-
1
-
-
78650542340
-
Antibodies mediate intracellular immunity through tripartite motif-containing 21 (TRIM21)
-
Mallery, D. L., W. A. McEwan, S. R. Bidgood, G. J. Towers, C. M. Johnson, and L. C. James. 2010. Antibodies mediate intracellular immunity through tripartite motif-containing 21 (TRIM21). Proc. Natl. Acad. Sci. USA 107: 19985–19990.
-
(2010)
Proc. Natl. Acad. Sci. USA
, vol.107
, pp. 19985-19990
-
-
Mallery, D.L.1
McEwan, W.A.2
Bidgood, S.R.3
Towers, G.J.4
Johnson, C.M.5
James, L.C.6
-
2
-
-
84946011808
-
TRIM21 promotes cGAS and RIG-I sensing of viral genomes during infection by antibody-opsonized virus
-
Watkinson, R. E., W. A. McEwan, J. C. H. Tam, M. Vaysburd, and L. C. James. 2015. TRIM21 promotes cGAS and RIG-I sensing of viral genomes during infection by antibody-opsonized virus. PLoS Pathog. 11: e1005253.
-
(2015)
PLoS Pathog
, vol.11
-
-
Watkinson, R.E.1
McEwan, W.A.2
Tam, J.C.H.3
Vaysburd, M.4
James, L.C.5
-
3
-
-
84955244450
-
Swine TRIM21 restricts FMDV infection via an intracellular neutralization mechanism
-
Fan, W., D. Zhang, P. Qian, S. Qian, M. Wu, H. Chen, and X. Li. 2016. Swine TRIM21 restricts FMDV infection via an intracellular neutralization mechanism. Antiviral Res. 127: 32–40.
-
(2016)
Antiviral Res
, vol.127
, pp. 32-40
-
-
Fan, W.1
Zhang, D.2
Qian, P.3
Qian, S.4
Wu, M.5
Chen, H.6
Li, X.7
-
4
-
-
84910095969
-
Antibody- And TRIM21-dependent intracellular restriction of Salmonella enterica
-
Rakebrandt, N., S. Lentes, H. Neumann, L. C. James, and P. Neumann-Staubitz. 2014. Antibody- and TRIM21-dependent intracellular restriction of Salmonella enterica. Pathog. Dis. 72: 131–137.
-
(2014)
Pathog. Dis.
, vol.72
, pp. 131-137
-
-
Rakebrandt, N.1
Lentes, S.2
Neumann, H.3
James, L.C.4
Neumann-Staubitz, P.5
-
5
-
-
85009774848
-
Cytosolic Fc receptor TRIM21 inhibits seeded tau aggregation
-
McEwan, W. A., B. Falcon, M. Vaysburd, D. Clift, A. L. Oblak, B. Ghetti, M. Goedert, and L. C. James. 2017. Cytosolic Fc receptor TRIM21 inhibits seeded tau aggregation. Proc. Natl. Acad. Sci. USA 114: 574–579.
-
(2017)
Proc. Natl. Acad. Sci. USA
, vol.114
, pp. 574-579
-
-
McEwan, W.A.1
Falcon, B.2
Vaysburd, M.3
Clift, D.4
Oblak, A.L.5
Ghetti, B.6
Goedert, M.7
James, L.C.8
-
6
-
-
80054687424
-
Intracellular antibody-mediated immunity and the role of TRIM21
-
McEwan, W. A., D. L. Mallery, D. A. Rhodes, J. Trowsdale, and L. C. James. 2011. Intracellular antibody-mediated immunity and the role of TRIM21. BioEssays 33: 803–809.
-
(2011)
BioEssays
, vol.33
, pp. 803-809
-
-
McEwan, W.A.1
Mallery, D.L.2
Rhodes, D.A.3
Trowsdale, J.4
James, L.C.5
-
7
-
-
84875458616
-
Intracellular antibody-bound pathogens stimulate immune signaling via the Fc receptor TRIM21
-
McEwan, W. A., J. C. H. Tam, R. E. Watkinson, S. R. Bidgood, D. L. Mallery, and L. C. James. 2013. Intracellular antibody-bound pathogens stimulate immune signaling via the Fc receptor TRIM21. Nat. Immunol. 14: 327–336.
