-
1
-
-
0025114637
-
Tumor necrosis factor induces contraction of mesangial cells and alters their cytoskcletons
-
Camussi, G., E. Turello, C. Tetta, F. Bussolino, and C. Baglioni. 1990. Tumor necrosis factor induces contraction of mesangial cells and alters their cytoskcletons. Kidney Int. 38:795-802.
-
(1990)
Kidney Int
, vol.38
, pp. 795-802
-
-
Camussi, G.1
Turello, E.2
Tetta, C.3
Bussolino, F.4
Baglioni, C.5
-
2
-
-
3342993325
-
Persistent infection of SARS coronavirus in colonic cells in vitro
-
Chan, P. K., K. F. To, A. W. Lo, J. L. Cheung, I. Chu, F. W. Au, J. H. Tong, J. S. Tam, J. J. Sung, and H. K. Ng. 2004. Persistent infection of SARS coronavirus in colonic cells in vitro. J. Med. Virol. 74:1-7.
-
(2004)
J. Med. Virol
, vol.74
, pp. 1-7
-
-
Chan, P.K.1
To, K.F.2
Lo, A.W.3
Cheung, J.L.4
Chu, I.5
Au, F.W.6
Tong, J.H.7
Tam, J.S.8
Sung, J.J.9
Ng, H.K.10
-
3
-
-
34247842741
-
The immunobiology of SARS
-
Chen, J., and K. Subbarao. 2007. The immunobiology of SARS. Annu. Rev. Immunol. 25:443-472.
-
(2007)
Annu. Rev. Immunol
, vol.25
, pp. 443-472
-
-
Chen, J.1
Subbarao, K.2
-
4
-
-
12144286761
-
-
Chinese SARS Molecular Epidemiology Consortium. 2004. Molecular evolution of the SARS coronavirus during the course of the SARS epidemic in China. Science 303:1666-1669.
-
Chinese SARS Molecular Epidemiology Consortium. 2004. Molecular evolution of the SARS coronavirus during the course of the SARS epidemic in China. Science 303:1666-1669.
-
-
-
-
5
-
-
19944431145
-
Acute renal impairment in coronavirus-associated severe acute respiratory syndrome
-
Chu, K. H., W. K. Tsang, C. S. Tang, M. F. Lam, F. M. Lai, K. F. To, K. S. Fung, H. L. Tang, W. W. Yan, H. W. Chan, T. S. Lai, K. L. Tong, and K. N. Lai. 2005. Acute renal impairment in coronavirus-associated severe acute respiratory syndrome. Kidney Int. 67:698-705.
-
(2005)
Kidney Int
, vol.67
, pp. 698-705
-
-
Chu, K.H.1
Tsang, W.K.2
Tang, C.S.3
Lam, M.F.4
Lai, F.M.5
To, K.F.6
Fung, K.S.7
Tang, H.L.8
Yan, W.W.9
Chan, H.W.10
Lai, T.S.11
Tong, K.L.12
Lai, K.N.13
-
6
-
-
0030813802
-
Distinct pathogenic effects of group B coxsackieviruses on human glomerular and tubular kidney cells
-
Conaldi, P. G., L. Biancone, A. Bottelli, A. De Martino, G. Camussi, and A. Toniolo. 1997. Distinct pathogenic effects of group B coxsackieviruses on human glomerular and tubular kidney cells. J. Virol. 71:9180-9187.
-
(1997)
J. Virol
, vol.71
, pp. 9180-9187
-
-
Conaldi, P.G.1
Biancone, L.2
Bottelli, A.3
De Martino, A.4
Camussi, G.5
Toniolo, A.6
-
7
-
-
0032535653
-
HIV-1 kills renal tubular epithelial cells in vitro by triggering an apoptotic pathway involving caspase activation and Fas upregulation
-
Conaldi, P. G., L. Biancone, A. Bottelli, A. Wade-Evans, L. C. Racusen, M. Boccellino, V. Orlandi, C. Serra, G. Camussi, and A. Toniolo. 1998. HIV-1 kills renal tubular epithelial cells in vitro by triggering an apoptotic pathway involving caspase activation and Fas upregulation. J. Clin. Investig. 102: 2041-2049.
-
(1998)
J. Clin. Investig
, vol.102
, pp. 2041-2049
-
-
Conaldi, P.G.1
Biancone, L.2
Bottelli, A.3
Wade-Evans, A.4
Racusen, L.C.5
Boccellino, M.6
Orlandi, V.7
Serra, C.8
Camussi, G.9
Toniolo, A.10
-
8
-
-
0036314244
-
Human immunodeficiency virus-1 tat induces hyperproliferation and dysregulation of renal glomerular epithelial cells
-
Conaldi, P. G., A. Bottelli, A. Baj, C. Serra, L. Fiore, G. Federico, B. Bussolati, and G. Camussi. 2002. Human immunodeficiency virus-1 tat induces hyperproliferation and dysregulation of renal glomerular epithelial cells. Am. J. Pathol. 161:53-61.
-
(2002)
Am. J. Pathol
, vol.161
, pp. 53-61
-
-
Conaldi, P.G.1
Bottelli, A.2
Baj, A.3
Serra, C.4
Fiore, L.5
Federico, G.6
Bussolati, B.7
Camussi, G.8
-
9
-
-
0034623021
-
HIV-persistent infection and cytokine induction in mesangial cells: A potential mechanism for HIV-associated glomerulosclerosis
-
Conaldi, P. G., A. Bottelli, A. Wade-Evans, L. Biancone, A. Baj, V. Cantaluppi, C. Serra, A. Dolei, A. Toniolo, and G. Camussi. 2000. HIV-persistent infection and cytokine induction in mesangial cells: a potential mechanism for HIV-associated glomerulosclerosis. AIDS 14:2045-2047.
