|
PMID 21084112
|
2011. Ebola haemorrhagic fever |
Feldmann |
2011 |
|
PMID 20513546
|
2010. Ebola and Marburg hemorrhagic fever. Clin Lab Med 30:161–177 |
Hartman |
2009 |
|
PMID 25214632
|
2014. Genomic surveillance elucidates Ebola virus origin and transmission during the 2014 outbreak |
Gire |
2014 |
|
PMID 22445965
|
2012. Filovirus entry into cells—new insights. Curr Opin Virol 2:206–214 |
Chandran |
2012 |
|
PMID 23342362
|
2012. Host cell factors in filovirus entry: novel players, new insights |
Hofmann-Winkler |
2012 |
|
PMID 22470835
|
2012. Filovirus entry: a novelty in the viral fusion world |
Hunt |
2012 |
|
PMID 22491356
|
2012. A new player in the puzzle of filovirus entry |
White |
2012 |
|
PMID 21866101
|
2011. Small molecule inhibitors reveal Niemann-Pick C1 is essential for Ebola virus infection |
Côté |
2011 |
|
PMID 21866103
|
2011. Ebola virus entry requires the cholesterol transporter Niemann-Pick C1 |
Carette |
2011 |
|
PMID 22395071
|
2012. Ebola virus entry requires the host-programmed recognition of an intracellular receptor. EMBO J 31:1947–1960 |
Miller |
2012 |
|
PMID 11251074
|
2001. Dynamic movements of organelles containing Niemann-Pick C1 protein: NPC1 involvement in late endocytic events. Mol Biol Cell 12:601–614 |
Ko |
2001 |
|
PMID 10660558
|
2000. Role of Niemann-Pick type C1 protein in intracellular trafficking of low density lipoprotein-derived cholesterol |
Cruz |
2000 |
|
PMID 22355453
|
2012. The curious case of arenavirus entry, and its inhibition |
Nunberg |
2012 |
|
PMID 12883000
|
2003. Visualizing infection of individual influenza viruses |
Lakadamyali |
2003 |
|
PMID 22440565
|
2011. Late-penetrating viruses. Curr Opin Virol 1:35–43 |
Lozach |
2011 |
|
PMID 23441171
|
2013. Multiple cationic amphiphiles induce a Niemann-Pick C phenotype and inhibit Ebola virus entry and infection |
Shoemaker |
2013 |
|
PMID 20335266
|
2010. Studies of the “chain reversal regions” of the avian sarcoma/leukosis virus (ASLV) and Ebolavirus fusion proteins: analogous residues are important, and a His residue unique to EnvA affects the pH dependence of ASLV entry |
Delos |
2010 |
|
PMID 24481215
|
2014. BoxPlotR: a Web tool for generation of box plots |
Spitzer |
2014 |
|
PMID 18971266
|
2009. Host cell factors and functions involved in vesicular stomatitis virus entry |
Johannsdottir |
2009 |
|
PMID 20657818
|
2010. A spatio-temporal analysis of matrix protein and nucleocapsid trafficking during vesicular stomatitis virus uncoating |
Mire |
2010 |
|
PMID 15220407
|
2004. Contribution of Ebola virus glycoprotein, nucleoprotein, and VP24 to budding of VP40 virus-like particles |
Licata |
2004 |
|
PMID 11967302
|
2002. Ebola virus VP40 drives the formation of virus-like filamentous particles along with GP |
Noda |
2002 |
|
PMID 23785035
|
2013. FDA-approved selective estrogen receptor modulators inhibit Ebola virus infection. Sci Transl Med 5:190ra79 |
Johansen |
2013 |
|
-
|
2012. Mechanisms of Ebolavirus entry. Ph.D. thesis University of Virginia, Charlottesville, VA |
Shoemaker |
2012 |
|
PMID 24173224
|
2013 |
Iwasaki |
2013 |
|
PMID 18554681
|
2008. Lymphocytic choriomeningitis virus uses a novel endocytic pathway for infectious entry via late endosomes. Virology 378:21–33 |
Quirin |
2008 |
|
PMID 20542252
|
2010. Entry of bunyaviruses into mammalian cells |
Lozach |
2010 |
|
PMID 18769720
|
2008. Phosphoinositide-3 kinase-Akt pathway controls cellular entry of Ebola virus |
Saeed |
2008 |
|
PMID 22031933
|
2012. Cathepsin cleavage potentiates the Ebola virus glycoprotein to undergo a subsequent fusion-relevant conformational change |
Brecher |
2012 |
|
PMID 16571833
|
2006. Role of endosomal cathepsins in entry mediated by the Ebola virus glycoprotein |
Schornberg |
2006 |
|
PMID 19846533
|
2010. A forward genetic strategy reveals destabilizing mutations in the Ebolavirus glycoprotein that alter its protease dependence during cell entry |
Wong |
2010 |
|
PMID 15831716
|
2005. Endosomal proteolysis of the Ebola virus glycoprotein is necessary for infection |
Chandran |
2005 |
|
PMID 22816037
|