-
(2013)
Nat. Immunol.
, vol.14
, pp. 327-336
-
-
McEwan, W.A.1
Tam, J.C.H.2
Watkinson, R.E.3
Bidgood, S.R.4
Mallery, D.L.5
James, L.C.6
-
8
-
-
84938932273
-
Sequential ubiquitination and deubiquitination enzymes synchronize the dual sensor and effector functions of TRIM21
-
Fletcher, A. J., D. L. Mallery, R. E. Watkinson, C. F. Dickson, and L. C. James. 2015. Sequential ubiquitination and deubiquitination enzymes synchronize the dual sensor and effector functions of TRIM21. Proc. Natl. Acad. Sci. USA 112: 10014–10019.
-
(2015)
Proc. Natl. Acad. Sci. USA
, vol.112
, pp. 10014-10019
-
-
Fletcher, A.J.1
Mallery, D.L.2
Watkinson, R.E.3
Dickson, C.F.4
James, L.C.5
-
9
-
-
84864332935
-
Cross-presentation by dendritic cells
-
Joffre, O. P., E. Segura, A. Savina, and S. Amigorena. 2012. Cross-presentation by dendritic cells. Nat. Rev. Immunol. 12: 557–569.
-
(2012)
Nat. Rev. Immunol.
, vol.12
, pp. 557-569
-
-
Joffre, O.P.1
Segura, E.2
Savina, A.3
Amigorena, S.4
-
10
-
-
85028243347
-
Alterations of TRIM21-mRNA expression during monocyte maturation
-
Lenart, M., M. Rutkowska-Zapała, R. Szatanek, K. Weglarczyk, M. Stec, K. Bukowska-Strakova, A. Gruca, J. Czyz, _ and M. Siedlar. 2017. Alterations of TRIM21-mRNA expression during monocyte maturation. Immunobiology 222: 494–498.
-
(2017)
Immunobiology
, vol.222
, pp. 494-498
-
-
Lenart, M.1
Rutkowska-Zapała, M.2
Szatanek, R.3
Weglarczyk, K.4
Stec, M.5
Bukowska-Strakova, K.6
Gruca, A.7
Czyz, J.8
Siedlar, M.9
-
11
-
-
84872683702
-
The E3 ubiquitin ligase TRIM21 negatively regulates the innate immune response to intracellular double-stranded DNA
-
Zhang, Z., M. Bao, N. Lu, L. Weng, B. Yuan, and Y.-J. Liu. 2013. The E3 ubiquitin ligase TRIM21 negatively regulates the innate immune response to intracellular double-stranded DNA. Nat. Immunol. 14: 172–178.
-
(2013)
Nat. Immunol.
, vol.14
, pp. 172-178
-
-
Zhang, Z.1
Bao, M.2
Lu, N.3
Weng, L.4
Yuan, B.5
Liu, Y.-J.6
-
12
-
-
84974805110
-
TRIM21 immune signaling is more sensitive to antibody affinity than its neutralization activity
-
Foss, S., R. E. Watkinson, A. Grevys, M. B. McAdam, M. Bern, L. S. Høydahl, B. Dalhus, T. E. Michaelsen, I. Sandlie, L. C. James, and J. T. Andersen. 2016. TRIM21 immune signaling is more sensitive to antibody affinity than its neutralization activity. J. Immunol. 196: 3452–3459.
-
(2016)
J. Immunol.
, vol.196
, pp. 3452-3459
-
-
Foss, S.1
Watkinson, R.E.2
Grevys, A.3
McAdam, M.B.4
Bern, M.5
Høydahl, L.S.6
Dalhus, B.7
Michaelsen, T.E.8
Sandlie, I.9
James, L.C.10
Andersen, J.T.11
-
13
-
-
69949093459
-
Direct activation of protein kinases by unanchored poly-ubiquitin chains
-
Xia, Z. P., L. Sun, X. Chen, G. Pineda, X. Jiang, A. Adhikari, W. Zeng, and Z. J. Chen. 2009. Direct activation of protein kinases by unanchored poly-ubiquitin chains. Nature 461: 114–119.
