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1 cryoEM images of WEEV were used to determine the first t
4 s-linked heads and tails and produced an 8-A cryoEM reconstruction of the cross-linked head-tail comp
6 ing actin's D-loop region based on our 3.9 A cryoEM reconstruction suggests that oxidation by Mical r
13 esolution is not always uniform throughout a cryoEM map, and it can be useful to estimate the resolut
15 al. show us how they are put together with a cryoEM structure of the 90S processome that initiates ri
16 with Fab C10 stabilize the viruses allowing cryoEM structural determination to ~10 angstrom resoluti
17 ical importance of the N-terminal 10 aa, and cryoEM reconstruction of the one with six residues trunc
20 y between live-cell fluorescence imaging and cryoEM/ET structural analysis, as demonstrated by visual
21 , interaction mapping, mass spectrometry and cryoEM to study the role of ZNHIT2 in the regulation of
23 wild-type B19 with the crystal structure and cryoEM reconstruction of recombinant B19 particles consi
24 lations, analytical ultracentrifugation, and cryoEM to structurally characterize the solution state o
27 odeling Y30, F32 and I34 of C11 in available cryoEM pol III structures predicts a hydrophobic patch t
29 rmination of the structure of the complex by cryoEM revealed the "orphan" two-component response regu
31 ccess in ribosome structure determination by cryoEM has opened the door to defining structural differ
32 he structure of E.coli RecBCD, determined by cryoEM at 3.8 A resolution, with a DNA substrate that re
36 secondary structural elements identified by cryoEM locates 15 amphipathic alpha-helical regions on t
38 with dimensions similar to those observed by cryoEM; on the other hand, the hydrophobic effect shrink
44 form of PFK1 (PFKL) in the R- and T-state by cryoEM, providing insight into eukaryotic PFK1 allosteri
47 ese mechanistic principles were validated by cryoEM analysis of an expanded variant of Hsp16.5 in com
49 V MCP capsomers were subtracted from the CIV cryoEM reconstruction, showed that there are at least th
53 ilities and limitations of two complementary cryoEM techniques for studying bacterial secretion syste
55 ticle determined by electron cryomicroscopy (cryoEM) and single-particle analysis at about 4.3 A reso
57 , was determined by electron cryomicroscopy (cryoEM) and three-dimensional reconstruction at 23-A res
58 xes.Single-particle electron cryomicroscopy (cryoEM) can circumvent some of the problems of x-ray cry
59 rify a specimen for electron cryomicroscopy (cryoEM) faster than proteins diffuse to the air-water in
60 ementing this work, electron cryomicroscopy (cryoEM) has provided relatively low-resolution structure
61 graphy (cryoET), an electron cryomicroscopy (cryoEM) modality, has changed our understanding of biolo
62 econstructions from electron cryomicroscopy (cryoEM) of bovine papillomavirus at 9 A resolution with
63 w-resolution (20 A) electron cryomicroscopy (cryoEM) structures of this gp140 trimer, which adopts tw
65 have determined by electron cryomicroscopy (cryoEM), at about 11 A resolution, the structure of a cl
71 using minimal shell components and determine cryoEM structures of these to decipher the principle of
76 otide-bound and -free states, and the fitted cryoEM structure of the D2 hexamer ring, which provide a
78 site for structure-based drug design and for cryoEM to become widely interesting to pharmaceutical in
80 esent a multifunctional specimen support for cryoEM, comprising large-crystal monolayer graphene susp
82 rmining regions, and discover sequences from cryoEM density maps of serum-derived polyclonal antibodi
83 the particle properties leading to improved cryoEM outcomes, especially for challenging membrane pro
86 sids conjugated to Au102_C6MI were imaged in cryoEM for single particle reconstruction to localize Au
87 identifying regions or domains or motifs in cryoEM maps of large macromolecular assemblies (such as
89 ld, and the bound Nanogold was visualized in cryoEM images of the reduced, gold-labeled receptor.
92 inding capabilities and fitting the CTD into cryoEM density of the phi29 motor shows that the CTD dir
93 ere we present four in situ and one isolated cryoEM structures of the trimeric spike of the cytoplasm
96 s on the capsid by cryoelectron microscopic (cryoEM) analysis, and testing their effects on viral inf
99 combined modes of electron cryo-microscopy (cryoEM), we have solved the structure of the Pyrococcus
101 olution by means of cryoelectron microscopy (cryoEM) and three-dimensional image reconstruction.
