1hma

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THE SOLUTION STRUCTURE AND DYNAMICS OF THE DNA BINDING DOMAIN OF HMG-D FROM DROSOPHILA MELANOGASTERTHE SOLUTION STRUCTURE AND DYNAMICS OF THE DNA BINDING DOMAIN OF HMG-D FROM DROSOPHILA MELANOGASTER

Structural highlights

1hma is a 1 chain structure with sequence from Drosophila melanogaster. Full experimental information is available from OCA. For a guided tour on the structure components use FirstGlance.
Method:Solution NMR
Resources:FirstGlance, OCA, PDBe, RCSB, PDBsum, ProSAT

Function

HMGD_DROME Binds preferentially single-stranded DNA and unwinds double stranded DNA. Prefers sites containing the sequence 5'-ttg-3'. Facilitates DNA bending. Associated with early embryonic chromatin in the absence of histone H1.[1] [2] [3]

Evolutionary Conservation

Check, as determined by ConSurfDB. You may read the explanation of the method and the full data available from ConSurf.

Publication Abstract from PubMed

BACKGROUND: The HMG-box is a conserved DNA-binding motif that has been identified in many high mobility group (HMG) proteins. HMG-D is a non-histone chromosomal protein from Drosophila melanogaster that is closely related to the mammalian HMG-box proteins HMG-1 and HMG-2. Previous structures determined for an HMG-box domain from rat and hamster exhibit the same global topology, but differ significantly in detail. It has been suggested that these differences may arise from hinge motions which allow the protein to adapt to the shape of its target DNA. RESULTS: We present the solution structure of HMG-D determined by NMR spectroscopy to an overall precision of 0.85 A root mean squared deviation (rmsd) for the backbone atoms. The protein consists of an extended amino-terminal region and three alpha-helices that fold into a characteristic 'L' shape. The central core region of the molecule is highly stable and maintains an angle of approximately 80 degrees between the axes of helices 2 and 3. The backbone dynamics determined from 15N NMR relaxation measurements show a high correlation with the mean residue rmsd determined from the calculated structures. CONCLUSIONS: The structure determined for the HMG-box motif from HMG-D is essentially identical to the structure determined for the B-domain of mammalian HMG-1. Since these proteins have significantly different sequences our results indicate that the global fold and the mode of interaction with DNA are also likely to be conserved in all eukaryotes.

The solution structure and dynamics of the DNA-binding domain of HMG-D from Drosophila melanogaster.,Jones DN, Searles MA, Shaw GL, Churchill ME, Ner SS, Keeler J, Travers AA, Neuhaus D Structure. 1994 Jul 15;2(7):609-27. PMID:7922039[4]

From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine.

See Also

References

  1. Wagner CR, Hamana K, Elgin SC. A high-mobility-group protein and its cDNAs from Drosophila melanogaster. Mol Cell Biol. 1992 May;12(5):1915-23. PMID:1373803
  2. Ner SS, Travers AA. HMG-D, the Drosophila melanogaster homologue of HMG 1 protein, is associated with early embryonic chromatin in the absence of histone H1. EMBO J. 1994 Apr 15;13(8):1817-22. PMID:8168480
  3. Churchill ME, Jones DN, Glaser T, Hefner H, Searles MA, Travers AA. HMG-D is an architecture-specific protein that preferentially binds to DNA containing the dinucleotide TG. EMBO J. 1995 Mar 15;14(6):1264-75. PMID:7720717
  4. Jones DN, Searles MA, Shaw GL, Churchill ME, Ner SS, Keeler J, Travers AA, Neuhaus D. The solution structure and dynamics of the DNA-binding domain of HMG-D from Drosophila melanogaster. Structure. 1994 Jul 15;2(7):609-27. PMID:7922039
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