-
(2009)
Nature
, vol.461
, pp. 114-119
-
-
Xia, Z.P.1
Sun, L.2
Chen, X.3
Pineda, G.4
Jiang, X.5
Adhikari, A.6
Zeng, W.7
Chen, Z.J.8
-
14
-
-
34250748507
-
Identifying specificity profiles for peptide recognition modules from phage-displayed peptide libraries
-
Tonikian, R., Y. Zhang, C. Boone, and S. S. Sidhu. 2007. Identifying specificity profiles for peptide recognition modules from phage-displayed peptide libraries. Nat. Protoc. 2: 1368–1386.
-
(2007)
Nat. Protoc.
, vol.2
, pp. 1368-1386
-
-
Tonikian, R.1
Zhang, Y.2
Boone, C.3
Sidhu, S.S.4
-
15
-
-
0033674618
-
Trans-complementation of vector replication versus Coxsackie-adenovirus-receptor overexpression to improve transgene expression in poorly permissive cancer cells
-
Fechner, H., X. Wang, H. Wang, A. Jansen, M. Pauschinger, H. Scherübl, J. M. Bergelson, H. P. Schultheiss, and W. Poller. 2000. Trans-complementation of vector replication versus Coxsackie-adenovirus-receptor overexpression to improve transgene expression in poorly permissive cancer cells. Gene Ther. 7: 1954–1968.
-
(2000)
Gene Ther
, vol.7
, pp. 1954-1968
-
-
Fechner, H.1
Wang, X.2
Wang, H.3
Jansen, A.4
Pauschinger, M.5
Scherübl, H.6
Bergelson, J.M.7
Schultheiss, H.P.8
Poller, W.9
-
16
-
-
34447335278
-
Structural basis for PRYSPRY-mediated tripartite motif (TRIM) protein function
-
James, L. C., A. H. Keeble, Z. Khan, D. A. Rhodes, and J. Trowsdale. 2007. Structural basis for PRYSPRY-mediated tripartite motif (TRIM) protein function. Proc. Natl. Acad. Sci. USA 104: 6200–6205.
-
(2007)
Proc. Natl. Acad. Sci. USA
, vol.104
, pp. 6200-6205
-
-
James, L.C.1
Keeble, A.H.2
Khan, Z.3
Rhodes, D.A.4
Trowsdale, J.5
-
17
-
-
78149432061
-
Improved cellular and humoral immune responses in vivo following targeting of HIV Gag to dendritic cells within human anti-human DEC205 monoclonal antibody
-
Cheong, C., J. H. Choi, L. Vitale, L.-Z. He, C. Trumpfheller, L. Bozzacco, Y. Do, G. Nchinda, S. H. Park, D. B. Dandamudi, et al. 2010. Improved cellular and humoral immune responses in vivo following targeting of HIV Gag to dendritic cells within human anti-human DEC205 monoclonal antibody. Blood 116: 3828–3838.
-
(2010)
Blood
, vol.116
, pp. 3828-3838
-
-
Cheong, C.1
Choi, J.H.2
Vitale, L.3
He, L.-Z.4
Trumpfheller, C.5
Bozzacco, L.6
Do, Y.7
Nchinda, G.8
Park, S.H.9
Dandamudi, D.B.10
-
18
-
-
7644228336
-
Postentry neutralization of adenovirus type 5 by an antihexon antibody
-
Varghese, R., Y. Mikyas, P. L. Stewart, and R. Ralston. 2004. Postentry neutralization of adenovirus type 5 by an antihexon antibody. J. Virol. 78: 12320–12332.
-
(2004)
J. Virol.
, vol.78
, pp. 12320-12332
-
-
Varghese, R.1
Mikyas, Y.2
Stewart, P.L.3
Ralston, R.4
-
19
-
-
55449125843
-
Human dendritic cells infected with an adenoviral vector suppress proliferation of autologous and allogeneic T cells
-
Newton, K. R., E. Sala-Soriano, H. Varsani, J. R. Stephenson, D. Goldblatt, and L. R. Wedderburn. 2008. Human dendritic cells infected with an adenoviral vector suppress proliferation of autologous and allogeneic T cells. Immunology 125: 469–479.
