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L-SIGN is a receptor on liver sinusoidal endothelial cells for SARS-CoV-2 virus
Yuji Kondo, Jason L. Larabee, Liang Gao, Huiping Shi, Bojing Shao, Christopher M. Hoover, J. Michael McDaniel, Yen-Chun Ho, Robert Silasi-Mansat, Stephanie A. Archer-Hartmann, Parastoo Azadi, R. Sathish Srinivasan, Alireza R. Rezaie, Alain Borczuk, Jeffrey C. Laurence, Florea Lupu, Jasimuddin Ahamed, Rodger P. McEver, James F. Papin, Zhongxin Yu, Lijun Xia
Yuji Kondo, Jason L. Larabee, Liang Gao, Huiping Shi, Bojing Shao, Christopher M. Hoover, J. Michael McDaniel, Yen-Chun Ho, Robert Silasi-Mansat, Stephanie A. Archer-Hartmann, Parastoo Azadi, R. Sathish Srinivasan, Alireza R. Rezaie, Alain Borczuk, Jeffrey C. Laurence, Florea Lupu, Jasimuddin Ahamed, Rodger P. McEver, James F. Papin, Zhongxin Yu, Lijun Xia
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Research Article Cell biology Vascular biology

L-SIGN is a receptor on liver sinusoidal endothelial cells for SARS-CoV-2 virus

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Abstract

Coronavirus disease 2019 (COVID-19), caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), remains a pandemic. Severe disease is associated with dysfunction of multiple organs, but some infected cells do not express ACE2, the canonical entry receptor for SARS-CoV-2. Here, we report that the C-type lectin receptor L-SIGN interacted in a Ca2+-dependent manner with high-mannose–type N-glycans on the SARS-CoV-2 spike protein. We found that L-SIGN was highly expressed on human liver sinusoidal endothelial cells (LSECs) and lymph node lymphatic endothelial cells but not on blood endothelial cells. Using high-resolution confocal microscopy imaging, we detected SARS-CoV-2 viral proteins within the LSECs from liver autopsy samples from patients with COVID-19. We found that both pseudo-typed virus enveloped with SARS-CoV-2 spike protein and authentic SARS-CoV-2 virus infected L-SIGN–expressing cells relative to control cells. Moreover, blocking L-SIGN function reduced CoV-2–type infection. These results indicate that L-SIGN is a receptor for SARS-CoV-2 infection. LSECs are major sources of the clotting factors vWF and factor VIII (FVIII). LSECs from liver autopsy samples from patients with COVID-19 expressed substantially higher levels of vWF and FVIII than LSECs from uninfected liver samples. Our data demonstrate that L-SIGN is an endothelial cell receptor for SARS-CoV-2 that may contribute to COVID-19–associated coagulopathy.

Authors

Yuji Kondo, Jason L. Larabee, Liang Gao, Huiping Shi, Bojing Shao, Christopher M. Hoover, J. Michael McDaniel, Yen-Chun Ho, Robert Silasi-Mansat, Stephanie A. Archer-Hartmann, Parastoo Azadi, R. Sathish Srinivasan, Alireza R. Rezaie, Alain Borczuk, Jeffrey C. Laurence, Florea Lupu, Jasimuddin Ahamed, Rodger P. McEver, James F. Papin, Zhongxin Yu, Lijun Xia

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Figure 1

Binding of L-SIGN to the SARS-CoV-2 spike protein mediates viral entry.

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Binding of L-SIGN to the SARS-CoV-2 spike protein mediates viral entry.
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(A) Protein domain structures of SARS-CoV-2 spike protein and human L-SIGN (numbers represent amino acids). TM, transmembrane domain; CP, cytoplasmic domain; EPN, Glu-Pro-Asn motif; SS, signal sequence. (B) Protein expression of ACE2-myc3 and L-SIGN-flag in transfected HEK293T cells by immunoblotting. GAPDH was used as a loading control. (C and D) Representative flow cytometry plots of VSVG-type (histogram) and SARS-CoV-2–type (density plot) pseudo-typed virus infection in response to mock-transfected, ACE2-myc3–transfected, and L-SIGN-flag–transfected HEK293T cells defined by ZsGreen expression. Uninfected or mock-transfected cells were used as negative control. Dashed boxes indicate infected cells. (E) Quantification of pseudo-typed virus infection in C and D. Each dot represents an individual experiment. (F) Representative overlaid flow cytometry plot of exogenous L-SIGN expression and CoV-2–type infection on L-SIGN-flag–transfected HEK293T cells (top) and quantification of the percentage of CoV-2 infection based on different L-SIGN expression levels (bottom). CoV-2 infectivity positively correlates with L-SIGN expression level. Percentages of infection were normalized with percentages of expression of L-SIGN in HEK293T cells. N.C., negative control; uninfected, L-SIGN–stained HEK293T cells; infected, L-SIGN–stained CoV-2–type–infected HEK293T cells; Inter, intermediate. Bars indicate the mean; error bars represent mean ± SEM. Significance was calculated using a 1-way ANOVA for multiple groups and a 2-tailed Student’s t test for comparing 2 groups: *P < 0.05; **P < 0.01. All experiments were repeated at least 3 times.

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