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1 ive P1 site forms a hydrogen bond and not an ionic bond.
2 otential, and abilities to form covalent and ionic bonds.
3 n the Cu(100) surface to form Na-carboxylate ionic bonds.
4  clusters that are stabilized by hydrogen or ionic bonds.
5 ostatic interactions, involving hydrogen and ionic bonding.
6 onate through a hydrogen bond rather than an ionic bond and that this interaction is much less import
7 howed that this interaction relies mostly on ionic bonds and does not involve the two C-terminal cyst
8         We suggest that the extensive set of ionic bonds and H-bonds between PsaC and the PsaA/PsaB h
9        Comparable strength of intermolecular ionic bonds and intramolecular covalent bonds has been a
10 rms of sigma- and pi-donor covalent bonding, ionic bonding, and solvent effects.
11 ving local loss of hydrophobic interactions, ionic bonds, and helical structure, leads to Urc inactiv
12 to decrease in net charge, loss of potential ionic bonds, and interference with H bonds.
13  systems forming dative-covalent rather than ionic bonds, as exemplified here by NH(3) and CO, mu(S)
14 consistent with the disruption of a critical ionic bond at the active site.
15               The formation of a carboxylate ionic bond at the interface is characterized both with A
16  formation of hydrogen bonds and carboxylate ionic bonds at the interface are observed.
17 tive humidity), an increase in the amount of ionic bonds at the interface is observed.
18                                           An ionic bond between Lys-313 and Glu-309 appears to stabil
19 ant of h beta 2m was engineered to create an ionic bond between the heavy chain and beta 2m.
20 of a single critical interaction, the buried ionic bond between the phosphate of the pTyr and Arg bet
21                     We also predict that the ionic bonding cannot be sustained under extreme compress
22                           Restoration of the ionic bond, E/K, eliminates most of these problems.
23 er of charged amino acids with potential for ionic bond formation between oppositely charged partners
24  an increased wet adhesion through increased ionic bond formation.
25                        In the absence of the ionic bond forming contacts R52(C) or R65(C), a markedly
26 e, nanosized (346-nm) complexes with GFX via ionic bond, hydrogen bond, and hydrophobic interactions.
27 ace chemistries-including hydrophobic bonds, ionic bonds, hydrogen bonds, self-assembled monolayers,
28  VHS domains suggests that this intrapeptide ionic bond in solution may reduce the change in binding
29 A167R double mutant, which re-establishes an ionic bond in the opposite orientation, reverses this po
30                                              Ionic bonding in supramolecular surface networks is a pr
31 GF) spreading and attachment, as affected by ionic bonding interactions, may facilitate cell orientat
32 sical linkage theory indicates that a single ionic bond is prominent.
33                                   The formed ionic bond is stable up to 5 Torr water vapour pressure
34                            Formation of this ionic bond is the basis of zymogen activation for the ch
35                                 Their strong ionic bonding nature results in highly dynamic crystal l
36 ral rigidity to the tissue through extensive ionic-bonding networks; this matrix is highly permselect
37 llular structures are shaped by hydrogen and ionic bonds, plus van der Waals and hydrophobic forces.
38        We conclude that the variation of the ionic bonding strength of Ag toward different reactants
39 n 2-4 A of the arginine, forming a favorable ionic bond that is largely unaltered upon activation.
40 tates is difficult because they tend to form ionic bonds that limit magnetic exchange coupling.
41 tural and dynamic roles; in particular, four ionic bonds that open in a sequential, zipper-like fashi
42 caine analogs has been assumed to provide an ionic bond to the aspartic acid residue on the dopamine
43 ough an additional lysine-phosphate backbone ionic bond which makes a significant contribution to the
44 thetic sequence by replacing an interhelical ionic bond with a covalent bond.
45  (D53) conserved in both beta 2ms to form an ionic bond with arginine residues at positions 35 and 48
46 e that the guanido group of Arg-120 forms an ionic bond with the carboxylate group of arachidonate an
47 abilize H1 in PrP(C) yet form intermolecular ionic bonds with adjacent PrP molecules during conversio
48 th activation, the Asp3.49(138)-Arg3.50(139) ionic bond would break, and the unrestrained Arg would b

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