-
(2000)
AIDS
, vol.14
, pp. 2045-2047
-
-
Conaldi, P.G.1
Bottelli, A.2
Wade-Evans, A.3
Biancone, L.4
Baj, A.5
Cantaluppi, V.6
Serra, C.7
Dolei, A.8
Toniolo, A.9
Camussi, G.10
-
10
-
-
0031019783
-
Persistent infection of human vascular endothelial cells by group B coxsackieviruses
-
Conaldi, P. G., C. Serra, A. Mossa, V. Falcone, F. Basolo, G. Camussi, A. Dolei, and A. Toniolo. 1997. Persistent infection of human vascular endothelial cells by group B coxsackieviruses. J. Infect. Dis. 175:693-696.
-
(1997)
J. Infect. Dis
, vol.175
, pp. 693-696
-
-
Conaldi, P.G.1
Serra, C.2
Mossa, A.3
Falcone, V.4
Basolo, F.5
Camussi, G.6
Dolei, A.7
Toniolo, A.8
-
11
-
-
2642544842
-
Organ distribution of severe acute respiratory syndrome (SARS) associated coronavirus (SARS-CoV) in SARS patients: Implications for pathogenesis and virus transmission pathways
-
Ding, Y., L. He, Q. Zhang, Z. Huang, X. Che, J. Hou, H. Wang, H. Shen, L. Qiu, Z. Li, J. Geng, J. Cai, H. Han, X. Li, W. Kang, D. Weng, P. Liang, and S. Jiang. 2004. Organ distribution of severe acute respiratory syndrome (SARS) associated coronavirus (SARS-CoV) in SARS patients: implications for pathogenesis and virus transmission pathways. J. Pathol. 203:622-630.
-
(2004)
J. Pathol
, vol.203
, pp. 622-630
-
-
Ding, Y.1
He, L.2
Zhang, Q.3
Huang, Z.4
Che, X.5
Hou, J.6
Wang, H.7
Shen, H.8
Qiu, L.9
Li, Z.10
Geng, J.11
Cai, J.12
Han, H.13
Li, X.14
Kang, W.15
Weng, D.16
Liang, P.17
Jiang, S.18
-
12
-
-
0038523806
-
Identification of a novel coronavirus in patients with severe acute respiratory syndrome
-
Drosten, C., S. Gunther, W. Preiser, S. van der Werf, H. R. Brodt, S. Becker, H. Rabenau, M. Panning, L. Kolesnikova, R. A. Fouchier, A. Berger, A. M. Burguiere, J. Cinatl, M. Eickmann, N. Escriou, K. Grywna, S. Kramme, J. C. Manuguerra, S. Muller, V. Rickerts, M. Sturmer, S. Vieth, H. D. Klenk, A. D. Osterhaus, H. Schmitz, and H. W. Doerr. 2003. Identification of a novel coronavirus in patients with severe acute respiratory syndrome. N. Engl. J. Med. 348:1967-1976.
-
(2003)
N. Engl. J. Med
, vol.348
, pp. 1967-1976
-
-
Drosten, C.1
Gunther, S.2
Preiser, W.3
van der Werf, S.4
Brodt, H.R.5
Becker, S.6
Rabenau, H.7
Panning, M.8
Kolesnikova, L.9
Fouchier, R.A.10
Berger, A.11
Burguiere, A.M.12
Cinatl, J.13
Eickmann, M.14
Escriou, N.15
Grywna, K.16
Kramme, S.17
Manuguerra, J.C.18
Muller, S.19
Rickerts, V.20
Sturmer, M.21
Vieth, S.22
Klenk, H.D.23
Osterhaus, A.D.24
Schmitz, H.25
Doerr, H.W.26
more..
-
13
-
-
19944428996
-
Fatal severe acute respiratory syndrome is associated with multiorgan involvement by coronavirus
-
Farcas, G. A., S. M. Poutanen, T. Mazzulli, B. M. Willey, J. Butany, S. L. Asa, P. Faure, P. Akhavan, D. E. Low, and K. C. Kain. 2005. Fatal severe acute respiratory syndrome is associated with multiorgan involvement by coronavirus. J. Infect. Dis. 191:193-197.
-
(2005)
J. Infect. Dis
, vol.191
, pp. 193-197
-
-
Farcas, G.A.1
Poutanen, S.M.2
Mazzulli, T.3
Willey, B.M.4
Butany, J.5
Asa, S.L.6
Faure, P.7
Akhavan, P.8
Low, D.E.9
Kain, K.C.10
-
14
-
-
0038011859
-
Aetiology: Koch's postulates fulfilled for SARS virus
-
Fouchier, R. A., T. Kuiken, M. Schutten, G. van Amerongen, G. J. van Doornum, B. G. van den Hoogen, M. Peiris, W. Lim, K. Stohr, and A. D. Osterhaus. 2003. Aetiology: Koch's postulates fulfilled for SARS virus. Nature 423:240.
