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1 mutant together with rhizobia, and by using immunogold labeling.
2 oscopic observations of immunoperoxidase and immunogold labeling.
3 tural techniques together with postembedding immunogold labeling.
4 by immunoblotting, immunocytochemistry, and immunogold labeling.
5 was studied by biochemical fractionation and immunogold labeling.
6 with dendrites, some of which contained MOR immunogold labeling.
7 tomography and a compositional analysis via immunogold labeling.
8 sing confocal microscopy and ultrastructural immunogold labeling.
9 these fractions and was detected on CCVs by immunogold labeling.
10 orescent microscopy and electron microscopic immunogold labeling.
11 luorescence and by electron microscopy using immunogold labeling.
12 ring the movement of Oxtr-EGFP as well as by immunogold labeling.
13 aptic vesicle protein synapsin and glutamate immunogold labeling.
14 enin in dense core granules was confirmed by immunogold labeling.
15 otin-peroxidase and GABA with post-embedding immunogold labeling.
16 s) in single membranes by negative stain and immunogold labeling.
17 l microscopy, subcellular fractionation, and immunogold labeling.
18 llow fluorescent protein) were identified by immunogold labeling.
19 L17 and UL25 on B capsids was examined using immunogold labeling.
20 ization within the podocyte was confirmed by immunogold labeling.
21 opy, and grid-mapped freeze-fracture replica immunogold labeling, 10 close appositions revealing axoa
24 based on biochemical and electron microscopy immunogold labeling analyses, AtPEP12 is likely to be lo
25 g of the complexes by immunofluorescence and immunogold labeling and by their distribution on Percoll
27 was more dramatic than that of CD4INTRA; 6) immunogold labeling and electron microscopy demonstrated
31 embedding immunoperoxidase and postembedding immunogold labeling and electron microscopy to determine
35 ytoplasmic face of these native membranes by immunogold labeling and high-resolution TEM analysis.
37 also reacted with P. gingivalis fimbriae in immunogold labeling and immunoblot analysis, thereby ind
40 Toward that end, we also demonstrated by immunogold labeling and mass spectrometry that PilA is i
42 was visualized by electron microscopy using immunogold labeling and probed by fluorescence resonance
43 -mortem tissue using electron microscopy and immunogold labeling and revealed dityrosine crosslinks i
45 associated tyrosine kinases, Lyn and Syk, by immunogold labeling and transmission electron microscopi
46 chemical observations were corroborated with immunogold labeling and transmission electron microscopy
47 y immunoperoxidase staining and confirmed by immunogold labeling and was found to be in the cytosol a
48 nscription-PCR, immunoblotting, double-sided immunogold labeling, and attachment inhibition assays de
50 mutations using immunofluorescence staining, immunogold labeling, and PrP-green fluorescent protein c
51 , correlative light and electron microscopy, immunogold labeling, and thioflavin-S binding establishe
53 aAN101D- relative to WTalphaA protein during immunogold-labeling- and western blot analyses, includin
59 Ultrastructural immunohistochemistry with immunogold labeling confirmed that the MCT1 immunoreacti
60 tions along individual membrane tubules, and immunogold labeling confirmed the association of DLP1 wi
62 n based on immunoblot (Western) analysis and immunogold labeling correlated positively with nitrogena
64 sed on green fluorescent protein fusions and immunogold labeling data, the proteins are associated wi
65 s, the expression density of alpha 1 subunit immunogold labeling decreased by 37%, whereas that of al
66 not seen in a sla2/end4-1 mutant, and double-immunogold labeling demonstrated colocalization of Rsp5p
77 of curli was confirmed by Congo red binding, immunogold-labeling electron microscopy, immunoblotting,
80 super-resolution light microscopy as well as immunogold labeling EM in which both showed an even dist
81 of ultrastructural morphometry together with immunogold labeling enables the identification and quant
83 abeling in the presence of 0.3 M MgCl(2) and immunogold labeling for collagen types II and IX were an
92 vagal afferent axon terminals, 33% contained immunogold labeling for MOR within the axon terminal.
