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1 pi-pi EDA interaction, hydrogen bonding, and hydrophobic interaction).
2 ractions (electrostatic, pi-pi stacking, and hydrophobic interactions).
3 n of LAE-lecithin complexes probably through hydrophobic interaction.
4 n, enhanced Donnan exclusion, and suppressed hydrophobic interaction.
5 the NorA pump mediated by hydrogen bonds and hydrophobic interactions.
6 rmines the degree to which charge influences hydrophobic interactions.
7 ous media by combining hydrogen bonding with hydrophobic interactions.
8 ycon showed stronger binding due to enhanced hydrophobic interactions.
9 omatic residue clustering through long-range hydrophobic interactions.
10 il, which is attributed to electrostatic and hydrophobic interactions.
11  lead to artificial results due to unnatural hydrophobic interactions.
12  diversity of small molecules mainly through hydrophobic interactions.
13  displayed stronger binding due to increased hydrophobic interactions.
14 rming highly stable complexes dependent upon hydrophobic interactions.
15 red spectra, which was ascribed to increased hydrophobic interactions.
16 nteracted with anthocyanins probably through hydrophobic interactions.
17 m Rhodobacter capsulatus (RcFDH) by means of hydrophobic interactions.
18 ssociates between helices E and F of CaM via hydrophobic interactions.
19 ng pocket of AcrB, where they form extensive hydrophobic interactions.
20  of the c-di-GMP molecule, primarily through hydrophobic interactions.
21 e through a combination of electrostatic and hydrophobic interactions.
22 ooligosaccharides through hydrogen bonds and hydrophobic interactions.
23 nts based on interfilament electrostatic and hydrophobic interactions.
24 lding allows formation of novel, stabilizing hydrophobic interactions.
25 brane via a combination of electrostatic and hydrophobic interactions.
26 hought to be primarily driven by nonspecific hydrophobic interactions.
27 rwhelmingly by electrostatic and slightly by hydrophobic interactions.
28 ne core of GCA is stabilized by aromatic and hydrophobic interactions.
29 drogen bond, metal-ligand, electrostatic and hydrophobic interactions.
30 the micellization process is provided by the hydrophobic interactions.
31 ition; the contact interface is dominated by hydrophobic interactions.
32  of RiPPs is directed by a minimal number of hydrophobic interactions.
33  into our understanding of the phenomenon of hydrophobic interactions.
34 phospholipid layer of the liposomal core via hydrophobic interactions.
35 stacking interactions as well as hydrophobic-hydrophobic interactions.
36 nding was entropy driven and involved mostly hydrophobic interactions.
37 vating BovK mainly through electrostatic and hydrophobic interactions.
38 nups and is driven by both electrostatic and hydrophobic interactions.
39 ugh hydrophobic cavities or electrostatic or hydrophobic interactions.
40 e head domain of another NS1 subunit through hydrophobic interactions.
41 le spots due to the interplay of hydrophilic/hydrophobic interactions.
42 nt conformations of the EF loop via specific hydrophobic interactions.
43 itope of SF3B3 that is strongly dependent on hydrophobic interactions.
44 networks and the strength of the surrounding hydrophobic interactions.
45 lation in the minor groove of DNA, involving hydrophobic interactions.
46 n of wine volatiles was shown to be based on hydrophobic interactions.
47 binds to LPL's C-terminal domain, largely by hydrophobic interactions.
48 e MoS(2) functionalized sensing platform via hydrophobic interactions.
49 the entire capsid together with a network of hydrophobic interactions.
50 bonded dimers that sandwich together through hydrophobic interactions.
51 plete binding region anchored at each end by hydrophobic interactions.
52 trates important for adhesion via polyvalent hydrophobic interactions.
53  subunits, reinforcing filament stability by hydrophobic interactions.
54 3) through S(1)' under establishment of nine hydrophobic interactions, 14 hydrogen bonds and one salt
55 e show that hydrogen bonding, pai/sp(2), and hydrophobic interactions all contribute to stabilizing L
56 ions are also abolished, suggesting that the hydrophobic interactions alone are insufficient to allow
57 sembly growth is predominantly driven by the hydrophobic interaction along the longer crystallographi
58 S-2- and Mfn-mediated membrane apposition or hydrophobic interactions alter vMIA's ability to organiz
59 by a detergent-induced redistribution of the hydrophobic interactions among the transmembrane helices
60 s are held together in the pilus filament by hydrophobic interactions among their N-terminal alpha-he
61 taH of binding comprises both an endothermic hydrophobic interaction and exothermic hydrogen bond com
62                By the cooperative effects of hydrophobic interaction and ionic interaction, the hydro
63 -Ag nano-crystals anchored electrode through hydrophobic interaction and pi-pi electron coupling.