-
(2003)
Nature
, vol.423
, pp. 240
-
-
Fouchier, R.A.1
Kuiken, T.2
Schutten, M.3
van Amerongen, G.4
van Doornum, G.J.5
van den Hoogen, B.G.6
Peiris, M.7
Lim, W.8
Stohr, K.9
Osterhaus, A.D.10
-
15
-
-
40649098253
-
SARS coronavirus and innate immunity
-
Frieman, M., M. Heise, and R. Baric. 2008. SARS coronavirus and innate immunity. Virus Res. 133:101-112.
-
(2008)
Virus Res
, vol.133
, pp. 101-112
-
-
Frieman, M.1
Heise, M.2
Baric, R.3
-
16
-
-
23744439116
-
Multiple organ infection and the pathogenesis of SARS
-
Gu, J., E. Gong, B. Zhang, J. Zheng, Z. Gao, Y. Zhong, W. Zou, J. Zhan, S. Wang, Z. Xie, H. Zhuang, B. Wu, H. Zhong, H. Shao, W. Fang, D. Gao, F. Pei, X. Li, Z. He, D. Xu, X. Shi, V. M. Anderson, and A. S. Leong. 2005. Multiple organ infection and the pathogenesis of SARS. J. Exp. Med. 202:415-424.
-
(2005)
J. Exp. Med
, vol.202
, pp. 415-424
-
-
Gu, J.1
Gong, E.2
Zhang, B.3
Zheng, J.4
Gao, Z.5
Zhong, Y.6
Zou, W.7
Zhan, J.8
Wang, S.9
Xie, Z.10
Zhuang, H.11
Wu, B.12
Zhong, H.13
Shao, H.14
Fang, W.15
Gao, D.16
Pei, F.17
Li, X.18
He, Z.19
Xu, D.20
Shi, X.21
Anderson, V.M.22
Leong, A.S.23
more..
-
17
-
-
2642539225
-
Tissue distribution of ACE2 protein, the functional receptor for SARS coronavirus. A first step in understanding SARS pathogenesis
-
Hamming, I., W. Timens, M. L. Bulthuis, A. T. Lely, G. J. Navis, and H. van Goor. 2004. Tissue distribution of ACE2 protein, the functional receptor for SARS coronavirus. A first step in understanding SARS pathogenesis. J. Pathol. 203:631-637.
-
(2004)
J. Pathol
, vol.203
, pp. 631-637
-
-
Hamming, I.1
Timens, W.2
Bulthuis, M.L.3
Lely, A.T.4
Navis, G.J.5
van Goor, H.6
-
18
-
-
35448944884
-
Specific asparagine-linked glycosylation sites are critical for DC-SIGN- and L-SIGN-mediated severe acute respiratory syndrome coronavirus entry
-
Han, D. P., M. Lohani, and M. W. Cho. 2007. Specific asparagine-linked glycosylation sites are critical for DC-SIGN- and L-SIGN-mediated severe acute respiratory syndrome coronavirus entry. J. Virol. 81:12029-12039.
-
(2007)
J. Virol
, vol.81
, pp. 12029-12039
-
-
Han, D.P.1
Lohani, M.2
Cho, M.W.3
-
19
-
-
0038819069
-
SARS coronavirus: A new challenge for prevention and therapy
-
Holmes, K. V. 2003. SARS coronavirus: a new challenge for prevention and therapy. J. Clin. Investig. 111:1605-1609.
-
(2003)
J. Clin. Investig
, vol.111
, pp. 1605-1609
-
-
Holmes, K.V.1
-
20
-
-
0037648996
-
Clinical presentations and outcome of severe acute respiratory syndrome in children
-
Hon, K. L., C. W. Leung, W. T. Cheng, P. K. Chan, W. C. Chu, Y. W. Kwan, A. M. Li, N. C. Fong, P. C. Ng, M. C. Chiu, C. K. Li, J. S. Tam, and T. F. Fok. 2003. Clinical presentations and outcome of severe acute respiratory syndrome in children. Lancet 361:1701-1703.
-
(2003)
Lancet
, vol.361
, pp. 1701-1703
-
-
Hon, K.L.1
Leung, C.W.2
Cheng, W.T.3
Chan, P.K.4
Chu, W.C.5
Kwan, Y.W.6
Li, A.M.7
Fong, N.C.8
Ng, P.C.9
Chiu, M.C.10
Li, C.K.11
Tam, J.S.12
Fok, T.F.13
-
21
-
-
33645635597
-
SARS coronavirus, but not human coronavirus NL63, utilizes cathepsin L to infect ACE2-expressing cells
-
Huang, I. C., B. J. Bosch, F. Li, W. Li, K. H. Lee, S. Ghiran, N. Vasilieva, T. S. Dermody, S. C. Harrison, P. R. Dormitzer, M. Farzan, P. J. Rottier, and H. Choe. 2006. SARS coronavirus, but not human coronavirus NL63, utilizes cathepsin L to infect ACE2-expressing cells. J. Biol. Chem. 281:3198-3203.
-
(2006)
J. Biol. Chem
, vol.281
, pp. 3198-3203
-
-
Huang, I.C.1
Bosch, B.J.2
Li, F.3
Li, W.4
Lee, K.H.5
Ghiran, S.6
Vasilieva, N.7
Dermody, T.S.8
Harrison, S.C.9
Dormitzer, P.R.10
Farzan, M.11
Rottier, P.J.12
Choe, H.13
-
22
-
-
7644233177
-
Generation of synthetic severe acute respiratory syndrome coronavirus pseudoparticles: Implications for assembly and vaccine production
-
Huang, Y., Z.-Y. Yang, W.-P. Kong, and G. J. Nabel. 2004. Generation of synthetic severe acute respiratory syndrome coronavirus pseudoparticles: implications for assembly and vaccine production. J. Virol. 78:12557-12565.
