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1 spatially on subcellular or tissue scale via photocleavage.
2 xplain both the kinetics and products of the photocleavage.
3 requires visible light (lambda = 456 nm) for photocleavage.
4 rst report of its production via bisretinoid photocleavage.
5 e fluorescent signal from Bodipy-650 and its photocleavage.
6                           O2 is required for photocleavage.
7                                For 1a,b, Phi(photocleavage) = 0.24-0.38, whereas Phi(photocleavage) =
8     In adult fly neurons in vivo, Split-Miro photocleavage affects both mitochondrial trafficking and
9 se fluorescent tags can be removed easily by photocleavage after the identification of each nucleotid
10 and hybridization of DNA), sequence-specific photocleavage agents, and self-assembling components in
11  released from the solid-phase support by UV photocleavage and analyzed by capillary liquid chromatog
12 relation between the concentration-dependent photocleavage and enzymatic activities is also demonstra
13 enolic substituents (Y = CN, CF3, H) undergo photocleavage and release of 4-YC6H4OH with formation of
14 ving groups (LG) at the C-3 position undergo photocleavage and release of carboxylic acids with forma
15 lecule studies: lack of fluorophore mediated photocleavage and staining that does not perturb polymer
16 revealed both the structural implications of photocleavages and photoadduct formation.
17 anyl, indicated a different uranyl-dependent photocleavage as well.
18 mode of binding, versus that determined by a photocleavage assay described here (external stacking),
19                                      Using a photocleavage assay, mismatched sequences, and competiti
20 ntercalative binding, it is invisible to the photocleavage assay.
21 onstant and variable sequence contexts using photocleavage assays indicates that the recognition of b
22                                              Photocleavage assays reveal a several base pair region f
23 -quadruplex interaction (polymerase stop and photocleavage assays) and topoisomerase II interaction (
24 stent with a mechanism involving bisretinoid photocleavage at sites of singlet molecular oxygen addit
25  to elucidate the mechanism of the competing photocleavage at the boron and meso-position.
26     The P2VP coronas were readily removed by photocleavage at the ONB linker, leading to PFS cylinder
27                      The approach utilizes a photocleavage bead-based microfluidic device to synthesi
28                   Agreement is found between photocleavage by the mismatch-specific probes and defici
29  Phi(photocleavage) = 0.24-0.38, whereas Phi(photocleavage) = ca. 0.05 for 1c.
30  Py-Phe in recognition and its minor role in photocleavage chemistry are demonstrated.
31  cross-linked peptides with on- and off-line photocleavage coupled with novel targeted data dependent
32 nder anaerobic conditions via Norrish Type I photocleavage during Pyrex filtered photolysis of the be
33                     Proteins are released by photocleavage, eluted, and subsequently analyzed by quan
34                                 Although DNA photocleavage experiments demonstrate that their binding
35                                          DNA photocleavage experiments demonstrate that, upon photoac
36                                              Photocleavage experiments demonstrated that the modified
37                                          DNA photocleavage experiments reveal that all complexes bind
38                                        Laser photocleavage experiments revealed two ethidium-binding
39                                              Photocleavage experiments show that Rh(bpy)(2)(chrysi)(3
40                                              Photocleavage experiments were carried out to investigat
41              Copper cleavage experiments and photocleavage experiments with [Rh(phi)(2)bpy'](3+) comp
42                                  Through DNA photocleavage experiments, Rh(bpy)2(chrysi)3+ is shown t
43 ort the development of new methods, based on photocleavage, for the purification and printing of nasc
44 ether, these experiments suggest that uranyl photocleavage has been successfully used to probe cataly
45                         Additionally, before photocleavage, immunogold can be employed to label prote
46 d from a ketone precursor via Norrish Type I photocleavage in a dinucleotide, single-stranded, and do
47 d from a ketone precursor via Norrish Type I photocleavage in single and double stranded RNA.
48 6 x 10(7) M(-1), respectively; site-specific photocleavage is evident at nanomolar concentrations.
49                      The high specificity of photocleavage may be valuable in targeting specific site
50 ino group can be used as an affinity tag for photocleavage-mediated affinity purification and phospho
51 d three-dimensionally localized uncaging and photocleavage, not only in cell biology and neurobiology
52 hold formation method, which is based on the photocleavage of 2-nitrobenzyl linker-embedded DNA hairp
53 he method involves sequential Norrish Type I photocleavage of a ketone (7b) and beta-fragmentation of
54 ) in RNA oligonucleotides via Norrish type I photocleavage of a ketone-substituted nucleotide yields
55 rough independent spatiotemporally regulated photocleavage of crosslinks and photoconjugation of pend
56              Here we show how Norrish Type I photocleavage of dibenzyl ketone can be used to independ
57 ic alcohols and phenols upon irradiation via photocleavage of ether linkages.