2012. Mechanisms of coronavirus cell entry mediated by the viral spike protein |
Belouzard |
2012 |
|
PMID 22590686
|
2012. Ready, set, fuse! The coronavirus spike protein and acquisition of fusion competence |
Heald-Sargent |
2012 |
|
PMID 22496216
|
2012. Simultaneous treatment of human bronchial epithelial cells with serine and cysteine protease inhibitors prevents severe acute respiratory syndrome coronavirus entry |
Kawase |
2012 |
|
PMID 24121034
|
2013. Proteolytic activation of the SARS-coronavirus spike protein: cutting enzymes at the cutting edge of antiviral research. Antiviral Res 100:605–614 |
Simmons |
2013 |
|
PMID 21086720
|
2008. Cathepsins: fundamental effectors of endolysosomal proteolysis. Indian J Biochem Biophys 45:75–90 |
Guha |
2008 |
|
PMID 16143105
|
2005. Rab conversion as a mechanism of progression from early to late endosomes |
Rink |
2005 |
|
PMID 15954801
|
2005. Rab7 associates with early endosomes to mediate sorting and transport of Semliki forest virus to late endosomes |
Vonderheit |
2005 |
|
PMID 16530046
|
2006. Ligands for clathrin-mediated endocytosis are differentially sorted into distinct populations of early endosomes |
Lakadamyali |
2005 |
|
PMID 21973056
|
2012. SNX-BAR-mediated endosome tubulation is co-ordinated with endosome maturation. Traffic 13:94–107 |
van Weering |
2011 |
|
PMID 12554680
|
2003. Defective endocytic trafficking of NPC1 and NPC2 underlying infantile Niemann-Pick type C disease. Hum Mol Genet 12:257–272 |
Blom |
2003 |
|
PMID 21253575
|
2011. Distinct patterns of IFITM-mediated restriction of filoviruses, SARS coronavirus, and influenza A virus |
Huang |
2011 |
|
PMID 24841273
|
2014. Repurposing of clinically developed drugs for treatment of Middle East respiratory syndrome coronavirus infection. Antimicrob Agents Chemother 58:4885–4893 |
Dyall |
2014 |
|
PMID 25375324
|
2014 |
Burkard |
2014 |
|
PMID 21994442
|
2011. Cleavage and activation of the severe acute respiratory syndrome coronavirus spike protein by human airway trypsin-like protease |
Bertram |
2011 |
|
PMID 16081529
|
2005. Inhibitors of cathepsin L prevent severe acute respiratory syndrome coronavirus entry |
Simmons |
2005 |
|
PMID 16116101
|
2005. Protease-mediated enhancement of severe acute respiratory syndrome coronavirus infection |
Matsuyama |
2005 |
|
PMID 22726751
|
2012. Chinese hamster ovary cell lines selected for resistance to Ebolavirus glycoprotein mediated infection are defective for NPC1 expression. Virology 432:20–28 |
Haines |
2012 |
|
PMID 20053739
In OmniVira
|
Biochemical and structural characterization of cathepsin L-processed Ebola virus glycoprotein: implications for viral entry and immunogenicity. |
Hood |
2010 |
|
PMID 22238307
|
2012. Filoviruses require endosomal cysteine proteases for entry but exhibit distinct protease preferences |
Misasi |
2012 |
|
PMID 23236527
|
2012. Cathepsin B & L are not required for Ebola virus replication |
Marzi |
2012 |
|
PMID 21690393
|
2011. Structure and function of the complete internal fusion loop from Ebolavirus glycoprotein 2 |
Gregory |
2011 |
|
PMID 22369502
|
2012. Marburg virus glycoprotein GP2: pH-dependent stability of the ectodomain α-helical bundle. Biochemistry 51:2515–2525 |
Harrison |
2012 |
|
PMID 20466822
|
2010. A small-molecule oxocarbazate inhibitor of human cathepsin L blocks severe acute respiratory syndrome and Ebola pseudotype virus infection into human embryonic kidney 293T cells. Mol Pharmacol 78:319–324 |
Shah |
2010 |
|
PMID 23678171
|
2013. Novel inhibitors of severe acute respiratory syndrome coronavirus entry that act by three distinct mechanisms |
Adedeji |
2013 |
|
PMID 24501399
|
2014. Identification of a broad-spectrum antiviral small molecule against SARS-CoV, Ebola, Hendra, and Nipah viruses using a novel high throughput screening assay |
Elshabrawy |
2014 |
|
PMID 22674975
|
2012. Transport to late endosomes is required for efficient reovirus infection |
Mainou |
2012 |
|
PMID 24501398
|
2014. Rotaviruses reach late endosomes and require the cation-dependent mannose-6-phosphate receptor and the activity of cathepsin proteases to enter the cell |
Díaz-Salinas |
2014 |