-
(2004)
J. Virol
, vol.78
, pp. 12557-12565
-
-
Huang, Y.1
Yang, Z.-Y.2
Kong, W.-P.3
Nabel, G.J.4
-
23
-
-
4444220095
-
Viral loads in clinical specimens and SARS manifestations
-
Hung, I. F., V. C. Cheng, A. K. Wu, B. S. Tang, K. H. Chan, C. M. Chu, M. M. Wong, W. T. Hui, L. L. Poon, D. M. Tse, K. S. Chan, P. C. Woo, S. K. Lau, J. S. Peiris, and K. Y. Yuen. 2004. Viral loads in clinical specimens and SARS manifestations. Emerg. Infect. Dis. 10:1550-1557.
-
(2004)
Emerg. Infect. Dis
, vol.10
, pp. 1550-1557
-
-
Hung, I.F.1
Cheng, V.C.2
Wu, A.K.3
Tang, B.S.4
Chan, K.H.5
Chu, C.M.6
Wong, M.M.7
Hui, W.T.8
Poon, L.L.9
Tse, D.M.10
Chan, K.S.11
Woo, P.C.12
Lau, S.K.13
Peiris, J.S.14
Yuen, K.Y.15
-
24
-
-
8144221600
-
CD209L (L-SIGN) is a receptor for severe acute respiratory syndrome coronavirus
-
Jeffers, S. A., S. M. Tusell, L. Gillim-Ross, E. M. Hemmila, J. E. Achenbach, G. J. Babcock, W. D. Thomas, Jr., L. B. Thackray, M. D. Young, R. J. Mason, D. M. Ambrosino, D. E. Wentworth, J. C. Demartini, and K. V. Holmes. 2004. CD209L (L-SIGN) is a receptor for severe acute respiratory syndrome coronavirus. Proc. Natl. Acad. Sci. USA 101:15748-15753.
-
(2004)
Proc. Natl. Acad. Sci. USA
, vol.101
, pp. 15748-15753
-
-
Jeffers, S.A.1
Tusell, S.M.2
Gillim-Ross, L.3
Hemmila, E.M.4
Achenbach, J.E.5
Babcock, G.J.6
Thomas Jr., W.D.7
Thackray, L.B.8
Young, M.D.9
Mason, R.J.10
Ambrosino, D.M.11
Wentworth, D.E.12
Demartini, J.C.13
Holmes, K.V.14
-
25
-
-
0028107511
-
Dysfunctions of cell biological mechanisms of visceral epithelial cell (podocytes) in glomerular diseases
-
Kerjaschki, D. 1994. Dysfunctions of cell biological mechanisms of visceral epithelial cell (podocytes) in glomerular diseases. Kidney Int. 45:300-313.
-
(1994)
Kidney Int
, vol.45
, pp. 300-313
-
-
Kerjaschki, D.1
-
26
-
-
33846104528
-
Severe acute respiratory syndrome coronavirus open reading frame (ORF) 3b, ORF 6, and nucleocapsid proteins function as interferon antagonists
-
Kopecky-Bromberg, S. A., L. Martinez-Sobrido, M. Frieman, R. A. Baric, and P. Palese. 2007. Severe acute respiratory syndrome coronavirus open reading frame (ORF) 3b, ORF 6, and nucleocapsid proteins function as interferon antagonists. J. Virol. 81:548-557.
-
(2007)
J. Virol
, vol.81
, pp. 548-557
-
-
Kopecky-Bromberg, S.A.1
Martinez-Sobrido, L.2
Frieman, M.3
Baric, R.A.4
Palese, P.5
-
27
-
-
0038076030
-
A novel coronavirus associated with severe acute respiratory syndrome
-
Ksiazek, T. G., D. Erdman, C. S. Goldsmith, S. R. Zaki, T. Peret, S. Emery, S. Tong, C. Urbani, J. A. Comer, W. Lim, P. E. Rollin, S. F. Dowell, A. E. Ling, C. D. Humphrey, W. J. Shieh, J. Guarner, C. D. Paddock, P. Rota, B. Fields, J. DeRisi, J. Y. Yang, N. Cox, J. M. Hughes, J. W. LeDuc, W. J. Bellini, and L. J. Anderson. 2003. A novel coronavirus associated with severe acute respiratory syndrome. N. Engl. J. Med. 348:1953-1966.
-
(2003)
N. Engl. J. Med
, vol.348
, pp. 1953-1966
-
-
Ksiazek, T.G.1
Erdman, D.2
Goldsmith, C.S.3
Zaki, S.R.4
Peret, T.5
Emery, S.6
Tong, S.7
Urbani, C.8
Comer, J.A.9
Lim, W.10
Rollin, P.E.11
Dowell, S.F.12
Ling, A.E.13
Humphrey, C.D.14
Shieh, W.J.15
Guarner, J.16
Paddock, C.D.17
Rota, P.18
Fields, B.19
DeRisi, J.20
Yang, J.Y.21
Cox, N.22
Hughes, J.M.23
LeDuc, J.W.24
Bellini, W.J.25
Anderson, L.J.26
more..
