650
Views
10
CrossRef citations to date
0
Altmetric
Research Paper

Thermo and pH stable ATP-independent chaperone activity of heat-inducible Hsp70 from Pennisetum glaucum

, , , , , , & show all
Pages 110-121 | Received 15 Sep 2009, Accepted 09 Nov 2009, Published online: 01 Feb 2010

References

  • Ritossa F. A new puffing pattern induced by temperature shock and DNP in Drosophila. Experientia 1962; 18:571 - 573
  • Studer S, Narberhaus F. Chaperone activity and homo- and hetero-oligomer formation of bacterial small heat shock proteins. J Biol Chem 2000; 275:37212 - 37218
  • Becker J, Craig EA. Heat-shock proteins as molecular chaperones. Eur J Biochem 1994; 219:11 - 23
  • Hartl FU, Hlodan R, Langer T. Molecular chaperones in protein folding the art of avoiding sticky situations. Trends Biochem Sci 1994; 19:20 - 25
  • Hendrick JP, Hartl FU. The role of molecular chaperones in protein folding. The Fed Am Soci Exper Biol J 1995; 9:1559 - 1569
  • Mosser DD, Caron AW, Bourget L, Denis-Larose C, Massie B. Role of the human heat shock protein Hsp70 in protection against stress-induced apoptosis. Mol Cell Biol 1997; 17:5317 - 5327
  • Fink AL. Chaperone-mediated protein folding. Physiol Rev 1999; 79:425 - 449
  • Bukau B, Horwich AL. The Hsp70 and Hsp60 chaperone machines. Cell 1988; 92:351 - 366
  • Zavilgelsky GB, Kotova VY, Mazhul’ MM, Manukhov IV. Role of Hsp70 DnaK-DnaJ-GrpE and Hsp100 ClpA and ClpB chaperones in refolding and increased thermal stability of bacterial luciferases in Escherichia coli cells. Biochem Mosc 2002; 67:986 - 992
  • Smykal P, Masin J, Hrdy I, Konopasek I, Zarsky V. Chaperone activity of tobacco HSP18 a small heatshock protein is inhibited by ATP. Plant J 2000; 23:703 - 713
  • Scheufler C, Brinker A, Bourenkov G, Pegoraro S, Moroder L, Bartunik H, et al. Structure of TPR domain-peptide complexes: critical elements in the assembly of the Hsp70-Hsp90 multichaperone machine. Cell 2000; 10:199 - 210
  • Ziemienowicz A, Zylicz M, Floth C, Hubscher U. Calf thymus Hsc 70 protein protects and reactivates prokaryotic and eukaryotic enzymes. J Biol Chem 1995; 270:15479 - 15484
  • Wickner S, Maurizi MR, Gottesman S. Posttranslational quality control: folding refolding and degrading proteins. Science 1999; 286:1888 - 1893
  • Flynn GC, Chappell TG, Rothma JE. Peptide binding and release by proteins implicated as catalysts of protein assembly. Science 1989; 245:385 - 390
  • Zhu X, Zhao X, Burkholder WF, Gragerov A, Ogata CM, Gotesman ME, et al. Structural analysis of substrate binding by the molecular chaperone DnaK. Science 1996; 272:1606 - 1614
  • Slepenkov SV, Witt SN. Kinetic analysis of interdomain coupling in a lidless variant of the molecular chaperone DnaK: DnaK’s lid inhibits transition to the low affinity state. Biochem 2002; 41:12224 - 12235
  • Grover A. Molecular biology of stress responses. Cell Stress Chaperones 2002; 7:1 - 5
  • Katiyar-Agarwal S, Agarwal M, Grover A. Heattolerant basmati rice engineered by overexpression of hsp101. Plant Mol Biol 2003; 51:677 - 686
  • Sun W, Montagu MV, Verbruggen N. Small heat shock proteins and stress tolerance in plants. Biochim Biophy Acta 2002; 1577:1 - 9
  • Liu C, Willmund F, Golecki JR, Cacace S, Hess B, Market C, et al. The chloroplast HSP70B-CDJ2-CGE1 chaperones catalyse assembly and disassembly of VIPP1 oligomers in Chlamydomonas. Plant J 2007; 50:265 - 277
  • Cho EK, Bae SJ. ATP-independent thermoprotective activity of Nicotiana tabacum heat shock protein 70 in Escherichia coli. J Biochem Mol Biol 2007; 40:107 - 112
  • Tiroli AO, Ramos CH. Biochemical and Biopysical characterization of small heat shock proteins from sugarcane. Involvement of a specific region located at the N-terminus with substrate specificity. The Inter J Biochem Cell Biol 2007; 398:18 - 831
  • Cho EK, Hong CB. Overexpression of tobacco NtHSP70-1 contributes to drought-stress tolerance in plants. Plant Cell Rep 2006; 25:349 - 358
  • Liu HT, Li GL, Chang H, Sun DY, Zhou RG, Li B. Calmodulin-binding protein phosphatase PP7 is involved in thermotolerance in Arabidopsis. Plant Cell Environment 2007; 30:156 - 164