58                                Site-specific photocleavage of hen egg lysozyme and bovine serum album
59                                              Photocleavage of lysozyme and BSA was achieved with high
60                            Quantum yields of photocleavage of lysozyme and BSA were 0.26 and 0.0021,
61 s have also been exploited, for example, for photocleavage of nucleic acids and for the destruction o
62          The compounds exhibited significant photocleavage of plasmid DNA upon visible light irradiat
63 sult is achieved by introducing radicals via photocleavage of residual photoinitiator in the polymer
64  a practical method to perform the reductive photocleavage of sulfonamides using thioureas as organop
65                                          The photocleavage of supercoiled DNA by (S)-A-62176 is unaff
66  only a fraction of the change caused by the photocleavage of the 2-nitrobenzyl groups.
67 ce increases by ~80% after the intracellular photocleavage of the 2-nitrobenzyl quenchers.
68          Under acidic conditions (pH = 2.5), photocleavage of the Ar-Cl bond occurred and a phenyl ca
69 rupt normal RNA function, whereas subsequent photocleavage of the cross-linker restores activity.
70                           Here, we show that photocleavage of the dynein heavy chain dramatically inh
71           We also systematically studied the photocleavage of the fluorescent dye from a DNA molecule
72 NA, detection of the fluorescent signal, and photocleavage of the fluorophore.
73                                          The photocleavage of the immobilized DNA was investigated di
74 C identical withN) is only observed from the photocleavage of the isomer 1a, whereas formation of the
75                                              Photocleavage of the labile linker was followed by direc
76 enzyl linker did not hinder the quantitative photocleavage of the linker in the DNA molecules.
77                                       Direct photocleavage of the oxalate linkage by laser flash phot
78                               Norrish type I photocleavage of the tert-butyl ketone (2b) enabled stud
79 ctrophoresis reveals significantly less TOTA photocleavage of these quadruplex telomeric repeats when
80 ion of plasmid bioactivity, the presence and photocleavage of this relatively small number of cage gr
81 splaced strand, consistent with the observed photocleavage pattern.
82     Mass spectral analysis reveals different photocleavage products associated with the two binding m
83                                          The photocleavage products were characterized by HPLC and ma
84 tate dynamics of the complexes and their DNA photocleavage properties.
85              Empty DR molecules generated by photocleavage rapidly bound peptide but quickly resolved
86 s, and inhibition studies, indicate that the photocleavage reaction occurs by a free radical mechanis
87                 The (S)-A-62176-mediated DNA photocleavage reaction requires Mg(2+).
88 henium (Ru) complex with NIR light-triggered photocleavage reaction.
89 -A-62176 is much more efficient that the DNA photocleavage reactions of the fluoroquinolones norfloxa
90  photo-click reaction for bioconjugation and photocleavage reactions that allow for the removal of pr
91 nd mismatched DNA, but for these conjugates, photocleavage remains selective for the mismatched site,
92                 RNase T(1) digestion and FMN photocleavage showed that circular permutation of the RN
93 to augment mitochondrial motility, sustained photocleavage shows that Split-Miro is surprisingly disp
94 f the resulting fragments indicated that the photocleavage sites of Py-D-Phe on BSA and lysozyme are
95 ly on the basis of structural models and DNA photocleavage studies of binding.
96 y-Phe isomers is further examined in protein photocleavage studies.
97  dramatically increased efficiency of ds DNA photocleavage, the most therapeutically valuable type of
98 borine is a cyclic carbamate which undergoes photocleavage, thus resulting in overall CO2 splitting.
99 h sites have been determined by quantitative photocleavage titration and yield values which vary from
100  base CA and CC mismatches, obtained through photocleavage titration or competition, vary from 10(4)
101                                              Photocleavage titrations reveal that the metal complex b
102 position, 5-phenylisothiazole also undergoes photocleavage to 2-cyano-1-phenylethenethiol which was t
103 approach that synergizes click ligation with photocleavage to achieve biorthogonal, light-triggered b
104 ome dispersion) and to release the trap upon photocleavage to follow the cell's return to homeostasis
105 e specifically, nitrene 2 does undergo alpha-photocleavage to form benzoyl radicals and iminyl radica
106                                              Photocleavage to HO + SO arises as the major solar-induc
107                      Herein, we adopt uranyl photocleavage to probe specific uranyl-binding sites in
108 th: Photolabile molecular units that undergo photocleavage under light of different wavelengths can b
109 from a benzyl ketone (2a) via Norrish type I photocleavage upon irradiation at lambdamax = 350 nm.
110                                          The photocleavage was a general reaction, with the somewhat

 
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