-
28
-
-
0042198682
-
Newly discovered coronavirus as the primary cause of severe acute respiratory syndrome
-
Kuiken, T., R. A. Fouchier, M. Schutten, G. F. Rimmelzwaan, G. van Amerongen, D. van Riel, J. D. Laman, T. de Jong, G. van Doornum, W. Lim, A. E. Ling, P. K. Chan, J. S. Tam, M. C. Zambon, R. Gopal, C. Drosten, S. van der Werf, N. Escriou, J. C. Manuguerra, K. Stohr, J. S. Peiris, and A. D. Osterhaus. 2003. Newly discovered coronavirus as the primary cause of severe acute respiratory syndrome. Lancet 362:263-270.
-
(2003)
Lancet
, vol.362
, pp. 263-270
-
-
Kuiken, T.1
Fouchier, R.A.2
Schutten, M.3
Rimmelzwaan, G.F.4
van Amerongen, G.5
van Riel, D.6
Laman, J.D.7
de Jong, T.8
van Doornum, G.9
Lim, W.10
Ling, A.E.11
Chan, P.K.12
Tam, J.S.13
Zambon, M.C.14
Gopal, R.15
Drosten, C.16
van der Werf, S.17
Escriou, N.18
Manuguerra, J.C.19
Stohr, K.20
Peiris, J.S.21
Osterhaus, A.D.22
more..
-
29
-
-
20544456584
-
Pathogenesis of severe acute respiratory syndrome
-
Lau, Y. L., and J. S. Peiris. 2005. Pathogenesis of severe acute respiratory syndrome. Curr. Opin. Immunol. 17:404-410.
-
(2005)
Curr. Opin. Immunol
, vol.17
, pp. 404-410
-
-
Lau, Y.L.1
Peiris, J.S.2
-
30
-
-
33744492840
-
Cynomolgus macaque as an animal model for severe acute respiratory syndrome
-
Lawler, J. V., T. P. Endy, L. E. Hensley, A. Garrison, E. A. Fritz, M. Lesar, R. S. Baric, D. A. Kulesh, D. A. Norwood, L. P. Wasieloski, M. P. Ulrich, T. R. Slezak, E. Vitalis, J. W. Huggins, P. B. Jahrling, and J. Paragas. 2006. Cynomolgus macaque as an animal model for severe acute respiratory syndrome. PLoS Med. 3:e149.
-
(2006)
PLoS Med
, vol.3
-
-
Lawler, J.V.1
Endy, T.P.2
Hensley, L.E.3
Garrison, A.4
Fritz, E.A.5
Lesar, M.6
Baric, R.S.7
Kulesh, D.A.8
Norwood, D.A.9
Wasieloski, L.P.10
Ulrich, M.P.11
Slezak, T.R.12
Vitalis, E.13
Huggins, J.W.14
Jahrling, P.B.15
Paragas, J.16
-
31
-
-
0344395657
-
Angiotensin-converting enzyme 2 is a functional receptor for the SARS coronavirus
-
Li, W., M. J. Moore, N. Vasilieva, J. Sui, S. K. Wong, M. A. Berne, M. Somasundaran, J. L. Sullivan, K. Luzuriaga, T. C. Greenough, H. Choe, and M. Farzan. 2003. Angiotensin-converting enzyme 2 is a functional receptor for the SARS coronavirus. Nature 426:450-454.
-
(2003)
Nature
, vol.426
, pp. 450-454
-
-
Li, W.1
Moore, M.J.2
Vasilieva, N.3
Sui, J.4
Wong, S.K.5
Berne, M.A.6
Somasundaran, M.7
Sullivan, J.L.8
Luzuriaga, K.9
Greenough, T.C.10
Choe, H.11
Farzan, M.12
-
32
-
-
27344438916
-
Bats are natural reservoirs of SARS-like coronaviruses
-
Li, W., Z. Shi, M. Yu, W. Ren, C. Smith, J. H. Epstein, H. Wang, G. Crameri, Z. Hu, H. Zhang, J. Zhang, J. McEachern, H. Field, P. Daszak, B. T. Eaton, S. Zhang, and L. F. Wang. 2005. Bats are natural reservoirs of SARS-like coronaviruses. Science 310:676-679.
-
(2005)
Science
, vol.310
, pp. 676-679
-
-
Li, W.1
Shi, Z.2
Yu, M.3
Ren, W.4
Smith, C.5
Epstein, J.H.6
Wang, H.7
Crameri, G.8
Hu, Z.9
Zhang, H.10
Zhang, J.11
McEachern, J.12
Field, H.13
Daszak, P.14
Eaton, B.T.15
Zhang, S.16
Wang, L.F.17
-
33
-
-
33646192966
-
Animal origins of the severe acute respiratory syndrome coronavirus: Insight from ACE2-S-protein interactions
-
Li, W., S.-K. Wong, F. Li, J. H. Kuhn, I.-C. Huang, H. Choe, and M. Farzan. 2006. Animal origins of the severe acute respiratory syndrome coronavirus: insight from ACE2-S-protein interactions. J. Virol. 80:4211-4219.
-
(2006)
J. Virol
, vol.80
, pp. 4211-4219
-
-
Li, W.1
Wong, S.-K.2
Li, F.3
Kuhn, J.H.4
Huang, I.-C.5
Choe, H.6
Farzan, M.7
-
34
-
-
0004507745
-
Structure and function of the renal tubule and interstitium
-
C. O. Tischer and B. M. Brenner ed, J. B. Lippincott, Philadelphia, PA
-
Madsen, K. M., and B. M. Brenner. 1989. Structure and function of the renal tubule and interstitium, p. 606-641. In C. O. Tischer and B. M. Brenner (ed.), Renal pathology with clinical and functional correlations. J. B. Lippincott, Philadelphia, PA.