64 lative strength of gold-gold bonding through hydrophobic interaction and silica-silica bonding throug
65                                    Extensive hydrophobic interactions and a hydrogen-bonding network
66 ially attract the metal ions and, afterward, hydrophobic interactions and aromatic ring stacking stab
67 ir populations upon aggregation by promoting hydrophobic interactions and at the same time provide a
68 eet contents and more chemical bonds such as hydrophobic interactions and disulfide bonds than those
69                       Results indicated both hydrophobic interactions and disulfide bonds were signif
70                                Further, vMIA hydrophobic interactions and ER-mitochondria contacts fa
71 tures such as membrane binding of the MA via hydrophobic interactions and exhibit several differences
72 eir fundamental role in the understanding of hydrophobic interactions and for gas storage and energy-
73  synthesis is initiated by electrostatic and hydrophobic interactions and formation of self-assembled
74 s by directly binding to Abeta42 species via hydrophobic interactions and hydrogen bonding and remode
75 ppear to preferentially crosslink HMW-GS via hydrophobic interactions and hydrogen bonding, whereas t
76 e main driving forces of these interactions, hydrophobic interactions and hydrogen bonds, respectivel
77                   Large flocs, stabilized by hydrophobic interactions and hydrogen bonds, were formed
78 nduced by safranal association resulted from hydrophobic interactions and hydrogen bonds.
79 ansyl moiety is localized in and establishes hydrophobic interactions and several hydrogen bonds with
80                                              Hydrophobic interactions and shape complementarity enhan
81  of MA-(8-43) to CaM is mediated by numerous hydrophobic interactions and stabilized by favorable ele
82 M map reveals that SCP binds MCP largely via hydrophobic interactions and the kinked helix of SCP bri
83  analogues of 24 demonstrated that extensive hydrophobic interactions and the unique hydrogen bonding
84 ucture-based mutagenesis identifies critical hydrophobic interactions and their effect on the virus l
85 imately 20 kJ/mol, suggesting involvement of hydrophobic interactions and/or hydrogen bonds.
86 ular interactions such as hydrogen bonds and hydrophobic interactions, and a range of steric interact
87 ing mechanisms, ion pairing, hydrogen bonds, hydrophobic interactions, and conformation effects is de
88 tion of amine groups doubles the strength of hydrophobic interactions, and guanidinium groups elimina
89 ex network consisting of ionic interactions, hydrophobic interactions, and hydrogen binding.
90 ve affinities, in part via electrostatic and hydrophobic interactions, and in part through entropic e
91 one hand, such aggregates can disrupt native hydrophobic interactions, and on the other hand, they ca
92 luding sensitivity to the disruption of weak hydrophobic interactions, and reduced diffusion, increas
93 mino acid side-chains together with multiple hydrophobic interactions, and underpins a novel architec
94  electrostatic interactions, hydrogen bonds, hydrophobic interactions, and van der Waals interactions
95 abilized by cation-pi, hydrogen bonding, and hydrophobic interactions; and stabilization of the loop
96                                              Hydrophobic interactions are accompanied by hydrogen bon
97 actions conferred by the arginines are lost, hydrophobic interactions are also abolished, suggesting
98 ic model, which revealed that both polar and hydrophobic interactions are crucial for binding affinit
99             Our results further suggest that hydrophobic interactions are dominant in the functional
100 nd pair, while in another pair, Phe50-Phe65, hydrophobic interactions are dominant.
101 PfDHODH with three inhibitors suggested that hydrophobic interactions are important for drug binding
102 rogen bonds and pi-pi stacking combined with hydrophobic interactions are responsible for the stabili
103 t perturbation, which together indicate that hydrophobic interactions are the major driving force of
104 ntrations on nfGNPs-VLPs complexes suggested hydrophobic interactions as the main stabilizing force.
