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Items: 1 to 20 of 108

1.

Hepatitis C virus utilizes VLDLR as a novel entry pathway.

Ujino S, Nishitsuji H, Hishiki T, Sugiyama K, Takaku H, Shimotohno K.

Proc Natl Acad Sci U S A. 2016 Jan 5;113(1):188-93. doi: 10.1073/pnas.1506524113. Epub 2015 Dec 23.

2.

Mice Expressing Minimally Humanized CD81 and Occludin Genes Support Hepatitis C Virus Uptake In Vivo.

Ding Q, von Schaewen M, Hrebikova G, Heller B, Sandmann L, Plaas M, Ploss A.

J Virol. 2017 Jan 31;91(4). pii: e01799-16. doi: 10.1128/JVI.01799-16. Print 2017 Feb 15.

3.

Expanding the Host Range of Hepatitis C Virus through Viral Adaptation.

von Schaewen M, Dorner M, Hueging K, Foquet L, Gerges S, Hrebikova G, Heller B, Bitzegeio J, Doerrbecker J, Horwitz JA, Gerold G, Suerbaum S, Rice CM, Meuleman P, Pietschmann T, Ploss A.

MBio. 2016 Nov 8;7(6). pii: e01915-16. doi: 10.1128/mBio.01915-16.

4.

CD81 Receptor Regions outside the Large Extracellular Loop Determine Hepatitis C Virus Entry into Hepatoma Cells.

Banse P, Moeller R, Bruening J, Lasswitz L, Kahl S, Khan AG, Marcotrigiano J, Pietschmann T, Gerold G.

Viruses. 2018 Apr 20;10(4). pii: E207. doi: 10.3390/v10040207.

5.

Expression of human factors CD81, claudin-1, scavenger receptor, and occludin in mouse hepatocytes does not confer susceptibility to HCV entry.

Hikosaka K, Noritake H, Kimura W, Sultana N, Sharkar MT, Tagawa Y, Uezato T, Kobayashi Y, Wakita T, Miura N.

Biomed Res. 2011 Apr;32(2):143-50.

6.

Differential expression of candidate virus receptors in human T lymphocytes prone or resistant to infection with patient-derived hepatitis C virus.

Sarhan MA, Chen AY, Michalak TI.

PLoS One. 2013 Apr 23;8(4):e62159. doi: 10.1371/journal.pone.0062159. Print 2013.

7.

CLEC4M-positive and CD81-negative Huh7 cells are not susceptible to JFH-1 HCVcc infection but mediate transinfection.

Ishibashi M, Morita N, Nomura-Kawaguchi C, Shimizu Y, Wakita T, Esumi M.

Arch Virol. 2014 Nov;159(11):2949-55. doi: 10.1007/s00705-014-2150-z. Epub 2014 Jun 26.

PMID:
24965233
8.

Hepatitis C virus cell entry: role of lipoproteins and cellular receptors.

Burlone ME, Budkowska A.

J Gen Virol. 2009 May;90(Pt 5):1055-70. doi: 10.1099/vir.0.008300-0. Epub 2009 Mar 4. Review.

PMID:
19264629
9.

Epigallocatechin gallate (EGCG) and miR-548m reduce HCV entry through repression of CD81 receptor in HCV cell models.

Mekky RY, El-Ekiaby N, El Sobky SA, Elemam NM, Youness RA, El-Sayed M, Hamza MT, Esmat G, Abdelaziz AI.

Arch Virol. 2019 Jun;164(6):1587-1595. doi: 10.1007/s00705-019-04232-x. Epub 2019 Apr 4.

PMID:
30949812
10.

Tandem overexpression of five human factors renders murine hepatocytes susceptible to hepatitis C virus.

Lv L, Kang Q, Yu X, Gao B, Hu T, Ma P, Zhang Y, Yan F, Xiao J, Deng J, Zhou X, Xu J.

Acta Virol. 2015 Mar;59(1):20-6.

PMID:
25790047
11.

Alirocumab, a Therapeutic Human Antibody to PCSK9, Does Not Affect CD81 Levels or Hepatitis C Virus Entry and Replication into Hepatocytes.

Ramanathan A, Gusarova V, Stahl N, Gurnett-Bander A, Kyratsous CA.

