Literature DB >> 10102997

Domain-domain interactions in high mobility group 1 protein (HMG1).

J Ramstein1, D Locker, M E Bianchi, M Leng.   

Abstract

The high mobility group protein HMG1 is a conserved chromosomal protein with two homologous DNA-binding domains, A and B, and an acidic carboxy-terminal tail, C. The structure of isolated domains A and B has been previously determined by NMR, but the interactions of the different domains within the complete protein were unknown. By means of differential scanning calorimetry and circular dichroism we have investigated the thermal stability of HMG1, of the truncated protein A-B (HMG1 without the acidic tail C) and of the isolated domains A and B. In 3 mm sodium acetate buffer, pH 5, the thermal melting of domains A and B are identical (transition temperature tm = 43 degrees C and 41 degrees C, denaturation enthalpies DeltaH = 46 kcal.mol-1). The thermal melting of protein A-B presents two nearly identical transitions (tm = 40 degrees C and 41 degrees C, DeltaH = 44 kcal.mol-1 and 46 kcal.mol-1, respectively). We conclude that the two domains A and B within protein A-B behave as independent domains. The thermal melting of HMG1 is biphasic. The two transitions have a different value of tm (38 degrees C and 55 degrees C) and corresponding values of DeltaH around 40 kcal.mol-1. We conclude that within HMG1, the acidic tail C is interacting with one of the two domains A and B, however, the two domains A and B do not interact with each other. At 37 degrees C, one of the two domains A and B, within HMG1, is partly unfolded, whereas the other which interacts with the acidic tail C, is fully native. The interaction free energy of the acidic tail C is estimated to be in the range of 2.5 kcal.mol-1 based on simulations of the thermograms of HMG1 as a function of the interaction free energy.

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Year:  1999        PMID: 10102997     DOI: 10.1046/j.1432-1327.1999.00185.x

Source DB:  PubMed          Journal:  Eur J Biochem        ISSN: 0014-2956


  7 in total

1.  Mechanism for specificity by HMG-1 in enhanceosome assembly.

Authors:  K B Ellwood; Y M Yen; R C Johnson; M Carey
Journal:  Mol Cell Biol       Date:  2000-06       Impact factor: 4.272

2.  The role of trans-acting factors and DNA-bending in the silencing of human beta-globin gene expression.

Authors:  L R Drew; D C Tang; P E Berg; G P Rodgers
Journal:  Nucleic Acids Res       Date:  2000-07-15       Impact factor: 16.971

3.  Both high mobility group (HMG)-boxes and the acidic tail of HMGB1 regulate recombination-activating gene (RAG)-mediated recombination signal synapsis and cleavage in vitro.

Authors:  Serge Bergeron; Tina Madathiparambil; Patrick C Swanson
Journal:  J Biol Chem       Date:  2005-07-01       Impact factor: 5.157

4.  The DNA chaperone HMGB1 facilitates ACF/CHRAC-dependent nucleosome sliding.

Authors:  Tiziana Bonaldi; Gernot Längst; Ralf Strohner; Peter B Becker; Marco E Bianchi
Journal:  EMBO J       Date:  2002-12-16       Impact factor: 11.598

5.  The HMGB1 C-Terminal Tail Regulates DNA Bending.

Authors:  Rebecca H Blair; Abigail E Horn; Yogitha Pazhani; Lizbeth Grado; James A Goodrich; Jennifer F Kugel
Journal:  J Mol Biol       Date:  2016-08-21       Impact factor: 5.469

6.  Metformin directly binds the alarmin HMGB1 and inhibits its proinflammatory activity.

Authors:  Takahiro Horiuchi; Natsumi Sakata; Yoshihiro Narumi; Tomohiro Kimura; Takashi Hayashi; Keisuke Nagano; Keyue Liu; Masahiro Nishibori; Sohei Tsukita; Tetsuya Yamada; Hideki Katagiri; Ryutaro Shirakawa; Hisanori Horiuchi
Journal:  J Biol Chem       Date:  2017-04-03       Impact factor: 5.157

7.  The C-Terminal Acidic Tail Modulates the Anticancer Properties of HMGB1.

Authors:  Chloé Borde; Clémentine Dillard; Aurore L'Honoré; Frédérique Quignon; Marion Hamon; Christophe H Marchand; Roberta Soares Faccion; Maurício G S Costa; Elodie Pramil; Annette K Larsen; Michèle Sabbah; Stéphane D Lemaire; Vincent Maréchal; Alexandre E Escargueil
Journal:  Int J Mol Sci       Date:  2022-07-17       Impact factor: 6.208

  7 in total

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