105 oration of an aliphatic domain to facilitate hydrophobic interactions, as well as a phenylboronic aci
106 tonavir and demonstrated the leading role of hydrophobic interactions at the sites adjacent to the he
107                                          The hydrophobic interaction between the cavity and the open
108 nteraction is at least, in part, driven by a hydrophobic interaction between the lipids and the hydro
109 cues destabilized F proteins through a local hydrophobic interaction between the N-terminal helix and
110 vate is replaced with a potentially stronger hydrophobic interaction between the phenylalanine and th
111                 Structural analysis revealed hydrophobic interaction between the proline's aliphatic
112  interactions were completely lost, although hydrophobic interaction between the side chains of hydro
113                                              Hydrophobic interaction between this surface and a bound
114 structure revealed S233L(K1) causes aberrant hydrophobic interactions between 1B tetramers.
115 also twenty-five residue pairs participating hydrophobic interactions between A and B chains of SOD,
116 o H-bond involving the 4-OH'' was described, hydrophobic interactions between a tryptophan residue an
117                            This revealed the hydrophobic interactions between aromatic rings of curcu
118 , involving hydrogen bonds, salt bridges, or hydrophobic interactions between conserved residues.
119 nyl specificity arising from pi-aromatic and hydrophobic interactions between crotonyl and aromatic r
120 ow that, in addition to tight intermolecular hydrophobic interactions between CypA and the substrate,
121      Although the mechanism remains unclear, hydrophobic interactions between enzymes and lignin are
122 monstrate the presence of strong noncovalent hydrophobic interactions between ESAT-6 and beta2M in ad
123                                          The hydrophobic interactions between flap and 80 s (80's) lo
124                             We conclude that hydrophobic interactions between fluorine and hydrocarbo
125 fect produced on the GQD solution due to the hydrophobic interactions between GO and GQDs.
126 zation of mutant Slo2 channels suggests that hydrophobic interactions between Leu residues in the upp
127       These results suggest the formation of hydrophobic interactions between polyphenols and bile ac
128 including a double mutant PS, indicated that hydrophobic interactions between residues of prosegment
129 that the drug is significantly stabilized by hydrophobic interactions between the adamantane and the
130                               In addition to hydrophobic interactions between the analyte and carboni
131 mers that assemble to form tetramers through hydrophobic interactions between the faces bearing L17,
132 dwich-like fashion to form tetramers through hydrophobic interactions between the faces bearing V18 a
133 l-and the C-terminal domain (CTD) as well as hydrophobic interactions between the highly conserved Y2
134 ationship reveals that the electrostatic and hydrophobic interactions between the lipidoids and the p
135 rate that cluster formation is controlled by hydrophobic interactions between the peptide backbones,
136 IgG1 Fc homodimer are maintained by multiple hydrophobic interactions between the protein surface and
137 ation at 0 degrees C, which globally weakens hydrophobic interactions, causes gradual and reversible
138 anoparticles (50-150nm) was quantified using hydrophobic interaction chromatography (HIC) and classif
139                                              Hydrophobic interaction chromatography (HIC) appears to
140 In addition to characterizing heterogeneity, Hydrophobic Interaction Chromatography (HIC) is an assay
141 ith DAR determined by the in-house reference hydrophobic interaction chromatography (HIC) method.
142   In this study, a storage- and pH-sensitive hydrophobic interaction chromatography (HIC) profile cha
143                                 Conventional hydrophobic interaction chromatography (HIC) provides hi
144                   Herein, EFLC is applied to hydrophobic interaction chromatography (HIC) stationary
145                              Conventionally, hydrophobic interaction chromatography (HIC) uses mobile
146                We recently demonstrated that hydrophobic interaction chromatography (HIC) utilizing a
147 ative ion mobility MS (IM-MS) is compared to hydrophobic interaction chromatography (HIC), the refere
148 files of ADCs are routinely characterized by hydrophobic interaction chromatography (HIC).
149 on, monitoring of foulants during multimodal hydrophobic interaction chromatography of recombinant hu
150 m/methanol extraction in the flow through of hydrophobic interaction chromatography.
