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Items: 1 to 20 of 165

1.
2.

Insertion of a coiled-coil peptide from influenza virus hemagglutinin into membranes.

Yu YG, King DS, Shin YK.

Science. 1994 Oct 14;266(5183):274-6.

PMID:
7939662
3.

H+-induced membrane insertion of influenza virus hemagglutinin involves the HA2 amino-terminal fusion peptide but not the coiled coil region.

Durrer P, Galli C, Hoenke S, Corti C, Glück R, Vorherr T, Brunner J.

J Biol Chem. 1996 Jun 7;271(23):13417-21.

4.

Conformational aspects of the acid-induced fusion mechanism of influenza virus hemagglutinin. Circular dichroism and fluorescence studies.

Wharton SA, Ruigrok RW, Martin SR, Skehel JJ, Bayley PM, Weis W, Wiley DC.

J Biol Chem. 1988 Mar 25;263(9):4474-80.

5.

Energetics of the loop-to-helix transition leading to the coiled-coil structure of influenza virus hemagglutinin HA2 subunits.

Huang Q, Korte T, Rachakonda PS, Knapp EW, Herrmann A.

Proteins. 2009 Feb 1;74(2):291-303. doi: 10.1002/prot.22157.

PMID:
18618705
6.

Autocatalytic activation of influenza hemagglutinin.

Lee JH, Goulian M, Boder ET.

J Mol Biol. 2006 Dec 1;364(3):275-82. Epub 2006 Sep 12.

PMID:
17011576
7.

Structural basis for coronavirus-mediated membrane fusion. Crystal structure of mouse hepatitis virus spike protein fusion core.

Xu Y, Liu Y, Lou Z, Qin L, Li X, Bai Z, Pang H, Tien P, Gao GF, Rao Z.

J Biol Chem. 2004 Jul 16;279(29):30514-22. Epub 2004 Apr 27.

8.

On the dynamics and conformation of the HA2 domain of the influenza virus hemagglutinin.

Kim CH, Macosko JC, Yu YG, Shin YK.

Biochemistry. 1996 Apr 30;35(17):5359-65.

PMID:
8611525
9.

Structural characterization of viral fusion proteins.

Hughson FM.

Curr Biol. 1995 Mar 1;5(3):265-74. Review.

10.

Composition and functions of the influenza fusion peptide.

Cross KJ, Langley WA, Russell RJ, Skehel JJ, Steinhauer DA.

Protein Pept Lett. 2009;16(7):766-78. Review.

PMID:
19601906
11.
13.

Conservative mutations in the immunosuppressive region of the bovine leukemia virus transmembrane protein affect fusion but not infectivity in vivo.

Gatot JS, Callebaut I, Mornon JP, Portetelle D, Burny A, Kerkhofs P, Kettmann R, Willems L.

J Biol Chem. 1998 May 22;273(21):12870-80.

14.

Structure of influenza haemagglutinin at the pH of membrane fusion.

Bullough PA, Hughson FM, Skehel JJ, Wiley DC.

Nature. 1994 Sep 1;371(6492):37-43.

PMID:
8072525
15.

Single residue deletions along the length of the influenza HA fusion peptide lead to inhibition of membrane fusion function.

Langley WA, Thoennes S, Bradley KC, Galloway SE, Talekar GR, Cummings SF, Varecková E, Russell RJ, Steinhauer DA.

Virology. 2009 Nov 25;394(2):321-30. doi: 10.1016/j.virol.2009.08.031. Epub 2009 Sep 15.

16.

Influenza hemagglutinin-mediated membrane fusion: influence of receptor binding on the lag phase preceding fusion.

Stegmann T, Bartoldus I, Zumbrunn J.

Biochemistry. 1995 Feb 14;34(6):1825-32.

PMID:
7849043
17.

Structure of the haemagglutinin-esterase-fusion glycoprotein of influenza C virus.

Rosenthal PB, Zhang X, Formanowski F, Fitz W, Wong CH, Meier-Ewert H, Skehel JJ, Wiley DC.

Nature. 1998 Nov 5;396(6706):92-6.

PMID:
9817207
18.

Site-directed mutagenesis of the hinge peptide from the hemagglutinin protein: enhancement of the pH-responsive conformational change.

Casali M, Banta S, Zambonelli C, Megeed Z, Yarmush ML.

Protein Eng Des Sel. 2008 Jun;21(6):395-404. doi: 10.1093/protein/gzn018. Epub 2008 Apr 14.

PMID:
18411225
19.

Relationship between the infectivity of influenza virus and the ability of its fusion peptide to perturb bilayers.

Epand RM, Epand RF.

Biochem Biophys Res Commun. 1994 Aug 15;202(3):1420-5.

PMID:
8060322
20.

Retrovirus envelope domain at 1.7 angstrom resolution.

Fass D, Harrison SC, Kim PS.

Nat Struct Biol. 1996 May;3(5):465-9.

PMID:
8612078

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