-
(2008)
Immunology
, vol.125
, pp. 469-479
-
-
Newton, K.R.1
Sala-Soriano, E.2
Varsani, H.3
Stephenson, J.R.4
Goldblatt, D.5
Wedderburn, L.R.6
-
20
-
-
0031712324
-
Rapid and coordinated switch in chemokine receptor expression during dendritic cell maturation
-
Sallusto, F., P. Schaerli, P. Loetscher, C. Schaniel, D. Lenig, C. R. Mackay, S. Qin, and A. Lanzavecchia. 1998. Rapid and coordinated switch in chemokine receptor expression during dendritic cell maturation. Eur. J. Immunol. 28: 2760–2769.
-
(1998)
Eur. J. Immunol.
, vol.28
, pp. 2760-2769
-
-
Sallusto, F.1
Schaerli, P.2
Loetscher, P.3
Schaniel, C.4
Lenig, D.5
Mackay, C.R.6
Qin, S.7
Lanzavecchia, A.8
-
21
-
-
0029148878
-
Dendritic cells use macropinocytosis and the mannose receptor to concentrate macromolecules in the major histocompatibility complex class II compartment: Downregulation by cytokines and bacterial products
-
Sallusto, F., M. Cella, C. Danieli, and A. Lanzavecchia. 1995. Dendritic cells use macropinocytosis and the mannose receptor to concentrate macromolecules in the major histocompatibility complex class II compartment: downregulation by cytokines and bacterial products. J. Exp. Med. 182: 389–400.
-
(1995)
J. Exp. Med.
, vol.182
, pp. 389-400
-
-
Sallusto, F.1
Cella, M.2
Danieli, C.3
Lanzavecchia, A.4
-
22
-
-
0032903573
-
Distinct patterns and kinetics of chemokine production regulate dendritic cell function
-
Sallusto, F., B. Palermo, D. Lenig, M. Miettinen, S. Matikainen, I. Julkunen, R. Forster, R. Burgstahler, M. Lipp, and A. Lanzavecchia. 1999. Distinct patterns and kinetics of chemokine production regulate dendritic cell function. Eur. J. Immunol. 29: 1617–1625.
-
(1999)
Eur. J. Immunol.
, vol.29
, pp. 1617-1625
-
-
Sallusto, F.1
Palermo, B.2
Lenig, D.3
Miettinen, M.4
Matikainen, S.5
Julkunen, I.6
Forster, R.7
Burgstahler, R.8
Lipp, M.9
Lanzavecchia, A.10
-
23
-
-
0034083091
-
The role of chemokine receptors in primary, effector, and memory immune responses
-
Sallusto, F., C. R. Mackay, and A. Lanzavecchia. 2000. The role of chemokine receptors in primary, effector, and memory immune responses. Annu. Rev. Immunol. 18: 593–620.
-
(2000)
Annu. Rev. Immunol.
, vol.18
, pp. 593-620
-
-
Sallusto, F.1
Mackay, C.R.2
Lanzavecchia, A.3
-
24
-
-
29144451837
-
Differential expression of inflammatory chemokines by Th1- And Th2-cell promoting dendritic cells: A role for different mature dendritic cell populations in attracting appropriate effector cells to peripheral sites of inflammation
-
Lebre, M. C., T. Burwell, P. L. Vieira, J. Lora, A. J. Coyle, M. L. Kapsenberg, B. E. Clausen, and E. C. De Jong. 2005. Differential expression of inflammatory chemokines by Th1- and Th2-cell promoting dendritic cells: a role for different mature dendritic cell populations in attracting appropriate effector cells to peripheral sites of inflammation. Immunol. Cell Biol. 83: 525–535.
-
(2005)
Immunol. Cell Biol.
, vol.83
, pp. 525-535
-
-
Lebre, M.C.1
Burwell, T.2
Vieira, P.L.3
Lora, J.4
Coyle, A.J.5
Kapsenberg, M.L.6
Clausen, B.E.7
De Jong, E.C.8
-
25
-
-
79959946173
-
Neonatal Fc receptor for IgG (FcRn) regulates cross-presentation of IgG immune complexes by CD8-CD11b+ dendritic cells
-
Baker, K., S.-W. Qiao, T. T. Kuo, V. G. Aveson, B. Platzer, J.-T. Andersen, I. Sandlie, Z. Chen, C. de Haar, W. I. Lencer, et al. 2011. Neonatal Fc receptor for IgG (FcRn) regulates cross-presentation of IgG immune complexes by CD8-CD11b+ dendritic cells. Proc. Natl. Acad. Sci. USA 108: 9927–9932.