151 chromatography, ion-exchange chromatography, hydrophobic-interaction chromatography (HIC), and size e
152        The most significant proved to be the hydrophobic interactions connecting the LA loops of the
153 ted by an extensive and redundant network of hydrophobic interactions, consistent with the high intri
154  Fe-rich minerals via ligand-exchange and/or hydrophobic interactions contributed to the aggregation.
155 pramolecular motifs in water are directed by hydrophobic interactions, cooperative delivery strategie
156                       Thus, disrupting these hydrophobic interactions could be a new therapeutic stra
157                 Harnessing such non-specific hydrophobic interactions could have wide applications in
158   Our results suggest that, by competing for hydrophobic interactions, DMSO can have a small but sign
159 a, thioflavin-T-positive aggregates, whereas hydrophobic interactions dominate self-assembly in [R273
160                    Neither electrostatic nor hydrophobic interactions dominate the adsorption of GG-X
161                                              Hydrophobic interactions drive many important biomolecul
162 lecular hydrogen bonding, and intermolecular hydrophobic interactions enabled novel 3D supramolecular
163                                    Extensive hydrophobic interactions established at the Phe-1 site i
164 dered peptide binds the histone tail through hydrophobic interactions facilitated by nucleosome docki
165 mpetition between conformational entropy and hydrophobic interaction favoring random coil or globular
166  "upright" conformation on mica, whereas the hydrophobic interaction favors the "flat" conformation o
167                                  Short-range hydrophobic interactions follow, which serve to stabiliz
168 tachment to the unfolded whey protein due to hydrophobic interactions followed by adhesion to the pro
169 ncounter complex intermediates and nonnative hydrophobic interactions for other SH3 domains and IDPs
170 cyanidins involved hydrogen bonds and mainly hydrophobic interactions for overripe PC.
171  data, which reveal that the enzyme utilizes hydrophobic interactions for substrate recognition.
172       We show these intra- and intercapsomer hydrophobic interactions form a network crucial to capsi
173             PEG works because of multivalent hydrophobic interaction from its repeating methylene uni
174 h the unique geometry from metal complex and hydrophobic interactions from simple peptides, we demons
175                                          The hydrophobic interactions from the inhibitor is aimed to
176 imary amide group (Q side chain) weakens the hydrophobic interaction generated by the six cyclohexyl
177 onic polar groups have pronounced effects on hydrophobic interactions generated by a neighboring nonp
178 , but the influence of this heterogeneity on hydrophobic interactions has not been tested experimenta
179 tes thus formed via electrostatic as well as hydrophobic interactions have been explored for the sens
180  (GE) from Alcalase 2.4 L was purified using hydrophobic interaction (HIC) and ion-exchange (IEX) chr
181 vent combinations to disrupt the H-bonds and hydrophobic interactions holding together the beta-sheet
182               Peptide binding is enhanced by hydrophobic interactions; however, poor solubility promo
183 two hydrogen-bonded dimers that pack through hydrophobic interactions in a sandwich-like fashion.
184  and guanidinium groups eliminate measurable hydrophobic interactions in all pH ranges investigated.
185                 Here we evaluate the role of hydrophobic interactions in enzyme-lignin binding.
186                              Mapping surface hydrophobic interactions in proteins is key to understan
187 ast decade has improved our understanding of hydrophobic interactions in simple model systems, but mo
188 c chain snakes along a shallow cavity making hydrophobic interactions in the "switch region", as well
189 try, and involved more hydrogen bonding than hydrophobic interactions in the case of nitrogen-treated
190 nd salt-concentration-independent pai-pai or hydrophobic interactions in the cationic cyclodextrin bi
191 ur study reveals the critical role played by hydrophobic interactions in the formation of this virus-
192 its hydrophobic counterpart is stabilized by hydrophobic interactions in the membrane.
193 trate the importance of hydrogen bonding and hydrophobic interactions in the oligomerization of IAPP-
194 ctions, our results reveal the importance of hydrophobic interactions in the same interfaces.
195 the alpha5 helix of Galphai1, especially the hydrophobic interactions in this region, plays a key rol
196 inding pocket can thus determine whether the hydrophobic interactions in which it engages are enthalp
197 signal-anchored MAM proteins can make use of hydrophobic interactions independently of conventional E
198  and that their assembly is promoted by weak hydrophobic interactions, indicative of a liquid crystal
199 e ERCC1 point mutation F231L, located at the hydrophobic interaction interface of ERCC1 (excision rep
200 ized by either electrostatic interactions or hydrophobic interactions involving the I36 hydrophobic p
201 ons, suggesting that the capacity to disrupt hydrophobic interactions is responsible for the effect o
202 hes, we show that this mutant loses critical hydrophobic interactions, leading to significant rearran
203 e double mutation in Act variant weakens the hydrophobic interactions, leading to the transition from
204 ultraperformance liquid chromatography and a hydrophobic interaction liquid chromatography column cou
205 er interactions, electrostatic interactions, hydrophobic interactions, macrocycle-based host-guest in
206 inly through hydrogen bonding, although some hydrophobic interaction may also have been involved.
