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1 the nature of nfGNPs-VLPs interaction is non-covalent.
2 ion (DNP), provide direct evidence of shared covalent (29) Si-O-(29) Si bonds between intermediate na
4 e identified the reversible character of the covalent addition chemistry, even at temperatures below
6 and various electrophilic compounds, through covalent adduct formation at the C7-C8 olefin of PL, whe
11 DNA minor-groove binding agents that form a covalent aminal bond between their C11-position and the
13 The Xe-Br and Xe-Cl bonds are very weakly covalent and can be viewed as sigma-hole interactions, s
14 o the presence of distinctly coexisting weak covalent and lone-pair interactions, give rise to cooper
15 h amines, highlighting the impact of metal-S covalent and metal-NH2 dative bonds in controlling the m
16 structure-guided development of a series of covalent and mutant-selective EGFR inhibitors that effec
17 e most relevant synthetic approaches for the covalent and non-covalent functionalization and characte
21 ich were used extensively to prepare several covalent and noncovalent heteroporphyrin-based multiporp
22 stic MD simulations to reveal the details of covalent and noncovalent protein interactions that link
23 itope peptides could be used as specific non-covalent and paratope-independent handles in targeted dr
26 e next identified residues important for the covalent attachment and selected the FrdA(E245) residue,
28 nalized pCB is shown to be recovered only by covalent attachment of amino acid deactivation agents to
30 um groups with ERGO and subjected to further covalent attachment of Azure A (Azu-A) mediator or gluco
31 robe and PAMAM-Dendrimers/AuNPs was used for covalent attachment of CA125-antibody and completing the
32 describe a novel method that integrates the covalent attachment of DNA handles to target proteins wi
33 homologs, but the mechanisms underlying the covalent attachment of FAD remain to be fully elucidated
36 in a process referred to as pupylation, the covalent attachment of prokaryotic ubiquitin-like protei
37 O-Linked glycosylation often involves the covalent attachment of sugar moieties to the hydroxyl gr
40 red to native beta-Lactoglobulin and the non-covalent beta-lactoglobulin/caffeic complex (betaLg/CA).
42 nding free energy and the overall reversible covalent binding affinity using a two-state binding mode
44 cation of soft organic electrophiles through covalent binding at its cysteine (Cys) thiol group, foll
45 bout 160 of the new products were formed via covalent binding of 3-QCA with DOM molecules of above-av
46 -ATP monolayers previously oxidized, and the covalent binding of amino-oligonucleotides to pure p-MBA
48 hese products were presumably formed through covalent binding of CBZ phototransformation products wit
49 ere we describe a detailed protocol based on covalent binding of nucleophilic groups on Wnt proteins
50 eaction mechanism could be inferred from the covalent binding of the proteasome-specific inhibitor ep
53 on warhead scaffold, in both noncovalent and covalent binding states, and for two highly homologous p
54 alcohol dehydrogenase enzyme immobilised by covalent binding through an array composed of carbon Tor
60 d a validated 8-N-benzyladenosine ligand for covalent bond formation and confirmed targeted irreversi
61 chemistry the study of the interplay between covalent bond formation and noncovalent interactions has
63 rements together provided strong evidence of covalent bond formation between the photoacids and the p
65 th processes, which involve a combination of covalent bond formation, degenerate bond exchange, and n
68 anic frameworks (COFs), the chemistry of the covalent bond was extended to two- and three-dimensional
70 ts are linked by a genuine d(10)-d(10) polar-covalent bond with ligand-unassisted Cu(I)-Au(I) distanc
71 captured HIV-1 Env trimers via a more stable covalent bond, resulting in enhanced germinal center B c
72 rst C-H functionalization could involve Ru-N covalent bond, the second C-H functionalization most lik
73 his seminal work on what became known as the covalent bond, which has since occupied a central role i
75 topic abundance (4.7%) establish the through-covalent-bond (29)Si-O-(29)Si connectivities of distinct
76 cture calculations to quantify the extent of covalent bonding in-arguably-one of the most difficult s
78 found to sensitize ground-state Cu(I)-Au(I) covalent bonds and near-unity phosphorescence quantum yi
79 nclusion that PL inhibits GSTP1, which forms covalent bonds between GSH and various electrophilic com
80 nzymatic, or chemoenzymatic formation of new covalent bonds between two polypeptides, or between a si
81 In this context, the generation of transient covalent bonds is a fundamental tool for nonequilibrium
84 SCAN accurately describes the balance among covalent bonds, hydrogen bonds, and van der Waals intera
86 ognition strategy to a new family of tubular covalent cages to create both 1D porous nanotubes and 3D
