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1 LAMP-1, a marker for late endosomes and lysosomes, was d
2 LAMP-1, a membrane receptor for LRAP in mesenchymal cell
3 ned lysosomal-associated membrane protein 1 (LAMP-1) and 40% contained cathepsin D; 50% of the vacuol
4 ired lysosome-associated membrane protein 1 (LAMP-1) and MHC-II, THP-1 phagosomes that support format
5 d by lysosome-associated membrane protein 1 (LAMP-1), with peak coassociation frequencies occurring a
10 receptor cross-linking and trafficked into a LAMP-1-positive lysosomal compartment like multimeric Fc
11 rin receptor-containing early endosomes to a LAMP-1+, beta-hexosaminadase+, multivesicular compartmen
13 nic hfq and bacA mutants remained in acidic, LAMP-1(+) phagosomes and failed to initiate intracellula
14 indicates that these phagosomes also acquire LAMP 1 and cathepsin D prior to the accumulation of prot
17 es were also labeled with antibodies against LAMP-1, CD81, and CD82, which were also incorporated int
18 tered intracellular distribution of CD1d and LAMP-1 in LT-treated cells, similar to the case for ERK1
22 is phagosomes with high levels of MHC-II and LAMP-1 and MIIC both have the potential to form peptide-
23 exhibited a striking accumulation of LC3 and LAMP-1 positive autolysosomes containing undigested cyto
26 YFP chimeras of beta-actin, Rab5a, Rab7, and LAMP-1, and no association of YFP chimeras marking endop
31 SseJ and SifB localize to the SCV as well as LAMP-1-positive, vesicular-appearing structures distant
32 ras comprised of the lumenal domain of avian LAMP-1 and the alternatively spliced domains of avian LA
36 l killer (NK) cells and deficiency of CD107a/LAMP-1 in mice resulted in increased NK cell apoptosis u
38 hus, our data support a novel role of CD107a/LAMP-1 in the protection of NK cells from degranulation-
43 oparticles isolated from mice were CD62P(-), LAMP-1(-) and expressed full-length filamin A, indicatin
45 oring more than five bacteria also contained LAMP-1, inhibition of vacuole acidification and maturati
46 ion in an aberrant compartment that contains LAMP-1, LAMP-2, and NPC1, but not CI-MPR, similar to the
47 2308 persisted within these cathepsin D(-), LAMP-1(+), and acidic vesicles; however, at the onset of
48 hese strategies, mice vaccinated with Sig/E7/LAMP-1 DNA mixed with Bcl-x(L) DNA showed the greatest i
49 shock protein 70, calreticulin/E7, or Sig/E7/LAMP-1 resulted in further enhancement of the E7-specifi
53 more, B. neotomae exhibited early endosomal (LAMP-1) and late endoplasmic reticulum (calreticulin)-as
57 d accumulation of the lysosomal glycoprotein LAMP-1 as early as 5 min after uptake, whereas the major
58 inum labeled with the lysosomal glycoprotein LAMP-1, but the percentage of vacuoles that labeled was
59 he lysosome-associated membrane glycoprotein LAMP-1, preferentially contained the H-type structure an
60 ne marker proteins, such as the glycoprotein LAMP-1, that are indicators of the normal endocytic path
63 cathepsin D and the lysosomal glycoproteins LAMP-1 and LAMP-2 localized to the C. burnetii vacuole b
64 sing DCs transfected with the chimeric hTERT/LAMP-1 RNA in vaccine trials to facilitate generation of
67 ocalization of lp120 [correction of IgpI20] (LAMP-1), a membrane protein of late endosomes and lysoso
71 d to be enclosed within large, juxtanuclear, LAMP-1-positive vacuoles called Francisella-containing v
72 dosomes (dextran bead uptake) and lysosomes (LAMP-1 staining), demonstrating a pleiotropic role for t
74 c lumen, acquisition of the endosomal marker LAMP-1, and recruitment of the 18-kDa host protein LC3.
81 colocalizes with mature phagolysosome marker LAMP-1 and with vacuolar proton ATPase in macrophages.
82 acquired vacuolar-ATPase, lysosomal markers LAMP 1 and 2, and the lysomotrophic dye LysoTracker to a
86 AA100 phagosome in that they were devoid of LAMP-1 and cathepsin D, and they were colocalized with t
88 y revealed no difference in the intensity of LAMP-1 immunofluorescence in phagolysosome membranes in
91 that of these distinct cargo proteins, only LAMP-1 and LAMP-2 are concentrated in the AP-3-positive
93 n of Col-I with LC3, an autophagy marker, or LAMP-1, a lysosome marker, whereas treatment with TFP, a
95 rapidly acquired the late endosomal protein LAMP-1, but not the lysosomal marker Texas red-ovalbumin
97 rmans and the MDM lysosomal membrane protein LAMP-1 was demonstrated, establishing that fusion of C.
99 g both lysosome-associated membrane protein (LAMP-1) as a membrane marker and rhodamine dextran as a
100 with lysosomal associated membrane protein (LAMP-1) positive vacuoles, indicating that intracellular
101 hTERT/lysosome-associated membrane protein (LAMP-1) protein, carrying the endosomal/lysosomal sortin
102 of the lysosome-associated membrane protein (LAMP-1) to the cytoplasmic/nuclear human papilloma virus
103 nism of lysosomal integral membrane protein (LAMP-1) transport, cDNAs for human Rab7 and Rab9 were is
105 urface levels of lysosomal membrane proteins LAMP-1 (CD107a) and LAMP-2 (CD107b) after peptide stimul
106 hagosomes with late endosomal markers (Rab7, LAMP-1) and increases in the secretion of monocyte chemo
110 he endosomal/lysosomal sorting signal of the LAMP-1, are capable of stimulating concomitant hTERT-spe
112 e, L. pneumophila targets inappropriately to LAMP-1-positive compartments during macrophage infection
113 whereas monomeric forms of CpG-A localize to LAMP-1-positive endosomes accompanied by the loss of IFN
118 erve fibers but was found to colocalize with LAMP-1 and cathepsin D during early stages of axonal spr
119 tA or katB mutant Legionella colocalize with LAMP-1, a late endosomal-lysosomal marker, at twice the
120 . tularensis LVS Delta ripA colocalized with LAMP-1 then escaped the phagosome at the same rate and f
122 re found in phagosomes that colocalized with LAMP-1, indicating defects in intracellular trafficking.
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