207                                              Hydrophobic interaction membrane chromatography, which w
208 tabilized in aqueous solution by intraligand hydrophobic interactions mimicking the macrolide structu
209 y gains are largely attributed to additional hydrophobic interactions mimicking the N-terminal acetyl
210         Here we demonstrate that a secondary hydrophobic interaction, near the peptide core, can stab
211 n which Phe(151) is the central residue in a hydrophobic interaction network connecting the active si
212 drogen bonding during pressurisation and not hydrophobic interactions nor disulphide cross-links.
213 y of TREA hybrids appears to be dominated by hydrophobic interactions, not base pairing of the DNA ar
214 brane thickness but could be rationalized by hydrophobic interactions of lysines at the bilayer inter
215  (primary amine and primary amide) influence hydrophobic interactions of neighboring nonpolar domains
216 otently to both the DDR and ABL kinases, the hydrophobic interactions of the ABL P-loop appear poorly
217 ersus methanol allowed quantification of the hydrophobic interactions of the beta-peptide with the no
218                                              Hydrophobic interactions of the methyl group rather than
219            In addition, we take advantage of hydrophobic interactions of transmembrane helices to man
220 he chimeras were immobilized via nonspecific hydrophobic interactions onto glass planar waveguides mo
221 he interface is characterized by substantial hydrophobic interactions overlapping the binding surface
222                                In phage P22, hydrophobic interactions peg the coat protein subunits t
223 y charged middle/C-terminal regions, whereas hydrophobic interactions play a surprisingly small role.
224         Two critical residues, involved in a hydrophobic interaction, provide a ligand-binding platfo
225 ongly to the CH3-terminated SAM surfaces via hydrophobic interactions (range of adhesive interaction
226    Results showed that CETP binds to HDL via hydrophobic interactions rather than protein-protein int
227 ree hydrogen-bond residues pair and eighteen hydrophobic interactions residues pairs formed with a to
228 of one hydrogen-bond residues pair and seven hydrophobic interactions residues pairs with a total ave
229 ns involve 20 hydrogen bonds and a number of hydrophobic interactions resulting in an extended buried
230 peptide with the WS(2) via electrostatic and hydrophobic interactions results in fluorescent quenchin
231 000/water nanoemulsions because of favorable hydrophobic interactions; second, the nanoemulsions had
232             Incorporating extra hydrogen and hydrophobic interactions significantly improves the phys
233 at reveal a dramatic change in the surfaces' hydrophobic interaction strengths on co-immobilization o
234  benzene, a compound known to interfere with hydrophobic interactions, such as those between pairing
235  by numerous aromatic, cation-pai, polar and hydrophobic interactions, suggesting mutagenesis approac
236 lution or in cells, and we propose that this hydrophobic interaction surface may mediate binding to a
237 e LSPH/CUR complex confirmed the presence of hydrophobic interactions that led to the complex formati
238 In contrast, the EC1/EC4 interface comprises hydrophobic interactions that provide non-selective dime
239 molecular fragments or surfaces mediates the hydrophobic interactions that underlie a broad range of
240           As partitioning is often driven by hydrophobic interactions the uptake of amino acids and p
241 reas the adamantane site binds CB solely via hydrophobic interactions, the CB unit at the butyl site
242 fect of dissolved gas and its connection to 'hydrophobic' interactions, the problem of water at diffe
243 itochondria that binds incoming proteins via hydrophobic interactions thereby mediating protein trans
244 e bound inside the cavity of LolA, driven by hydrophobic interactions, they become entangled with eac
245    Inspired by protein folding, we introduce hydrophobic interactions to expand the assembly language
246 ted against a second layer of dimers through hydrophobic interactions to form a fibril-like assembly
247 and cooperates with nearby arginines and the hydrophobic interactions to provide the binding specific
248 ometry revealed that LL-37 binds by specific hydrophobic interactions to the His-40-Lys-50 segment of
249 tBid (p15), that are held together by strong hydrophobic interactions until the complex binds to memb
250  that TAP/TPN complex formation is driven by hydrophobic interactions via leucine zipper-like motifs.