87 ent linkage induced by DOPA oxidation allows covalent capture of the aligned nanofiber bundles, enhan
89 sses three key properties: (i) an all-sp (3) covalent carbon framework that produces high-frequency p
91 eral conditions to explore the nature of the covalent chemical bond, non-covalent interactions, bond
95 entation chain transfer (RAFT)-based dynamic covalent chemistry is incorporated into liquid crystalli
96 rigger morphological transitions via dynamic covalent chemistry offers considerable scope for the des
99 works (which are usually prepared by dynamic covalent chemistry) and for the synthesis of viologen-ba
103 acterized C2O4(2-) oxalate in Li2C2O4 viable covalent CO2-based nets emerge upon compression within t
104 aromatic module and the reactive group, each covalent combination of the modules yields one exclusive
106 and sTF G109C spontaneously assembled into a covalent complex with functional properties similar to t
108 and mitoxantrone-induced TOP2A and TOP2B-DNA covalent complexes in cells, which are converted to DNA
114 nanowire surface that are effective for the covalent conjugation of antibody without further surface
115 immune responses can only be achieved by the covalent conjugation of CPSs with carrier proteins to pr
117 se results offer proof-of-concept of how the covalent conjugation of two angiogenesis-related small m
120 ) molecules underwent dehydrocyclization and covalent coupling reactions on Au(111) according to scan
121 lysis, apparently resulting from significant covalent cross-linking that occurs during the treatment
122 ssembling beta-sheet peptides to provide non-covalent cross-linking through beta-sheet assembly, rein
123 all molecules and post self-assembly undergo covalent cross-linking using copper catalyzed click chem
126 ed peptide mapping revealed as many as seven covalent cross-links in the HMW fractions, where oxidize
128 with one another and allowing their dynamic covalent crosslinkers to undergo intra- to interpolymer
129 th a small-amount dynamic CB[8]-mediated non-covalent crosslinking (2.5 mol%), yields extremely stret
134 SpyTag002 reaction enabled specific and covalent decoration of intimin for live cell fluorescent
137 e, we used rhDNase, which only forms His-His covalent dimers after light treatment to determine the f
139 rotein extensibility lies in the presence of covalent disulfide bonds, which significantly enhance pr
141 , and unique ADME assays of our irreversible covalent drug discovery program which culminated in the
144 rt the synthesis of a full-fledged family of covalent electron donor-acceptor1-acceptor2 conjugates a
145 from 5'-triphospho-RNA (pppRNA) to GDP via a covalent enzyme-pRNA intermediate to generate a 5'-cap s
146 y factor and bound dicarboxylates, stimulate covalent flavinylation by preorganizing the active site
149 the anticipated assembly intermediate during covalent flavinylation, FrdA(E245) variants had stabilit
150 z-protected donors revealed the formation of covalent FucN3 triflates and oxosulfonium triflates.
151 on nanotube nested in a charged, impermeable covalent functional shell, Tube(wedge)2 allows the semic
152 ynthetic approaches for the covalent and non-covalent functionalization and characterization of GBMs.
155 protein carriers, however they often require covalent fusion to the protein for efficient delivery.
156 LuPc2 incorporated SiO2 and PANI(PVIA); (ii) covalent grafting of PANI(PVIA) onto the surface of SiO2
161 -antibody detection was demonstrated via the covalent immobilization of bovine serum albumin antibody
162 made to explore the CHO-IL platform for the covalent immobilization of GOx enzyme which served well
163 sensor detection was improved with efficient covalent immobilization of purified single-stranded DNA
164 ed onto screen-printed carbon electrodes and covalent immobilization of the specific antibody for TGF
169 These findings establish a new modality for covalent inhibition of fibril formation and illuminate a
173 geting drugs, and, in particular, to THZ1, a covalent inhibitor of cyclin-dependent kinase 7 (CDK7).
174 Our goal was to develop an irreversible covalent inhibitor of FGFR1-4 for use in oncology indica
177 Herein, we present a series of targeted covalent inhibitors (TCIs) based on our previously repor
181 resented a unique challenge in the design of covalent inhibitors with appropriate pharmacodynamics pr
184 een a growing interest in exploring this non-covalent interaction in nanoscale drug delivery systems
185 er for assembly, the contribution of the non-covalent interaction is to direct the molecular-level ar
186 ults provide additional understanding of the covalent interaction of aromatic amine metabolites with
187 ich achieves JAK isoform specificity through covalent interaction with a unique JAK3 residue Cys-909.
189 e rational manipulation of these complex non-covalent interactions and their direct incorporation int
190 wo diverse catalytic systems with unique non-covalent interactions at the heart of each process.