-
(2011)
Proc. Natl. Acad. Sci. USA
, vol.108
, pp. 9927-9932
-
-
Baker, K.1
Qiao, S.-W.2
Kuo, T.T.3
Aveson, V.G.4
Platzer, B.5
Andersen, J.-T.6
Sandlie, I.7
Chen, Z.8
De Haar, C.9
Lencer, W.I.10
-
26
-
-
0033579698
-
Fcgamma receptor-mediated induction of dendritic cell maturation and major histocompatibility complex class I-restricted antigen presentation after immune complex internalization
-
Regnault, A., D. Lankar, V. Lacabanne, A. Rodriguez, C. Théry, M. Rescigno, T. Saito, S. Verbeek, C. Bonnerot, P. Ricciardi-Castagnoli, and S. Amigorena. 1999. Fcgamma receptor-mediated induction of dendritic cell maturation and major histocompatibility complex class I-restricted antigen presentation after immune complex internalization. J. Exp. Med. 189: 371–380.
-
(1999)
J. Exp. Med.
, vol.189
, pp. 371-380
-
-
Regnault, A.1
Lankar, D.2
Lacabanne, V.3
Rodriguez, A.4
Théry, C.5
Rescigno, M.6
Saito, T.7
Verbeek, S.8
Bonnerot, C.9
Ricciardi-Castagnoli, P.10
Amigorena, S.11
-
27
-
-
79953782200
-
Monocyte-derived DC maturation strategies and related pathways: A transcriptional view
-
Castiello, L., M. Sabatino, P. Jin, C. Clayberger, F. M. Marincola, A. M. Krensky, and D. F. Stroncek. 2011. Monocyte-derived DC maturation strategies and related pathways: a transcriptional view. Cancer Immunol. Immunother. 60: 457–466.
-
(2011)
Cancer Immunol. Immunother.
, vol.60
, pp. 457-466
-
-
Castiello, L.1
Sabatino, M.2
Jin, P.3
Clayberger, C.4
Marincola, F.M.5
Krensky, A.M.6
Stroncek, D.F.7
-
28
-
-
0037083298
-
Microbial compounds selectively induce Th1 cell-promoting or Th2 cell-promoting dendritic cells in vitro with diverse th cell-polarizing signals
-
de Jong, E. C., P. L. Vieira, P. Kalinski, J. H. N. Schuitemaker, Y. Tanaka, E. A. Wierenga, M. Yazdanbakhsh, and M. L. Kapsenberg. 2002. Microbial compounds selectively induce Th1 cell-promoting or Th2 cell-promoting dendritic cells in vitro with diverse th cell-polarizing signals. J. Immunol. 168: 1704–1709.
-
(2002)
J. Immunol.
, vol.168
, pp. 1704-1709
-
-
De Jong, E.C.1
Vieira, P.L.2
Kalinski, P.3
Schuitemaker, J.H.N.4
Tanaka, Y.5
Wierenga, E.A.6
Yazdanbakhsh, M.7
Kapsenberg, M.L.8
-
29
-
-
67449086734
-
Evaluation of 3 clinical dendritic cell maturation protocols containing lipo-polysaccharide and interferon-gamma
-
Han, T. H., P. Jin, J. Ren, S. Slezak, F. M. Marincola, and D. F. Stroncek. 2009. Evaluation of 3 clinical dendritic cell maturation protocols containing lipo-polysaccharide and interferon-gamma. J. Immunother. 32: 399–407.
-
(2009)
J. Immunother.
, vol.32
, pp. 399-407
-
-
Han, T.H.1
Jin, P.2
Ren, J.3
Slezak, S.4
Marincola, F.M.5
Stroncek, D.F.6
-
30
-
-
85023158822
-
Human adenovirus type 5 vectors deleted of early region 1 (E1) undergo limited expression of early replicative E2 proteins and DNA replication in non-permissive cells
-
Saha, B., and R. J. Parks. 2017. Human adenovirus type 5 vectors deleted of early region 1 (E1) undergo limited expression of early replicative E2 proteins and DNA replication in non-permissive cells. PLoS One 12: e0181012.
