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Featured researches published by Johannes H. Ippel.


Journal of Biomolecular NMR | 1995

Conformation of the circular dumbbell d〈pCGC-TT-GCG-TT〉: Structure determination and molecular dynamics

Johannes H. Ippel; Virginia Lanzotti; Aldo Galeone; Luciano Mayol; Jacquelien E. van den Boogaart; Jeroen A. Pikkemaat; Cornelis Altona

SummaryThe circular DNA decamer 5′-d〈pCGC-TT-GCG-TT〉-3′ was studied in solution by means of NMR spectroscopy and molecular dynamics in H2O. At a temperature of 269 K, a 50/50 mixture of two dumbbell structures (denoted L2L2 and L2L4) is present. The L2L2 form contains three Watson-Crick C-G base pairs and two two-residue loops in opposite parts of the molecule. On raising the temperature from 269 K to 314 K, the L2L4 conformer becomes increasingly dominant (95% at 314 K). This conformer has a partially disrupted G(anti)-C(syn) closing base pair in the 5′-GTTC-3′ loop with only one remaining (solvent-accessible) hydrogen bond between NHα of the cytosine dC(1) and O6 of the guanine dG(8). The opposite 5′-CTTG-3′ loop remains stable. The two conformers occur in slow equilibrium (rate constant 2–20 s−1). Structure determination of the L2L2 and L2L4 forms was performed with the aid of a full relaxation matrix approach (IRMA) in combination with restrained MD. Torsional information was obtained from coupling constants. Coupling constant analysis (3JHH, 3JHP, 3JCP) gave detailed information about the local geometry around backbone torsion angles β, γ, δ and ε, revealing a relatively high flexibility of the 5′-GTTC-3′ loop. The values of the coupling constants are virtually temperature-independent. ‘Weakly constrained’ molecular dynamics in solvent was used to sample the conformational space of the dumbbell. The relaxation matrices from the MD simulation were averaged over 〈r−3〉 to predict dynamic NOE volumes. In order to account for the 1:1 conformational mixture of L2L2 and L2L4 present at 271 K, we also included S2 factors and 〈r−6〉 averaging of the 〈r−3〉-averaged relaxation matrices. On matrix averaging, the agreement of NOE volumes with experiment improved significantly for protons located in the thermodynamically less stable 5′-GTTC-3′ loop. The difference in stability of the 5′-CTTG-3′ and 5′-GTTC-3′ loops is mainly caused by differences in the number of potential hydrogen bonds in the minor groove and differences in stacking overlap of the base pairs closing the minihairpin loops. The syn conformation for dC(1), favored at high temperature, is stabilized by solvation in the major groove. However, the conformational properties of the dC(1) base, as deduced from R-factor analysis and MD simulations, include a large flexibility about torsion angle χ.


Magnetic Resonance in Chemistry | 1989

Relationship between protonproton NMR coupling constants and substituent electronegativities. V—Empirical substituent constants deduced from ethanes and propanes

Cornelis Altona; Johannes H. Ippel; Aldert J. A. Westra Hoekzema; Cornelis Erkelens; Michel Groesbeek; Lambertus A. Donders


Magnetic Resonance in Chemistry | 1994

Empirical group electronegativities for vicinal NMR proton–proton couplings along a CC bond: Solvent effects and reparameterization of the Haasnoot equation

Cornelis Altona; Robert Francke; Rudy de Haan; Johannes H. Ippel; Godefridus J. Daalmans; Aldert J. A. Westra Hoekzema; John van Wijk


Biopolymers | 1995

Slow conformational exchange in DNA minihairpin loops: A conformationalstudy of the circular dumbbell d〈pCGC-TT-GCG-TT〉

Johannes H. Ippel; Virginia Lanzotti; Aldo Galeone; Luciano Mayol; Jaquelien E van den Boogaart; Jeroen A. Pikkemaat; Cornelis Altona


Journal of Biomolecular Structure & Dynamics | 2012

An NMR Study of the Conformation and Thermodynamics of the Circular Dumbbell d

Johannes H. Ippel; Virginia Lanzotti; Aldo Galeone; Luciano Mayol; Jacquelien E. van den Boogaart; Jeroen A. Pikkemaat; C. Altona


Recueil des Travaux Chimiques des Pays-Bas | 2010

THREE BACTERIORHODOPSINS WITH RING-DIDEMETHYLATED 6-S-LOCKED CHROMOPHORES AND THEIR PROPERTIES

Michel Groesbeek; A. J. J. van Galen; Johannes H. Ippel; J. A. Berden; Johan Lugtenburg


Recueil des Travaux Chimiques des Pays-Bas | 2010

(1R)‐ and (1S)‐5‐demethyl‐8,16‐methanobacteriorhodopsin and its properties. The synthesis and spectroscopy of 5‐demethyl‐8,16‐methanoretinal in optically active and isotopic forms

M.B. Spijker‐Assink; G. W. Robijn; Johannes H. Ippel; Johan Lugtenburg; B. H. Groen; K. Van Dam


Biopolymers | 1995

Thermodynamics of melting of the circular dumbbell d〈pCGC-TT-GCG-TT〉

Johannes H. Ippel; Virginia Lanzotti; Aldo Galeone; Luciano Mayol; Jaquelien E van den Boogaart; Jeroen A. Pikkemaat; Cornelis Altonaf


Recueil des Travaux Chimiques des Pays-Bas | 2010

Conformational analysis of all‐E‐retinal, all‐E‐8,16‐methanoretinal, (1S)‐all‐E‐8,16‐methano‐18‐norretinal, and all‐E‐17,18‐dinor‐8,16‐methanoretinal by means of NMR spectroscopy and molecular dynamics

Johannes H. Ippel; M.B. Spijker‐Assink; Michel Groesbeek; R. van der Steen; Cornelis Altona; Johan Lugtenburg


Journal of Biomolecular Structure & Dynamics | 1992

An NMR Study of the Conformation and Thermodynamics of the Circular Dumbbell d : Slow Exchange Between Two-and Four-membered Hairpin Loops

Johannes H. Ippel; Virginia Lanzotti; Aldo Galeone; Luciano Mayol; Jacquelien E. van den Boogaart; Jeroen A. Pikkemaat; C. Altona

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Aldo Galeone

University of Naples Federico II

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Luciano Mayol

University of Naples Federico II

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Virginia Lanzotti

University of Naples Federico II

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