103 eling methods using cryoelectron microscopy (cryoEM) density maps as constraints are promising approa
105 been determined by cryoelectron microscopy (cryoEM) image reconstruction to a resolution of approxim
107 Here, we report cryoelectron microscopy (cryoEM) structural analysis of two gammadelta TCRs, G115
108 were determined by cryoelectron microscopy (cryoEM) to 7.5-A and 11.3-A resolution, respectively, as
110 le fluorescence and cryoelectron microscopy (cryoEM) to show that CENP-A incorporation establishes a
111 this paper, we used cryoelectron microscopy (cryoEM) to visualize destabilized mutants of T4 lysozyme
112 onance (SSNMR), and cryoelectron microscopy (cryoEM), have enabled high-resolution insights into thei
113 electrophoresis and cryoelectron microscopy (cryoEM), the ability of the reconstituted LDL receptor t
114 of single particle cryoelectron microscopy (cryoEM), x-ray crystallography has remained the preferre
118 4 angstrom by cryogenic electron microscopy (cryoEM) and built an atomic model for the entire Tv-DMT.
119 stion by combining cryo electron microscopy (cryoEM) and cross-linking mass spectrometry (XL-MS) to s
121 rus type 1 by cryogenic electron microscopy (cryoEM) and exhaustively classified them to characterize
122 ed single particle cryo-electron microscopy (cryoEM) and led to a wave of near-atomic resolution (typ
124 ugh co-analysis by cryo-electron microscopy (cryoEM) and solid-state nuclear magnetic resonance (SSNM
131 bS antagonist; its cryo-electron microscopy (cryoEM) image suggests that the N-terminal domains of th
133 ss that has turned cryo-electron microscopy (cryoEM) into an exceptional SBDD tool, and the wealth of
135 5.3 A resolution, cryo-electron microscopy (cryoEM) map of Chikungunya virus-like particles (VLPs) h
136 -atomic-resolution cryo electron microscopy (cryoEM) maps are reconstructed ab initio from unidentifi
138 uited for the cryogenic electron microscopy (cryoEM) method microcrystal electron diffraction (MicroE
139 in single-particle cryo electron microscopy (cryoEM) now enable structure determination at atomic res
141 were determined by cryo-electron microscopy (cryoEM) reconstruction to resolutions varying from 8.5 t
142 11 single-particle cryo-electron microscopy (cryoEM) reconstructions of the complex of bacterial 30S
143 ngle-particle cryogenic electron microscopy (cryoEM) remains a bottleneck for routinely obtaining hig
145 nometer resolution cryo-electron microscopy (cryoEM) structural analysis of an adenoviral vector, Ad3
147 three-dimensional cryo-electron microscopy (cryoEM) structure of an infectious ZIKV (strain H/PF/201
148 Here we report a cryo-electron microscopy (cryoEM) structure of PDE6 complexed to GTP-bound Galpha(
149 ere we present the cryo-electron microscopy (cryoEM) structure of the hnRNPA2 LCD fibril core and dem
150 ella, based on the cryo electron microscopy (cryoEM) structure of the Methanospirillum hungatei archa
151 nometer resolution cryo-electron microscopy (cryoEM) structures of HD5 complexed with both neutraliza
152 ur high-resolution cryo-electron microscopy (cryoEM) studies of B41 in complex with a B41-specific an
154 e, consistent with cryo-electron microscopy (cryoEM) tomography, within which the boundaries of signa
155 Single-particle cryo electron microscopy (cryoEM) typically produces density maps of macromolecula
156 ng single-particle cryo-electron microscopy (cryoEM) under catalytic turnover conditions with site-di
158 ngle-particle cryogenic electron microscopy (cryoEM), revealing subtype-specific interactions and RNA
159 ion or cryogenic-sample electron microscopy (cryoEM), scientists verify whether small-molecule ligand
160 this T6SS and, by cryo electron microscopy (cryoEM), show the structure of its post-contraction shea
161 lies based on cryogenic electron microscopy (cryoEM), the dimerization interface is substantially dis
162 em (T2SS) by using cryo-electron microscopy (cryoEM), these pili showed indistinguishable helical par
164 Here, based on cryo-electron microscopy (cryoEM), we report a 7-A resolution structure of the inf
167 As an example, we apply these methods to new cryoEM maps of the mature bacteriophage P22, reconstruct
170 cines.The result shows that a combination of cryoEM and molecular modeling can yield details of the a
