Kálmán Tompa
Hungarian Academy of Sciences
93 Papers
882 Citations
Kálmán Tompa is an academic researcher from Hungarian Academy of Sciences. The author has contributed to research in topics: Hydrogen & Amorphous metal. The author has an hindex of 17, co-authored 93 publications.
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Papers
Rotor–stator molecular crystals of fullerenes with cubane
Sándor Pekker,Éva Kováts,G. Oszlányi,Gyula Bényei,Gyöngyi Klupp,Gábor Bortel,István Jalsovszky,Emma Jakab,Ferenc Borondics,Katalin Kamarás,Mónika Bokor,G. Kriza,Kálmán Tompa,G. Faigel +13 more
TL;DR: It is shown that C60 and similarly C70 form high-symmetry molecular crystals with cubane owing to topological molecular recognition between the convex surface of fullerenes and the concave cubane.
119
Protein-Water and Protein-Buffer Interactions in the Aqueous Solution of an Intrinsically Unstructured Plant Dehydrin: NMR Intensity and DSC Aspects
TL;DR: The findings overall provide direct evidence that the intrinsically unstructured ERD10 not only has a high hydration capacity but can also bind a large amount of charged solute ions.
118
NMR relaxation studies on the hydrate layer of intrinsically unstructured proteins
Mónika Bokor,Veronika Csizmok,Denes Kovacs,P. Bánki,Peter Friedrich,Peter Tompa,Kálmán Tompa +6 more
TL;DR: For three IUPs, the first inhibitory domain of calpastatin, microtubule-associated protein 2c, and plant dehydrin early responsive to dehydration 10, it is demonstrated that they bind a significantly larger amount of water than globular proteins, whereas their suboptimal hydration and relaxation parameters are correlated with their differing modes of function.
88
High levels of structural disorder in scaffold proteins as exemplified by a novel neuronal protein, CASK‐interactive protein1
Annamária Balázs,Veronika Csizmok,László Buday,László Buday,Marianna Rakacs,Róbert Kiss,Mónika Bokor,Roopesh Udupa,Kálmán Tompa,Peter Tompa +9 more
TL;DR: It is suggested that structurally disordered regions prevail and play key recognition roles in scaffold proteins.
76
The state of water in normal and senile cataractous lenses studied by nuclear magnetic resonance.
TL;DR: It was concluded that the most characteristic difference between the normal and completely opaque lenses should be accounted for by the change in the “bound”-to-“free” ratio of lens water.
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