Publications of Jochen Reinstein
All genres
Journal Article (117)
101.
Journal Article
270 (28), pp. 16903 - 16910 (1995)
Nucleotide-induced conformational changes in the ATPase and substrate binding domains of the DnaK chaperone provide evidence for interdomain communication. The Journal of Biological Chemistry 102.
Journal Article
249 (1), pp. 126 - 137 (1995)
The role of ATP in the functional cycle of the DnaK chaperone system. Journal of Molecular Biology (London) 103.
Journal Article
363 (1), pp. 22 - 24 (1995)
Crystallization and preliminary X-ray analysis of UMP/CMP-kinase from Dictyostelium discoideum with the specific bisubstrate inhibitor P1-(adenosine 5′)-P5-(uridine 5′)-pentaphosphate (UP5A). FEBS Letters 104.
Journal Article
32 (26), pp. 6632 - 6642 (1993)
The binding of ATP and Mg2+ to the calcium adenosinetriphosphatase of sarcoplasmic reticulum follows a random mechanism. Biochemistry 105.
Journal Article
266 (35), pp. 23654 - 23659 (1991)
Structural and functional consequences of amino acid substitutions in the second conserved loop of Escherichia coli adenylate kinase. The Journal of Biological Chemistry 106.
Journal Article
372 (9), p. 772 - 772 (1991)
NMR studies of the nucleotide binding-sites of adenylate kinase. Biological Chemistry Hoppe-Seyler 107.
Journal Article
372 (9), pp. 780 - 781 (1991)
3D-structure and properties of wildtype and mutant H-Ras encoded P21. Biological Chemistry Hoppe-Seyler 108.
Journal Article
30 (15), pp. 3709 - 3715 (1991)
Interaction of fluorescently labeled dideoxynucleotides with HIV-1 reverse transcriptase. Biochemistry 109.
Journal Article
266 (26), pp. 17700 - 17706 (1991)
p21 with a phenylalanine 28----leucine mutation reacts normally with the GTPase activating protein GAP but nevertheless has transforming properties. The Journal of Biological Chemistry 110.
Journal Article
29 (48), p. 10864 - 10864 (1990)
Fluorescence and NMR investigations on the ligand binding properties of adenylate kinases [Erratum to document cited in CA113(9):73603k]. Biochemistry 111.
Journal Article
29 (32), pp. 7451 - 7459 (1990)
Structurally and catalytically important residues in the phosphate binding loop of adenylate kinase of Escherichia coli. Biochemistry 112.
Journal Article
29 (32), pp. 7440 - 7450 (1990)
Fluorescence and NMR investigations on the ligand binding properties of adenylate kinases. Biochemistry 113.
Journal Article
29 (32), pp. 7459 - 7467 (1990)
Complexes of Escherichia coli Adenylate Kinase and Nucleotides:1H NMR Studies of the Nucleotide Sites in Solution. Biochemistry 114.
Journal Article
264 (14), pp. 8107 - 8112 (1989)
Structural and catalytic role of arginine 88 in Escherichia coli adenylate kinase as evidenced by chemical modification and site-directed mutagenesis. The Journal of Biological Chemistry 115.
Journal Article
207 (1), pp. 151 - 162 (1989)
Adenylate kinases from thermosensitive Escherichia coli strains. Journal of Molecular Biology (London) 116.
Journal Article
27 (13), pp. 4712 - 4720 (1988)
Mutations in the nucleotide binding loop of adenylate kinase of Escherichia coli. Biochemistry 117.
Journal Article
200 (4), pp. 745 - 748 (1988)
Proton-nuclear magnetic resonance studies of the aromatic spin systems of Escherichia coli adenylate kinase. Journal of Molecular Biology (London) Book Chapter (4)
118.
Book Chapter
Kinetics: simulation and analysis. In: Encyclopedia of Biophysics, pp. 1213 - 1217 (Ed. Roberts, G. C. K.). Springer, Berlin, Heidelberg (2013)
119.
Book Chapter
Characterization of ATPase cycles of molecular chaperones by fluorescence and transient kinetic methods. In: Protein Folding Handbook, pp. 105 - 161 (Eds. Buchner, J.; Kiefhaber, T.). Wiley-VCH, Weinheim (2005)
120.
Book Chapter
Thymidylate Kinase. In: Wiley Encyclopedia of Molecular Medicine, 5 Volume Set, pp. 3148 - 3151 (Eds. Kazazian , H. H.; Klein, G.; Moser, H. W.). John Wiley & Sons Inc., New York (2002)