-
(1989)
Renal pathology with clinical and functional correlations
, pp. 606-641
-
-
Madsen, K.M.1
Brenner, B.M.2
-
35
-
-
33847218615
-
The cytoplasmic tail of the severe acute respiratory syndrome coronavirus spike protein contains a novel endoplasmic reticulum retrieval signal that binds COPI and promotes interaction with membrane protein
-
McBride, C. E., J. Li, and C. E. Machamer. 2007. The cytoplasmic tail of the severe acute respiratory syndrome coronavirus spike protein contains a novel endoplasmic reticulum retrieval signal that binds COPI and promotes interaction with membrane protein. J. Virol. 81:2418-2428.
-
(2007)
J. Virol
, vol.81
, pp. 2418-2428
-
-
McBride, C.E.1
Li, J.2
Machamer, C.E.3
-
36
-
-
20444507288
-
JNK and PI3k/Akt signaling pathways are required for establishing persistent SARS-CoV infection in Vero E6 cells
-
Mizutani, T., S. Fukushi, M. Saijo, I. Kurane, and S. Morikawa. 2005. JNK and PI3k/Akt signaling pathways are required for establishing persistent SARS-CoV infection in Vero E6 cells. Biochim. Biophys. Acta 1741:4-10.
-
(2005)
Biochim. Biophys. Acta
, vol.1741
, pp. 4-10
-
-
Mizutani, T.1
Fukushi, S.2
Saijo, M.3
Kurane, I.4
Morikawa, S.5
-
37
-
-
0038362701
-
Clinical progression and viral load in a community outbreak of coronavirus-associated SARS pneumonia: A prospective study
-
Peiris, J. S., C. M. Chu, V. C. Cheng, K. S. Chan, I. F. Hung, L. L. Poon, K. I. Law, B. S. Tang, T. Y. Hon, C. S. Chan, K. H. Chan, J. S. Ng, B. J. Zheng, W. L. Ng, R. W. Lai, Y. Guan, and K. Y. Yuen. 2003. Clinical progression and viral load in a community outbreak of coronavirus-associated SARS pneumonia: a prospective study. Lancet 361:1767-1772.
-
(2003)
Lancet
, vol.361
, pp. 1767-1772
-
-
Peiris, J.S.1
Chu, C.M.2
Cheng, V.C.3
Chan, K.S.4
Hung, I.F.5
Poon, L.L.6
Law, K.I.7
Tang, B.S.8
Hon, T.Y.9
Chan, C.S.10
Chan, K.H.11
Ng, J.S.12
Zheng, B.J.13
Ng, W.L.14
Lai, R.W.15
Guan, Y.16
Yuen, K.Y.17
-
38
-
-
0242717589
-
Coronavirus as a possible cause of severe acute respiratory syndrome
-
Peiris, J. S., S. T. Lai, L. L. Poon, Y. Guan, L. Y. Yam, W. Lim, J. Nicholls, W. K. Yee, W. W. Yan, M. T. Cheung, V. C. Cheng, K. H. Chan, D. N. Tsang, R. W. Yung, T. K. Ng, and K. Y. Yuen. 2003. Coronavirus as a possible cause of severe acute respiratory syndrome. Lancet 361:1319-1325.
-
(2003)
Lancet
, vol.361
, pp. 1319-1325
-
-
Peiris, J.S.1
Lai, S.T.2
Poon, L.L.3
Guan, Y.4
Yam, L.Y.5
Lim, W.6
Nicholls, J.7
Yee, W.K.8
Yan, W.W.9
Cheung, M.T.10
Cheng, V.C.11
Chan, K.H.12
Tsang, D.N.13
Yung, R.W.14
Ng, T.K.15
Yuen, K.Y.16
-
39
-
-
0346750858
-
The severe acute respiratory syndrome
-
Peiris, J. S., K. Y. Yuen, A. D. Osterhaus, and K. Stohr. 2003. The severe acute respiratory syndrome. N. Engl. J. Med. 349:2431-2441.
-
(2003)
N. Engl. J. Med
, vol.349
, pp. 2431-2441
-
-
Peiris, J.S.1
Yuen, K.Y.2
Osterhaus, A.D.3
Stohr, K.4
-
40
-
-
27744573745
-
Amotosalen photochemical inactivation of severe acute respiratory syndrome coronavirus in human platelet concentrates
-
Pinna, D., A. Sampson-Johannes, M. Clementi, G. Poli, S. Rossini, L. Lin, and E. Vicenzi. 2005. Amotosalen photochemical inactivation of severe acute respiratory syndrome coronavirus in human platelet concentrates. Transfus. Med. 15:269-276.
-
(2005)
Transfus. Med
, vol.15
, pp. 269-276
-
-
Pinna, D.1
Sampson-Johannes, A.2
Clementi, M.3
Poli, G.4
Rossini, S.5
Lin, L.6
Vicenzi, E.7
-
41
-
-
0347356240
-
A model of the ACE2 structure and function as a SARS-CoV receptor
-
Prabakaran, P., X. Xiao, and D. S. Dimitrov. 2004. A model of the ACE2 structure and function as a SARS-CoV receptor. Biochem. Biophys. Res. Commun. 314:235-241.
