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1 the nanoscale architecture of FAs, akin to a molecular ruler.
2 rentiation and may, therefore, function as a molecular ruler.
3 labeled molecules and quantum dots to act as molecular rulers.
4 gonucleotides (dT) with varying lengths as a molecular ruler and also as the substrate, we have deter
5 st Dicers establishes a paradigm for natural molecular rulers and imparts substrate preferences with
6                                Nanoplasmonic molecular rulers and integrated photoacoustic-phototherm
7  that are important for, e.g., their use as "molecular rulers" and "molecular scaffolds".
8              We describe herein a series of "molecular rulers" and their use in assessing the topolog
9 ized solvatochromic surfactants that act as 'molecular rulers' and resonance-enhanced second-harmonic
10 undamental problem by extending the standard molecular ruler based on Forster resonance energy transf
11       This DNA substrate can be likened to a molecular ruler because it consists of a 235-bp double-s
12              Ultimately, our long-range SERS molecular rulers can be an important step toward underst
13                                            A molecular-ruler clone panel for each chromosome arm was
14  the 3'-CCA end by the THUMP domain yields a molecular ruler defining the specificity for U8 thiolati
15 -fCzrA), 2 (10L-fCzrA), or 3 (15L-fCzrA), as molecular rulers designed to restrict any quaternary str
16 of the polymer extension process, whereas a "molecular ruler" determines length by measurement agains
17 lved remain unresolved, it is proposed that "molecular rulers" dictate the lengths of the actin filam
18                                            A molecular ruler, FliK, controls the length of the flagel
19 tacrine affinities thus provided a sensitive molecular ruler for assigning the binding locations of t
20 er it unlikely that FliK is functioning as a molecular ruler for determining hook length and conclude
21 ion of experiments on polyproline, used as a molecular ruler for FRET experiments, namely the potenti
22         Titin has been suggested to act as a molecular ruler for the precise assembly of thick filame
23 ve Ran and chromatin position, function as a molecular ruler for the recruitment and localization of
24 e suggests that the coiled-coil CRs act as a molecular ruler for the separation between two recognize
25 lecule FRET (smFRET) has long been used as a molecular ruler for the study of biology on the nanoscal
26 s a universal length control mechanism using molecular rulers for T3S systems.
27 ng a broad range of substrates, which act as molecular rulers for the substrate channel in MCR.
28    We present evidence that the distinctive "molecular ruler" function of the ATP-dependent single st
29        E-Tmod/TM5 complex may function as a "molecular ruler" generating actin protofilaments of appr
30 ken together, these data do not support the "molecular ruler hypotheses".
31 lex of FTase with FPP leads us to suggest a "molecular ruler" hypothesis for isoprenoid substrate spe
32 does not generate peptides according to the "molecular ruler" hypothesis, and 2) other peptidases mus
33 y rigidify the substrate and function as the molecular ruler in determining the site of cleavage.
34              The use of the rigid ligands as molecular rulers in conjunction with double-mutant cycle
35         The use of the rigid dTC analogs as "molecular rulers" in conjunction with double-mutant cycl
36 ncremental fashion using rigid oligoproline "molecular rulers" in the 18-45 A length range.
37 e Salmonella flagellar hook, uses a secreted molecular ruler, InvJ, to determine needle length.
38 d specifies the 5'-splice site and that this molecular ruler is conserved among a subclass of group I
39 ending the range of optical based methods in molecular rulers is an important leap forward for biophy
40 lthough on the surface, nebulin looks like a molecular ruler, it may be playing a more complex role i
41                                            A molecular ruler mechanism based on observed water positi
42 ementary mutational analysis in sGC reveal a molecular ruler mechanism that allows sGC to favor NO ov
43                                         Its "molecular ruler" mechanism involves binding the hydropho
44                  We propose a two-checkpoint molecular ruler model for tRNA decoding in which the inf
45 e explained by either a molecular clock or a molecular ruler model.
46 ent of the active sites (as proposed by the "molecular ruler" model); instead, we propose that proteo
47 filaments are likely specified by the giant "molecular ruler" nebulin, which spans the length of the
48                                         The "molecular ruler" of AdnAB is regulated by ATP, which eli
49 urfactants have the potential to function as molecular rulers: probes of molecular-scale variation in
50 ts in septin filaments and thus serves as a "molecular ruler." Second, the method yields little or no
51  by scaled-particle adsorption theory, these molecular rulers show how membrane-bending elasticity ca
52 n nebulin has been proposed to function as a molecular ruler specifying filament lengths.
53 anometal surface energy transfer (NSET) is a molecular ruler technique that has been utilized to opti
54                      Thus, Dicer itself is a molecular ruler that recognizes dsRNA and cleaves a spec
55 rates, illustrating that RhlA functions as a molecular ruler that selectively extracts 10-carbon inte
56  hook-length control in which FliK acts as a molecular ruler that takes measurements of rod-hook leng
57 lex DNA molecule (30 bp) was used as a 10-nm molecular ruler to confirm the validity of the method.
58                  The DNA can also serve as a molecular ruler to control the distance-dependent synerg
59 ator by a coiled-coil structure that forms a molecular ruler to determine product length.
60 lution has the potential to act as a precise molecular ruler to determine the positions of specific c
61  mechanism by which Cas1-Cas2 functions as a molecular ruler to dictate the sequence architecture of
62 apable of using the size of naked dsDNA as a molecular ruler to distinguish self from nonself.
63 th the experimental values and established a molecular ruler to explore steric and magnetic environme
64 ght act after initial substrate binding as a Molecular Ruler to form a protein-DNA complex with the s
65 thesize that a Ran(GTP) gradient serves as a molecular ruler to interpret the asymmetric position of
66      In these experiments, DNA was used as a molecular ruler to measure the average distance (d(blob)
67 al muscle that has been proposed to act as a molecular ruler to specify the thin filament lengths cha
68 ized nonpolar thymidine and uracil mimics as molecular rulers to probe the active site steric constra
69 ine tracts in a polycytosine chain served as molecular rulers to probe the distance dependence of the
70                            We used DNA as a "molecular ruler" to measure intra-epitope distances on v
71 arrow with a fixed terminus, it can act as a molecular 'ruler' to select alkyl chains of a particular
72 e extremely stable Nup107-160 structure as a molecular ruler, we defined the practical labeling radiu
73 s that the A29 interaction sets one end of a molecular ruler whose other end specifies the 5'-splice
74  for values <70 nm, which enables the use of molecular rulers with known thicknesses (such as self-as
75 gy was found between the FliK proteins and a molecular ruler, YscP, from a virulence-associated type-

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