191 er levels of aggregated protein, due to more covalent interactions between proteins, than the heated
192 bly of binary systems driven by specific non-covalent interactions can greatly expand the structural
193 is validated by directly connecting the non-covalent interactions defined through empirical data set
195 ested the late actinides participate in more covalent interactions than the earlier actinides, yet th
196 bsequently quantify the strengths of the non-covalent interactions using Kohn-Sham density functional
197 ed guest molecules demonstrates that the non-covalent interactions with the host hardly affect the di
198 are assembled into regular structures by non-covalent interactions, attract tremendous interests beca
199 he nature of the covalent chemical bond, non-covalent interactions, bond formation, and exotic 3-cent
200 By using specific, dynamic, and tunable non-covalent interactions, engineered approaches to drug del
205 eric complex exhibits the involvement of non-covalent intermolecular interactions that are localized
206 bitors promote mitochondrial turnover, while covalent Keap1 modifiers, including sulforaphane (SFN) a
207 cin SV and doxycycline), we demonstrate that covalent labeling and mass spectrometry (MS) can be used
214 o-acid nucleophiles have been used to create covalent ligands and drugs, but have, so far, been mainl
216 porphyrin nanohybrid materials with a direct covalent linkage between the graphene carbon network and
219 sing in vitro potential was developed by the covalent linkage of an oxime nucleophile and a periphera
220 les on carbon nanotubes was achieved through covalent linkage of phage capsid onto the carbon nanotub
221 ordingly, we tested both cobalt coupling and covalent linkage of the trimers to the liposomes by reen
224 gated platform is constructed on a series of covalent linkages between lectin molecules and a cystein
225 from WPM, stronger interactions, possibly by covalent linkages, are involved, providing new insights
226 IP.664 and native Env trimers but includes a covalent linker between gp120 and gp41, an engineered 20
227 r of o-, m-, or p-xylylene (o-, m-, or p-Xy) covalent linkers to produce o-ExBox(4+) (3.5 A), m-ExBox
228 ver drugs specifically to mitochondria is by covalent linking a lipophilic cation such as an alkyltri
229 lf-labelling enzyme tag, which catalyses the covalent linking of exogenously supplemented synthetic l
232 h a pressure induced transition is known for covalent liquids, but has not been observed for metallic
233 nthetic biology, nanodisc-technology and non-covalent mass spectrometry provides excellent synergies
235 ed to activate IKs channels depends on their covalent modification by small ubiquitin-like modifier (
236 bit the protein-protein interactions through covalent modification of cysteine residues within the RG
237 city is believed to occur mainly through its covalent modification of DNA, resulting in the formation
241 sting change in receptor molecules, either a covalent modification or conformation that enhances thei
246 Smurf1 and its homologue Smurf2 carry a non-covalent Nedd8-binding site within its catalytic HECT do
247 ked polymer networks, we demonstrate dynamic covalent network polymers displaying both malleability a
249 s in line with a parallel study showing that covalent oligomerization of ILEI is essential for EMT an
252 nt the stereoselective synthesis of a chiral covalent organic cage consisting of three redox-active n
253 nthesized a two-dimensional (2D) crystalline covalent organic framework (sp(2)c-COF) that was designe
259 ntial of metal-organic frameworks (MOFs) and covalent organic frameworks (COFs) as platforms for the
261 veloped a facile, salt-mediated synthesis of covalent organic frameworks (COFs) in the presence of p-
266 le Si-O chemistry for the crystallization of covalent organic frameworks, we demonstrate the simple o
267 larities result in the formation of a robust covalent organic gel framework (COGF) that is organized
268 l or microwave conditions, a viologen-linked covalent organic network in the form of hollow particles
269 e repertoire of tools for the fabrication of covalent organic networks (which are usually prepared by
270 Morphology influences the functionality of covalent organic networks and determines potential appli
271 rous acid in vitro, we identified additional covalent oxidative modifications on four tyrosine residu
272 ospholipids (dithranol, THAP, HABA), and non-covalent peptide-peptide and protein-peptide complexes (
273 mechanism, which involves the formation of a covalent phosphoramidate histidine-DNA adduct for cell-t
281 an be carefully adjusted to lower energy via covalent postsynthetic modification at the amino group s
282 eties in these polymeric mimics improves non-covalent protein delivery, providing crucial design para
283 ide synthesis involves the interplay between covalent protein modifications, conformational fluctuati
286 sory adaptation involves feedback control of covalent receptor modifications by two enzymes: CheR, a
287 e not observed directly, but rather leave a "covalent record" of the interaction that is measured wit
290 provide a basis for the design of optimized covalent-reversible inhibitors aimed at emerging flavivi
291 phy confirmed the formation of the predicted covalent S-homopyruvoyl adduct of the active-site Cys191
293 mediating targeted cell penetration and non-covalent self-assembly with therapeutic cargo, forming H
294 losure of microcracks formed parallel to the covalent-sp(2)-bonded graphene layers at higher temperat
296 (110) on the formation of organometallic and covalent structures for Ullmann-type coupling reactions.
297 As(H)K and ThAsTh linkages exhibit polarized-covalent thorium-arsenic multiple bonding interactions,
299 gy domain (THD) of human (h)4-1BBL forms non-covalent trimers, we found that m4-1BBL formed a covalen
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