Previous Article | Next Article 
Journal of Virology, July 1999, p. 5945-5956, Vol. 73, No. 7
0022-538X/99/$04.00+0
Copyright © 1999, American Society for Microbiology. All rights reserved.
Interaction of Peptides with Sequences from the
Newcastle Disease Virus Fusion Protein Heptad Repeat Regions
John K.
Young,1,
Donghui
Li,2
Matthew C.
Abramowitz,2 and
Trudy
G.
Morrison2,*
Department of Molecular Genetics and
Microbiology, University of Massachusetts Medical School, Worcester,
Massachusetts,2 and Department of
Chemistry, Colgate University, Hamilton, New
York1
Received 15 December 1998/Accepted 24 March 1999
Typical of many viral fusion proteins, the sequence of the
Newcastle disease virus (NDV) fusion protein has several heptad repeat
regions. One, HR1, is located just carboxyl terminal to the fusion
peptide, while the other, HR2, is located adjacent to the transmembrane
domain. The structure and function of a synthetic peptide with a
sequence from the region of the NDV HR1 region (amino acids 150 to 173)
were characterized. The peptide inhibited fusion with a half-maximal
concentration of approximately 2 µM; however, inhibition was observed
only if the peptide was added prior to protease activation of the
fusion protein. This inhibition was virus specific since the peptide
had minimal effect on fusion directed by the Sendai virus
glycoproteins. To explore the mechanism of action, the potential HR1
peptide interaction with a previously characterized fusion inhibitory
peptide with a sequence from the HR2 domain (J. K. Young, R. P. Hicks, G. E. Wright, and T. G. Morrison, Virology
238:291-304, 1997) was characterized. The results demonstrated an
interaction between the two peptides both functionally and directly.
First, while the individual peptides each inhibit fusion, equimolar
mixtures of the two peptides had minimal effect on fusion, suggesting
that the two peptides form a complex preventing their interaction with
a target protein. Second, an HR2 peptide covalently linked with biotin
was found to bind specifically to HR1 peptide in a Western blot. The
structure of the HR1 peptide was analyzed by nuclear magnetic resonance
spectroscopy and found to be an
helix.
*
Corresponding author. Mailing address: Department of
Molecular Genetics and Microbiology, University of Massachusetts
Medical School, 55 Lake Ave. North, Worcester, MA 01655. Phone: (508) 856-6592. Fax: (508) 856-1506. E-mail:
trudy.morrison{at}banyan.ummed.edu.

Present address: Section of Biochemistry, Molecular, and Cell
Biology, Cornell University, Ithaca, NY
14853.
Journal of Virology, July 1999, p. 5945-5956, Vol. 73, No. 7
0022-538X/99/$04.00+0
Copyright © 1999, American Society for Microbiology. All rights reserved.
This article has been cited by other articles:
-
Porotto, M., Yokoyama, C. C., Orefice, G., Kim, H.-S., Aljofan, M., Mungall, B. A., Moscona, A.
(2009). Kinetic Dependence of Paramyxovirus Entry Inhibition. J. Virol.
83: 6947-6951
[Abstract]
[Full Text]
-
Jain, S., McGinnes, L. W., Morrison, T. G.
(2009). Role of Thiol/Disulfide Exchange in Newcastle Disease Virus Entry. J. Virol.
83: 241-249
[Abstract]
[Full Text]
-
Ujike, M., Nishikawa, H., Otaka, A., Yamamoto, N., Yamamoto, N., Matsuoka, M., Kodama, E., Fujii, N., Taguchi, F.
(2008). Heptad Repeat-Derived Peptides Block Protease-Mediated Direct Entry from the Cell Surface of Severe Acute Respiratory Syndrome Coronavirus but Not Entry via the Endosomal Pathway. J. Virol.
82: 588-592
[Abstract]
[Full Text]
-
Porotto, M., Carta, P., Deng, Y., Kellogg, G. E., Whitt, M., Lu, M., Mungall, B. A., Moscona, A.
(2007). Molecular Determinants of Antiviral Potency of Paramyxovirus Entry Inhibitors. J. Virol.
81: 10567-10574
[Abstract]
[Full Text]
-
Porotto, M., Doctor, L., Carta, P., Fornabaio, M., Greengard, O., Kellogg, G. E., Moscona, A.