PLoS One. 2016 Apr 26;11(4):e0154498. doi: 10.1371/journal.pone.0154498. eCollection 2016.

12.

Cell entry of hepatitis C virus requires a set of co-receptors that include the CD81 tetraspanin and the SR-B1 scavenger receptor.

Bartosch B, Vitelli A, Granier C, Goujon C, Dubuisson J, Pascale S, Scarselli E, Cortese R, Nicosia A, Cosset FL.

J Biol Chem. 2003 Oct 24;278(43):41624-30. Epub 2003 Aug 11.

13.

Lipoprotein Receptors Redundantly Participate in Entry of Hepatitis C Virus.

Yamamoto S, Fukuhara T, Ono C, Uemura K, Kawachi Y, Shiokawa M, Mori H, Wada M, Shima R, Okamoto T, Hiraga N, Suzuki R, Chayama K, Wakita T, Matsuura Y.

PLoS Pathog. 2016 May 6;12(5):e1005610. doi: 10.1371/journal.ppat.1005610. eCollection 2016 May.

14.

Hypervariable region 1 deletion and required adaptive envelope mutations confer decreased dependency on scavenger receptor class B type I and low-density lipoprotein receptor for hepatitis C virus.

Prentoe J, Serre SB, Ramirez S, Nicosia A, Gottwein JM, Bukh J.

J Virol. 2014 Feb;88(3):1725-39. doi: 10.1128/JVI.02017-13. Epub 2013 Nov 20.

15.

Infection with hepatitis C virus depends on TACSTD2, a regulator of claudin-1 and occludin highly downregulated in hepatocellular carcinoma.

Sekhar V, Pollicino T, Diaz G, Engle RE, Alayli F, Melis M, Kabat J, Tice A, Pomerenke A, Altan-Bonnet N, Zamboni F, Lusso P, Emerson SU, Farci P.

PLoS Pathog. 2018 Mar 14;14(3):e1006916. doi: 10.1371/journal.ppat.1006916. eCollection 2018 Mar.

16.

Infection of Hepatocytes With HCV Increases Cell Surface Levels of Heparan Sulfate Proteoglycans, Uptake of Cholesterol and Lipoprotein, and Virus Entry by Up-regulating SMAD6 and SMAD7.

Zhang F, Sodroski C, Cha H, Li Q, Liang TJ.

Gastroenterology. 2017 Jan;152(1):257-270.e7. doi: 10.1053/j.gastro.2016.09.033. Epub 2016 Sep 30.

17.

The tight junction proteins claudin-1, -6, and -9 are entry cofactors for hepatitis C virus.

Meertens L, Bertaux C, Cukierman L, Cormier E, Lavillette D, Cosset FL, Dragic T.

J Virol. 2008 Apr;82(7):3555-60. doi: 10.1128/JVI.01977-07. Epub 2008 Jan 30.

18.

Significance of palmitoylation of CD81 on its association with tetraspanin-enriched microdomains and mediating hepatitis C virus cell entry.

Zhu YZ, Luo Y, Cao MM, Liu Y, Liu XQ, Wang W, Wu DG, Guan M, Xu QQ, Ren H, Zhao P, Qi ZT.

Virology. 2012 Aug 1;429(2):112-23. doi: 10.1016/j.virol.2012.03.002. Epub 2012 May 4.

19.

Role of hypervariable region 1 for the interplay of hepatitis C virus with entry factors and lipoproteins.

Bankwitz D, Vieyres G, Hueging K, Bitzegeio J, Doepke M, Chhatwal P, Haid S, Catanese MT, Zeisel MB, Nicosia A, Baumert TF, Kaderali L, Pietschmann T.

J Virol. 2014 Nov;88(21):12644-55. doi: 10.1128/JVI.01145-14. Epub 2014 Aug 20.

20.

Hepatitis C virus depends on E-cadherin as an entry factor and regulates its expression in epithelial-to-mesenchymal transition.

Li Q, Sodroski C, Lowey B, Schweitzer CJ, Cha H, Zhang F, Liang TJ.

Proc Natl Acad Sci U S A. 2016 Jul 5;113(27):7620-5. doi: 10.1073/pnas.1602701113. Epub 2016 Jun 13.

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