251                               In addition to hydrophobic interactions, we demonstrate that pai-pai st
252 ents between intrareceptor electrostatic and hydrophobic interactions, we enabled complementary guest
253  additional stabilization compared to purely hydrophobic interactions, we infer that the six M101-F99
254                                              Hydrophobic interactions were evaluated through the addi
255 ized to be due to increased particle-surface hydrophobic interactions (when compared to silica surfac
256 based on either electrostatic interaction or hydrophobic interaction, which was easily achieved by ut
257 selectivity for guanine estimation is due to hydrophobic interactions, which are assisted by the low
258                           We also found that hydrophobic interactions, which could lead to a mixed-mo
259 ydrogenase complex appears to be involved in hydrophobic interactions, which may limit its exposition
260 variations related to the hydrogen bonds and hydrophobic interactions, which occur with the formation
261  acid through a network of electrostatic and hydrophobic interactions, which provides insights into t
262 ratrol-gliadin binding mainly occurs through hydrophobic interactions while the binding with zein is
263           Sorption of the FtSs was driven by hydrophobic interactions, while the FtSaBs behave more l
264 n and cellular uptake, tryptophan to enhance hydrophobic interaction with cell membranes, histidine t
265  the rate of transition from E to E* through hydrophobic interaction with F227.
266 sed molecular rigidity of the dye due to its hydrophobic interaction with protein lead to fluorescenc
267 due in the drug-binding pocket would disrupt hydrophobic interaction with tariquidar and inhibit its
268 tion of the metastable pharmacophore to be a hydrophobic interaction with the beta(2)AR, while the li
269 37)LAGLF(442) helix of the E2 protein in the hydrophobic interaction with the D-helix of CD81, thereb
270                               W61 also makes hydrophobic interactions with A91 and L401 of a subunit
271 ementarity and forms hydrogen bonds or makes hydrophobic interactions with all five pore-lining threo
272 ace coming from the various electrostatic or hydrophobic interactions with biomolecules.
273 ilizes the N-NTD dimers through simultaneous hydrophobic interactions with both partners, resulting i
274 ler valine side chain in PR(I50V) eliminated hydrophobic interactions with inhibitor and the other su
275 flet, establishing extensive hydrophilic and hydrophobic interactions with MsbA.
276 mechanisms include charge neutralization and hydrophobic interactions with natural organic matter rem
277  to better overall shape complementarity and hydrophobic interactions with S372 and M368 on KCa3.1 an
278 he aromatic groups of SV and PpIX and strong hydrophobic interactions with the alkyl chains of the ca
279 whereas affinity is increased by nonspecific hydrophobic interactions with the anomeric substituent.
280 that perturbing the Phe-336 residue disturbs hydrophobic interactions with the beta2-beta3 strands an
281                      Arbidol primarily makes hydrophobic interactions with the binding site but also
282 an alpha-helical conformation and engages in hydrophobic interactions with the HA very similar to tho
283 short polymer block leading to non-covalent, hydrophobic interactions with the lipid bilayer.
284                    Membrane binding requires hydrophobic interactions with the lipid tails but not ch
285 ino acids, these residues form even stronger hydrophobic interactions with the lipid tails to promote
286 n to the negatively charged cell surface and hydrophobic interactions with the membrane lipids enable
287 ificity for methylcytosine depends on direct hydrophobic interactions with the methylcytosine 5-methy
288 ure disclosed that Leu-730 in RET engages in hydrophobic interactions with the piperazine, anilino, a
289 ture shows that cholesterol is stabilized by hydrophobic interactions with the TM helix and polar and
290 ange of hydrophobicity as a measure of their hydrophobic interactions with the transport barriers.
291 sidues at V3 positions 306 and 308 to create hydrophobic interactions with the tryptophan residue at
292 port that 4E10 establishes electrostatic and hydrophobic interactions with the viral membrane surface
293 ions revealed that binding is facilitated by hydrophobic interactions with Trp-37, Phe-260, and Tyr-4
294 T domain known to be important for ionic and hydrophobic interactions with ubiquitin may have equival
295 enthalpy-driven interactions, in addition to hydrophobic interactions, with the formation of complexe
296                                              Hydrophobic interactions within a lipophilic pocket past
297 interactions between neighboring strands and hydrophobic interactions within each strand.
298 pecifically this may be due to disruption of hydrophobic interactions within individual zein proteins
299 hogenic amyloid fibrils, FUS-LC fibrils lack hydrophobic interactions within the core and are not pol
300  a set of highly conserved electrostatic and hydrophobic interactions working harmoniously to regulat

 
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