-
(2017)
PLoS One
, vol.12
-
-
Saha, B.1
Parks, R.J.2
-
31
-
-
13444311651
-
Adenovirus protein VI mediates membrane disruption following capsid disassembly
-
Wiethoff, C. M., H. Wodrich, L. Gerace, and G. R. Nemerow. 2005. Adenovirus protein VI mediates membrane disruption following capsid disassembly. J. Virol. 79: 1992–2000.
-
(2005)
J. Virol.
, vol.79
, pp. 1992-2000
-
-
Wiethoff, C.M.1
Wodrich, H.2
Gerace, L.3
Nemerow, G.R.4
-
32
-
-
0027496645
-
Stepwise dismantling of adenovirus 2 during entry into cells
-
Greber, U. F., M. Willetts, P. Webster, and A. Helenius. 1993. Stepwise dismantling of adenovirus 2 during entry into cells. Cell 75: 477–486.
-
(1993)
Cell
, vol.75
, pp. 477-486
-
-
Greber, U.F.1
Willetts, M.2
Webster, P.3
Helenius, A.4
-
33
-
-
84899073975
-
Induction of antigen-specific immunity with a vaccine targeting NY-ESO-1 to the dendritic cell receptor DEC-205
-
Dhodapkar, M. V., M. Sznol, B. Zhao, D. Wang, R. D. Carvajal, M. L. Keohan, E. Chuang, R. E. Sanborn, J. Lutzky, J. Powderly, et al. 2014. Induction of antigen-specific immunity with a vaccine targeting NY-ESO-1 to the dendritic cell receptor DEC-205. Sci. Transl. Med. 6: 232ra51.
-
(2014)
Sci. Transl. Med.
, vol.6
, pp. 232ra51
-
-
Dhodapkar, M.V.1
Sznol, M.2
Zhao, B.3
Wang, D.4
Carvajal, R.D.5
Keohan, M.L.6
Chuang, E.7
Sanborn, R.E.8
Lutzky, J.9
Powderly, J.10
-
34
-
-
33846574833
-
DEC-205 receptor on dendritic cells mediates presentation of HIV gag protein to CD8+ T cells in a spectrum of human MHC I haplotypes
-
Bozzacco, L., C. Trumpfheller, F. P. Siegal, S. Mehandru, M. Markowitz, M. Carrington, M. C. Nussenzweig, A. G. Piperno, and R. M. Steinman. 2007. DEC-205 receptor on dendritic cells mediates presentation of HIV gag protein to CD8+ T cells in a spectrum of human MHC I haplotypes. Proc. Natl. Acad. Sci. USA 104: 1289–1294.
-
(2007)
Proc. Natl. Acad. Sci. USA
, vol.104
, pp. 1289-1294
-
-
Bozzacco, L.1
Trumpfheller, C.2
Siegal, F.P.3
Mehandru, S.4
Markowitz, M.5
Carrington, M.6
Nussenzweig, M.C.7
Piperno, A.G.8
Steinman, R.M.9
-
35
-
-
0037033369
-
Fc gamma receptors and cross-presentation in dendritic cells
-
Amigorena, S. 2002. Fc gamma receptors and cross-presentation in dendritic cells. J. Exp. Med. 195: F1–F3.
-
(2002)
J. Exp. Med.
, vol.195
, pp. F1-F3
-
-
Amigorena, S.1
-
36
-
-
0033203120
-
Selective transport of internalized antigens to the cytosol for MHC class I presentation in dendritic cells
-
Rodriguez, A., A. Regnault, M. Kleijmeer, P. Ricciardi-Castagnoli, and S. Amigorena. 1999. Selective transport of internalized antigens to the cytosol for MHC class I presentation in dendritic cells. Nat. Cell Biol. 1: 362–368.
-
(1999)
Nat. Cell Biol.
, vol.1
, pp. 362-368
-
-
Rodriguez, A.1
Regnault, A.2
Kleijmeer, M.3
Ricciardi-Castagnoli, P.4
Amigorena, S.5
|