(2006). Inhibition of Hendra Virus Fusion. J. Virol.
80: 9837-9849
[Abstract]
[Full Text]
-
McGinnes, L. W., Morrison, T. G.
(2006). Inhibition of Receptor Binding Stabilizes Newcastle Disease Virus HN and F Protein-Containing Complexes. J. Virol.
80: 2894-2903
[Abstract]
[Full Text]
-
West, D. S., Sheehan, M. S., Segeleon, P. K., Dutch, R. E.
(2005). Role of the Simian Virus 5 Fusion Protein N-Terminal Coiled-Coil Domain in Folding and Promotion of Membrane Fusion. J. Virol.
79: 1543-1551
[Abstract]
[Full Text]
-
Netter, R. C., Amberg, S. M., Balliet, J. W., Biscone, M. J., Vermeulen, A., Earp, L. J., White, J. M., Bates, P.
(2004). Heptad Repeat 2-Based Peptides Inhibit Avian Sarcoma and Leukosis Virus Subgroup A Infection and Identify a Fusion Intermediate. J. Virol.
78: 13430-13439
[Abstract]
[Full Text]
-
Okazaki, K., Kida, H.
(2004). A synthetic peptide from a heptad repeat region of herpesvirus glycoprotein B inhibits virus replication. J. Gen. Virol.
85: 2131-2137
[Abstract]
[Full Text]
-
Gravel, K. A., Morrison, T. G.
(2003). Interacting Domains of the HN and F Proteins of Newcastle Disease Virus. J. Virol.
77: 11040-11049
[Abstract]
[Full Text]
-
Zhu, J., Li, P., Wu, T., Gao, F., Ding, Y., Zhang, C. W.-H., Rao, Z., Gao, G. F., Tien, P.
(2003). Design and analysis of post-fusion 6-helix bundle of heptad repeat regions from Newcastle disease virus F protein. Protein Eng Des Sel
16: 373-379
[Abstract]
[Full Text]
-
McGinnes, L. W., Gravel, K., Morrison, T. G.
(2002). Newcastle Disease Virus HN Protein Alters the Conformation of the F Protein at Cell Surfaces. J. Virol.
76: 12622-12633
[Abstract]
[Full Text]
-
Bossart, K. N., Wang, L.-F., Flora, M. N., Chua, K. B., Lam, S. K., Eaton, B. T., Broder, C. C.
(2002). Membrane Fusion Tropism and Heterotypic Functional Activities of the Nipah Virus and Hendra Virus Envelope Glycoproteins. J. Virol.
76: 11186-11198
[Abstract]
[Full Text]
-
Yu, M., Wang, E., Liu, Y., Cao, D., Jin, N., Zhang, C. W.-H., Bartlam, M., Rao, Z., Tien, P., Gao, G. F.
(2002). Six-helix bundle assembly and characterization of heptad repeat regions from the F protein of Newcastle disease virus. J. Gen. Virol.
83: 623-629
[Abstract]
[Full Text]
-
Sergel, T. A., McGinnes, L. W., Morrison, T. G.
(2001). Mutations in the Fusion Peptide and Adjacent Heptad Repeat Inhibit Folding or Activity of the Newcastle Disease Virus Fusion Protein. J. Virol.
75: 7934-7943
[Abstract]
[Full Text]
-
Matthews, J. M., Young, T. F., Tucker, S. P., Mackay, J. P.
(2000). The Core of the Respiratory Syncytial Virus Fusion Protein Is a Trimeric Coiled Coil. J. Virol.
74: 5911-5920
[Abstract]
[Full Text]
-
Sergel, T. A., McGinnes, L. W., Morrison, T. G.
(2000). A Single Amino Acid Change in the Newcastle Disease Virus Fusion Protein Alters the Requirement for HN Protein in Fusion. J. Virol.
74: 5101-5107
[Abstract]
[Full Text]
-
Kingsley, D. H., Behbahani, A., Rashtian, A., Blissard, G. W., Zimmerberg, J.
(1999). A Discrete Stage of Baculovirus GP64-mediated Membrane Fusion. Mol. Biol. Cell
10: 4191-4200
[Abstract]
[Full Text]