-
(2004)
Biochem. Biophys. Res. Commun
, vol.314
, pp. 235-241
-
-
Prabakaran, P.1
Xiao, X.2
Dimitrov, D.S.3
-
42
-
-
0031105408
-
Cell lines with extended in vitro growth potential from human renal proximal tubule: Characterization, response to inducers, and comparison with established cell lines
-
Racusen, L. C., C. Monteil, A. Sgrignoli, M. Lucskay, S. Marouillat, J. G. Rhim, and J. P. Morin. 1997. Cell lines with extended in vitro growth potential from human renal proximal tubule: characterization, response to inducers, and comparison with established cell lines. J. Lab. Clin. Med. 129:318-329.
-
(1997)
J. Lab. Clin. Med
, vol.129
, pp. 318-329
-
-
Racusen, L.C.1
Monteil, C.2
Sgrignoli, A.3
Lucskay, M.4
Marouillat, S.5
Rhim, J.G.6
Morin, J.P.7
-
43
-
-
33846492868
-
A mouse-adapted SARS-coronavirus causes disease and mortality in BALB/c mice
-
Roberts, A., D. Deming, C. D. Paddock, A. Cheng, B. Yount, L. Vogel, B. D. Herman, T. Sheahan, M. Heise, G. L. Genrich, S. R. Zaki, R. Baric, and K. Subbarao. 2007. A mouse-adapted SARS-coronavirus causes disease and mortality in BALB/c mice. PLoS Pathog. 3:e5.
-
(2007)
PLoS Pathog
, vol.3
-
-
Roberts, A.1
Deming, D.2
Paddock, C.D.3
Cheng, A.4
Yount, B.5
Vogel, L.6
Herman, B.D.7
Sheahan, T.8
Heise, M.9
Genrich, G.L.10
Zaki, S.R.11
Baric, R.12
Subbarao, K.13
-
44
-
-
0037686664
-
Comparative full-length genome sequence analysis of 14 SARS coronavirus isolates and common mutations associated with putative origins of infection
-
Ruan, Y. J., C. L. Wei, A. L. Ee, V. B. Vega, H. Thoreau, S. T. Su, J. M. Chia, P. Ng, K. P. Chiu, L. Lim, T. Zhang, C. K. Peng, E. O. Lin, N. M. Lee, S. L. Yee, L. F. Ng, R. E. Chee, L. W. Stanton, P. M. Long, and E. T. Liu. 2003. Comparative full-length genome sequence analysis of 14 SARS coronavirus isolates and common mutations associated with putative origins of infection. Lancet 361:1779-1785.
-
(2003)
Lancet
, vol.361
, pp. 1779-1785
-
-
Ruan, Y.J.1
Wei, C.L.2
Ee, A.L.3
Vega, V.B.4
Thoreau, H.5
Su, S.T.6
Chia, J.M.7
Ng, P.8
Chiu, K.P.9
Lim, L.10
Zhang, T.11
Peng, C.K.12
Lin, E.O.13
Lee, N.M.14
Yee, S.L.15
Ng, L.F.16
Chee, R.E.17
Stanton, L.W.18
Long, P.M.19
Liu, E.T.20
more..
-
46
-
-
40649099135
-
SARS-CoV replication and pathogenesis in an in vitro model of the human conducting airway epithelium
-
Sims, A. C., S. E. Burkett, B. Yount, and R. J. Pickles. 2008. SARS-CoV replication and pathogenesis in an in vitro model of the human conducting airway epithelium. Virus Res. 133:33-44.
-
(2008)
Virus Res
, vol.133
, pp. 33-44
-
-
Sims, A.C.1
Burkett, S.E.2
Yount, B.3
Pickles, R.J.4
-
47
-
-
0021006615
-
Coronavirus mRNA synthesis involves fusion of non-contiguous sequences
-
Spaan, W., H. Delius, M. Skinner, J. Armstrong, P. Rottier, S. Smeekens, B. A. van der Zeijst, and S. G. Siddell. 1983. Coronavirus mRNA synthesis involves fusion of non-contiguous sequences. EMBO J. 2:1839-1844.
-
(1983)
EMBO J
, vol.2
, pp. 1839-1844
-
-
Spaan, W.1
Delius, H.2
Skinner, M.3
Armstrong, J.4
Rottier, P.5
Smeekens, S.6
van der Zeijst, B.A.7
Siddell, S.G.8
-
49
-
-
10744231558
-
Tissue and cellular tropism of the coronavirus associated with severe acute respiratory syndrome: An in-situ hybridization study of fatal cases
-
To, K. F., J. H. Tong, P. K. Chan, F. W. Au, S. S. Chim, K. C. Chan, J. L. Cheung, E. Y. Liu, G. M. Tse, A. W. Lo, Y. M. Lo, and H. K. Ng. 2004. Tissue and cellular tropism of the coronavirus associated with severe acute respiratory syndrome: an in-situ hybridization study of fatal cases. J. Pathol. 202:157-163.
-
(2004)
J. Pathol
, vol.202
, pp. 157-163
-
-
To, K.F.1
Tong, J.H.2
Chan, P.K.3
Au, F.W.4
Chim, S.S.5
Chan, K.C.6
Cheung, J.L.7
Liu, E.Y.8
Tse, G.M.9
Lo, A.W.10
Lo, Y.M.11
Ng, H.K.12
-
50
-
-
10444281513
-
Mutational dynamics of the SARS coronavirus in cell culture and human populations isolated in 2003
-
Vega, V. B., Y. Ruan, J. Liu, W. H. Lee, C. L. Wei, S. Y. Se-Thoe, K. F. Tang, T. Zhang, P. R. Kolatkar, E. E. Ooi, A. E. Ling, L. W. Stanton, P. M. Long, and E. T. Liu. 2004. Mutational dynamics of the SARS coronavirus in cell culture and human populations isolated in 2003. BMC Infect. Dis. 4:32.