  • Swindell WR, Huebner M, Weber AP. Transcriptional profiling of Arabidopsis heat shock proteins and transcription factors reveals extensive overlap between heat and non-heat stress response pathways. BioMed Cen Gen 2007; 8:125
  • Su PH, Li HM. Arabidopsis stromal Hsp70s are essential for plant development and important for thermotolerance of germinating seeds. Plant Physiol 2008; 146:1231 - 1241
  • Singh SM, Panda AK. Solubilization and refolding of bacterial inclusion body proteins. J Biosci Bioengin 2005; 99:303 - 310
  • Mishra RN, Reddy PS, Nair S, Markandeya G, Reddy AR, Sopory SK, et al. Isolation and characterization of expressed sequence tags ESTs from subtracted cDNA libraries of Pennisetum glaucum seedlings. Plant Mol Biol 2007; 64:713 - 732
  • Pfaffl MW, Horgan GW, Dempfle L. Relative expression software tool (REST) for group-wise comparison and statistical analysis of relative expression results in real-time PCR. Nucleic Acids Res 2002; 30:36
  • Jaenicke R, Rudolph R. Creighton TE. A Practical Approach in Protein Structure Creighton TE. A Practical Approach in Protein Structure 1989; Oxford IRL Press 191 - 223
  • Sreerama N, Woody RW. PolyProII helices in globular proteins: Identification and circular dichroic. Anal Biochem 1994; 33:10022 - 10025
  • Armstrong JMcD, Myers DV, Verpoorte JA, Edsall JT. Purification and properties of human erythrocyte carbonic anhydrases. J Biol Chem 1966; 241:5137 - 5149
  • Jiang J, Prasad K, Lafer EM, Sousa R. Structural basis of interdomain communication in the Hsc70 chaperone. Mol Cell 2005; 20:513 - 524
  • Koradi R, Billeter M, Wuthrich K. MOLMOL: a program for display and analysis of macromolecular structures. J Mol Graph Model 1996; 14:51 - 55
  • Guy CL, Li QB. The organization and evolution of the spinach stress 70 molecularchaperone gene family. Plant Cell 1998; 10:539 - 556
  • Liu FH, Wu SJ, Hu SM, Hsiao CD, Wang C. Specific interaction of the 70-kDa heat shock cognate protein with the tetratricopeptide repeats. J Biol Chem 1999; 274:34425 - 4432
  • Boice JA, Hightower LE. A Mutational Study of the peptide-binding domain of Hsc70 guided by secondary structure prediction. J Biol Chem 1997; 272:24825 - 24831
  • Ramya TNC, Surolia N, Surolia A. 15-Deoxyspergualin modulates Plasmodium falciparum heat shock protein function. Biochem Biophy Res Comm 2006; 348:585 - 592
  • Archer EK, Keegstra K. Analysis of chloroplast transit peptide function using mutations in the carboxyl-terminal region. Plant Mol Biol 1993; 23:1105 - 1115
  • Sichting M, Mokranjac D, Azem A, Neupert W, Hell K. Maintenance of structure and function of mitochondrial Hsp70 chaperones requires the chaperone Hep1. EMBO J 2005; 24:1046 - 1056
  • Scopio A, Johnson P, Laquerre A, Nelson DR. Subcellular localization of chaperone activities of Borrelia burgdorferi Hsp60 and Hsp70. J Biol Chem 1994; 176:6449 - 6456
  • Satyanarayana T, Noorwez SM, Kumar S, Rao JLUM, Ezhilvannan M, Kaur P. Development of an ideal starch saccharification process using amylolytic enzymes from thermophiles. Biochem Soci Tran 2004; 32:276 - 278
  • Burley SK, Petsko GA. Aromatic-aromatic interaction: a mechanism of protein structure stabilization. Science 1985; 229:23 - 28
  • Naik RR, Kirkpatrick SM, Stone MO. The thermostabilty of an α-helical coiled-coil protein and its potential use in sensor applications. Biosen Bioelect 2001; 16:1051 - 1057
  • Lupas A. Coiled coils: new structures and functions. Trends Biochem Sci 1996; 21:375 - 382
  • Eftink MR, Ghiron CA. Fluorescence quenching studies with proteins. Anal Biochem 1981; 114:199 - 227
  • Ghatge MS, Deshpande VV. Evidence for specific interaction of guanidine hydrochloride with carboxy groups of enzymes/proteins. Biochem Biophy Res Comm 1993; 193:979 - 984
  • Palleros DR, Shi L, Reid KL, Fink AL. Hsp70-protein complexes. Complex stability and conformation of bound substrate protein. J Biol Chem 1994; 269:13107 - 13114
  • Lu Y, Stemler K. Extrinsic phytosystem II carbonic anhydrase in maize mesophyll chloroplasts. Plant Physiol 2002; 128:643 - 649

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.