94 asymmetric synapses on dendrites containing immunogold labeling for NMDAR1, but NMDAR1 was more ofte
96 examined at the electron microscopic level, immunogold labeling for PRV was localized to neuronal so
97 <48 hr, extensive dendritic distribution of immunogold labeling for PRV was observed in cortico-accu
98 globular aggregates that displayed positive immunogold labeling for tau-P, as well as conformational
102 (for CAM II kinase-alpha) and postembedding immunogold labeling [for glutamate or gamma-aminobutyric
103 s question directly, freeze-fracture replica immunogold labeling (FRIL) and immunofluorescence (IF) w
104 focal microscopy and freeze-fracture replica immunogold labeling (FRIL), we demonstrate that gap junc
105 lized along the length of the flagella while immunogold labeling further localizes the PF16 protein t
106 and NHP2L1 colocalize to the nucleolus, and immunogold labeling further resolved the location of NHP
108 with intracellular membranes, not the PM; by immunogold labeling GAIP was found on clathrin-coated bu
112 cytometry and by both immunofluorescent and immunogold labeling in a subpopulation of IFN-gamma + LP
113 tibody specific for toxic oligomers and cryo-immunogold labeling in human IAPP transgenic mice, human
114 n, immunohistochemistry, and ultrastructural immunogold labeling in human white adipose tissue and in
120 We show that in both the shell and core, DAT immunogold labeling is present in tyrosine hydroxylase-i
127 utamate receptor subunit 1 (GluR1) and GluR4 immunogold labeling measurements, at both the soma and m
128 ion of DOR was examined using a preembedding immunogold-labeling method and ultrastructural analysis
129 For electron microscopic analysis using immunogold labeling, MV were divided into five zones fro
130 containing PyV-haufen by electron microscopy/immunogold labeling (n = 3), and (3) in urine samples co
132 unocytochemistry and freeze-fracture replica immunogold labeling of adult rat CNS, we investigated wh
134 te this, we combined freeze-fracture replica immunogold labeling of Cav2.1 channels, local [Ca(2+)] i
136 from the African clawed toad Xenopus laevis, immunogold labeling of component proteins and subsequent
138 erminals in the striatum contained extensive immunogold labeling of cytoplasmic surfaces of plasma me
139 maging analysis of DAT was combined with the immunogold labeling of DAT and quantitative electron mic
141 ral immunoperoxidase localization of KOR and immunogold labeling of Dyn to determine the major cellul
142 s of OBAP1 to yellow fluorescent protein and immunogold labeling of embryo transmission electron micr
152 of granular translocation, and that surface immunogold labeling of myeloperoxidase occurs only in th
153 face of the outer membrane was confirmed by immunogold labeling of non-permeabilized mitochondria.
156 preautonomic PVN neurons were identified by immunogold labeling of pseudorabies virus (PRV) transpor
159 cyte square arrays contain AQP4, we employed immunogold labeling of SDS-washed freeze-fracture replic
163 Consistent with its role in yolk uptake, immunogold labeling of the receptor reveals Yl in endocy
164 es in proximal dendrites using postembedding immunogold labeling of tissues from rats withdrawn for 2
165 osition was investigated using postembedding immunogold labeling of tropomyosin, spectrin, beta-actin
169 owever, a marked increase in ultrastructural immunogold-labeling of L-selectin was observed in respon
171 We performed electron microscopy (EM) with immunogold labeling on skin biopsy specimens from 7 pati
175 n be localized in the X-ray microscope using immunogold labeling protocols, tomography enables 3-D mo
177 munofluorescence and freeze-fracture replica immunogold labeling revealed a large variability in gap
183 on microscopic level, pre- and postembedding immunogold labeling revealed that 70-76% of connexin-36-
188 -scanning electron microscopy with Annexin V immunogold-labeling revealed a complex organization of t
189 dimensional structure of isolated PSDs using immunogold labeling, rotary shadowing, and electron micr
190 py on plasmid and genomic DNAs, and shown by immunogold labeling, SDS/PAGE, and immunoblotting to con
199 inated by vertically oriented filaments, and ImmunoGold labeling shows that PSD-95 is a component of
205 ver the glomerular filtration barrier, in an immunogold labeling study of internalization of oncolyti
206 s, the putative axon, had a greater level of immunogold labeling than that of the shorter processes,
207 ermore, we also show evidence by FRIL double-immunogold labeling that the NR1 subunit of the NMDA glu
210 tudy, we used electron tomography as well as immunogold labeling to analyze the morphology and distri
212 Here we use light microscopy and in vivo immunogold labeling to directly visualize the interphase
214 rons (i.e., from V1 to LM) and postembedding immunogold labeling to identify GABAergic interneurons.
218 e specificity of glycoprotein recruitment by immunogold labeling viral glycoproteins and imaging thei
219 not, however, exclusively found at the PSD; immunogold labeling was also associated with filaments a
226 tion of retrograde tracing and postembedding immunogold labeling was used to quantify intracellular r
228 lica electron microscopy in combination with immunogold labeling, we demonstrate that individual acti
229 ce and transmission electron microscopy with immunogold labeling, we demonstrate that undegraded CFTR
230 scence and electron microscopy combined with immunogold labeling, we examined the surfaces of transfe
233 combining electron microscopy with glutamate immunogold labeling, we identified decreased intracellul
234 Using immunofluorescence and postembedding immunogold labeling, we investigated the distributions o
237 expressed a lower density of synaptic GluA2 immunogold labeling, which correlated with lower recogni
239 e-impermeable biotinylation reagent, and its immunogold labeling with an antibody to a peptide compri
241 ession of an active enzyme that was shown by immunogold labeling with anti-CPB antibodies to be targe
243 ype eyes, except Descemet's membrane, showed immunogold labeling with antibodies against collagen XVI
245 c membrane and in the heterocyst neck, using immunogold labeling with antibody raised to the N-termin
248 Immunofluorescent-antibody staining and immunogold labeling with these MAbs showed that these an
250 dult mouse hippocampus using high-resolution immunogold labeling, with a particular emphasis on synap