-
(2004)
BMC Infect. Dis
, vol.4
, pp. 32
-
-
Vega, V.B.1
Ruan, Y.2
Liu, J.3
Lee, W.H.4
Wei, C.L.5
Se-Thoe, S.Y.6
Tang, K.F.7
Zhang, T.8
Kolatkar, P.R.9
Ooi, E.E.10
Ling, A.E.11
Stanton, L.W.12
Long, P.M.13
Liu, E.T.14
-
51
-
-
1542317499
-
Coronaviridae and SARS-associated coronavirus strain HSR1
-
Vicenzi, E., F. Canducci, D. Pinna, N. Mancini, S. Carletti, A. Lazzarin, C. Bordignon, G. Poli, and M. Clementi. 2004. Coronaviridae and SARS-associated coronavirus strain HSR1. Emerg. Infect. Dis. 10:413-418.
-
(2004)
Emerg. Infect. Dis
, vol.10
, pp. 413-418
-
-
Vicenzi, E.1
Canducci, F.2
Pinna, D.3
Mancini, N.4
Carletti, S.5
Lazzarin, A.6
Bordignon, C.7
Poli, G.8
Clementi, M.9
-
53
-
-
11144348936
-
Renal hypouricemia is an ominous sign in patients with severe acute respiratory syndrome
-
Wu, V. C., J. W. Huang, P. R. Hsueh, Y. F. Yang, H. B. Tsai, W. C. Kan, H. W. Chang, and K. D. Wu. 2005. Renal hypouricemia is an ominous sign in patients with severe acute respiratory syndrome. Am. J. Kidney Dis. 45:88-95.
-
(2005)
Am. J. Kidney Dis
, vol.45
, pp. 88-95
-
-
Wu, V.C.1
Huang, J.W.2
Hsueh, P.R.3
Yang, Y.F.4
Tsai, H.B.5
Kan, W.C.6
Chang, H.W.7
Wu, K.D.8
-
54
-
-
0141993032
-
Evaluation of reverse transcription-PCR assays for rapid diagnosis of severe acute respiratory syndrome associated with a novel coronavirus
-
Yam, W. C., K. H. Chan, L. L. M. Poon, Y. Guan, K. Y. Yuen, W. H. Seto, and J. S. M. Peiris. 2003. Evaluation of reverse transcription-PCR assays for rapid diagnosis of severe acute respiratory syndrome associated with a novel coronavirus. J. Clin. Microbiol. 41:4521-5424.
-
(2003)
J. Clin. Microbiol
, vol.41
, pp. 4521-5424
-
-
Yam, W.C.1
Chan, K.H.2
Poon, L.L.M.3
Guan, Y.4
Yuen, K.Y.5
Seto, W.H.6
Peiris, J.S.M.7
-
55
-
-
28944446604
-
Establishment of Vero E6 cell clones persistently infected with severe acute respiratory syndrome coronavirus
-
Yamate, M., M. Yamashita, T. Goto, S. Tsuji, Y. G. Li, J. Warachit, M. Yunoki, and K. Ikuta. 2005. Establishment of Vero E6 cell clones persistently infected with severe acute respiratory syndrome coronavirus. Microbes Infect. 7:1530-1540.
-
(2005)
Microbes Infect
, vol.7
, pp. 1530-1540
-
-
Yamate, M.1
Yamashita, M.2
Goto, T.3
Tsuji, S.4
Li, Y.G.5
Warachit, J.6
Yunoki, M.7
Ikuta, K.8
-
56
-
-
2442691605
-
pH-dependent entry of severe acute respiratory syndrome coronavirus is mediated by the spike glycoprotein and enhanced by dendritic cell transfer through DC-SIGN
-
Yang, Z.-Y., Y. Huang, L. Ganesh, K. Leung, W.-P. Kong, O. Schwartz, K. Subbarao, and G. J. Nabel. 2004. pH-dependent entry of severe acute respiratory syndrome coronavirus is mediated by the spike glycoprotein and enhanced by dendritic cell transfer through DC-SIGN. J. Virol. 78:5642-5650.
-
(2004)
J. Virol
, vol.78
, pp. 5642-5650
-
-
Yang, Z.-Y.1
Huang, Y.2
Ganesh, L.3
Leung, K.4
Kong, W.-P.5
Schwartz, O.6
Subbarao, K.7
Nabel, G.J.8
-
57
-
-
0242268397
-
Reverse genetics with a full-length infectious cDNA of severe acute respiratory syndrome coronavirus
-
Yount, B., K. M. Curtis, E. A. Fritz, L. E. Hensley, P. B. Jahrling, E. Prentice, M. R. Denison, T. W. Geisbert, and R. S. Baric. 2003. Reverse genetics with a full-length infectious cDNA of severe acute respiratory syndrome coronavirus. Proc. Natl. Acad. Sci. USA 100:12995-13000.
-
(2003)
Proc. Natl. Acad. Sci. USA
, vol.100
, pp. 12995-13000
-
-
Yount, B.1
Curtis, K.M.2
Fritz, E.A.3
Hensley, L.E.4
Jahrling, P.B.5
Prentice, E.6
Denison, M.R.7
Geisbert, T.W.8
Baric, R.S.9
|