176 d mapping conserved suppressor residues onto cryoEM structural models of assembling human spliceosome
178 nted where SID agrees with solved crystal or cryoEM structures or provides connectivity maps that are
182 Here, we establish through single particle cryoEM and chemical analysis of two forms of the Azotoba
183 manuscript demonstrate that single particle cryoEM is capable of competing with X-ray crystallograph
184 ombine biochemical analysis, single particle cryoEM, and DEER spectroscopy in lipid bilayers along wi
186 ve examined the potential of single-particle cryoEM for determining the structure of influenza-virus
192 ng the C-terminal half of SCP and performing cryoEM reconstruction, we demonstrate that SCP's N-termi
196 However, the vast majority of published cryoEM methodologies focus on the characterization of ae
207 acid sequences, the 2.7 angstrom resolution cryoEM map showed Nora virus to have T = 1 symmetry with
210 Here, we report the near-atomic resolution cryoEM structures of the Escherichia coli AcrAB-TolC mul
211 apsid proteins in our near-atomic-resolution cryoEM map of the grass carp reovirus virion, a member o
213 g from, that inferred from a high resolution cryoEM structure of a triskelion in a clathrin basket.
221 techniques with the subnanometer-resolution cryoEM structure of rotavirus, we now provide a more det
223 et's first CNN pretrained with only a single cryoEM dataset can be used to detect particles from diff
231 of isolated C-linker/CNBD fragments and the cryoEM structures of related CNG, HCN, and KCNH channels
232 gh-resolution structure determination by the cryoEM method MicroED and potentially by serial femtosec
233 the resulting capsid, which was shown by the cryoEM study to closely resemble the infectious mature v
234 fluorescence measurements, we determine the cryoEM structure of the naturally long-lived ribosome co
235 om native V. cholerae cells to determine the cryoEM structure of the VcPilQ secretin in amphipol to ~
237 antibody to block fusion, we determined the cryoEM structures of the C10-ZIKV complex at pH levels m
238 The structural features revealed from the cryoEM map lead to a juxtaposed stacking model of choles
240 rientation between helix 9 segments from the cryoEM study, the solid state NMR data lead to a unique
242 alysis of the conformational ensemble in the cryoEM data highlights the dynamic nature of the contact
243 cated localizes the N terminus of SCP in the cryoEM density map and enables us to construct a pseudoa
244 NMR models for Abeta(17-42) fit well in the cryoEM density map and reveal that the juxtaposed protof
245 nterface at the local three-fold axis in the cryoEM map and confirmed its functional importance by mu
248 ing of the Fab and virus structures into the cryoEM densities identified the footprints of each antib
249 and penton base crystal structures into the cryoEM density established that alpha-helices of 10 or m
251 er, the resulting model fits better into the cryoEM density map than the initial template structure.
254 3)Sigma3(3) heterohexameric complex into the cryoEM image of an intact virion, reveal molecular event
255 The overall fit of the L1 model into the cryoEM map is excellent, but residues 402-446 in the 'C-
256 logy model for the MCP upper domain into the cryoEM map reveals that SCP binds MCP largely via hydrop
260 , giving us an independent validation of the cryoEM results.The two structures also augment our under
263 for medaka and human is modeled based on the cryoEM structure of Tetrahymena telomerase, providing in
278 ts co-localize with Pol V, and we report the cryoEM structures of two complexes associated with Pol V
281 opaz-Denoise will be of broad utility to the cryoEM community for improving micrograph and tomogram i
283 tomated fLM grid atlas that is linked to the cryoEM grid atlas, followed by cryofLM imaging after fre
286 argeted areas are automatically converted to cryoEM/ET and refined using fluorescent fiducial beads.
294 re to approximately 10-A resolution by using cryoEM and the iterative real-space reconstruction metho
295 Here, we overcome these challenges by using cryoEM to visualize pMMO and AMO directly in their nativ
300 he reduced LDL receptor was visualized using cryoEM; reduced LDL receptors showed images with a diffu