 12;187(1):145-53 PMID: 2298202
  46. Full length cDNA sequence for bovine high mobility group 1 (HMG1) protein.
    Nucleic Acids Res. 1988 Nov 11;16(21):10375 PMID: 3194213
  47. Protein HU binds specifically to kinked DNA.
    Mol Microbiol. 1993 Feb;7(3):343-50 PMID: 8459763
  48. Preferential affinity of high molecular weight high mobility group non-histone chromatin proteins for single-stranded DNA.
    J Biol Chem. 1979 Jul 10;254(13):5569-72 PMID: 447665
  49. Mg2+-dependent unwinding of DNA by nonhistone chromosomal protein HMG(1 + 2) from pig thymus as determined by DNA melting temperature analysis.
    J Biochem. 1984 Feb;95(2):423-9 PMID: 6232265
  50. Interaction of a non-histone chromatin protein (high-mobility group protein 2) with DNA.
    Eur J Biochem. 1975 Jun;54(2):427-33 PMID: 1175594
  51. Nonhistone proteins HMG1 and HMG2 suppress the nucleosome assembly at physiological ionic strength.
    Biochim Biophys Acta. 1989 Mar 1;1007(2):209-14 PMID: 2465778
  52. Involvement of histone H1 in the organization of the nucleosome and of the salt-dependent superstructures of chromatin.
    J Cell Biol. 1979 Nov;83(2 Pt 1):403-27 PMID: 387806
  53. High glutamic and aspartic region in nonhistone protein HMG(1+2) unwinds DNA double helical structure.
    J Biochem. 1987 Jan;101(1):175-80 PMID: 3571199
  54. Non-histone chromosomal protein HMG1 reduces the histone H5-induced changes in c.d. spectra of DNA: the acidic C-terminus of HMG1 is necessary for binding to H5.
    Int J Biol Macromol. 1990 Oct;12(5):282-8 PMID: 2085493
  55. Distribution of high mobility group proteins 1/2, E and 14/17 and linker histones H1 and H5 on transcribed and non-transcribed regions of chicken erythrocyte chromatin.
    Nucleic Acids Res. 1991 Feb 25;19(4):717-25 PMID: 2017359
  56. Effects of high mobility group proteins 1 and 2 on initiation and elongation of specific transcription by RNA polymerase II in vitro.
    Nucleic Acids Res. 1988 Dec 9;16(23):11107-23 PMID: 2462724
  57. Acetylated HMG1 protein interacts specifically with homologous DNA polymerase alpha in vitro.
    Biochem Biophys Res Commun. 1988 Aug 15;154(3):918-27 PMID: 3044369
  58. DNA looping between sites for transcriptional activation: self-association of DNA-bound Sp1.
    Genes Dev. 1991 May;5(5):820-6 PMID: 1851121
  59. Studies on the degradation of high mobility group non-histone chromosomal proteins.
    Biochim Biophys Acta. 1978 Jun 22;519(1):233-42 PMID: 667064
  60. Folding of the DNA double helix in chromatin-like structures from simian virus 40.
    Proc Natl Acad Sci U S A. 1975 May;72(5):1843-7 PMID: 168578
  61. Conformation and domain structure of the non-histone chromosomal proteins, HMG 1 and 2. Isolation of two folded fragments from HMG 1 and 2.
    Eur J Biochem. 1983 Mar 15;131(2):367-74 PMID: 6219875
  62. HMG proteins (1 + 2) form beaded structures when complexed with closed circular DNA.
    Nucleic Acids Res. 1980 Jun 25;8(12):2577-90 PMID: 6253884
  63. Rat liver HMG1: a physiological nucleosome assembly factor.
    EMBO J. 1984 May;3(5):1193-9 PMID: 6329744
  64. Thermal denaturation and fluorescence study of nucleosomes containing non-histone chromosomal protein HMG2.
    Biochim Biophys Acta. 1987 Nov 20;910(2):163-70 PMID: 3676320
  65. High mobility group proteins 1 and 2 function as general class II transcription factors.
    Biochemistry. 1990 Jul 3;29(26):6295-302 PMID: 2119799
  66. A simple electrophoretic method for the determination of superhelix density of closed circular DNAs and for observation of their superhelix density heterogeneity.
    Anal Biochem. 1976 May 7;72:95-103 PMID: 182041
Article Info
Journal
Nucleic acids research
Abbr.
Nucleic Acids Res
ISSN
0305-1048
Published
1994-03-25
Pages
1044-51
Language
English
Region
England
NLM ID
0411011
PMCID
PMC307928
Subset
IM
Grants
Wellcome Trust · United Kingdom
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