Amino acid domains 280-297 of VP6 and 531-554 of VP4 are implicated in heat shock cognate protein hsc70-mediated rotavirus infection

被引:37
作者
Gualtero, D. F. [1 ]
Guzman, F. [1 ]
Acosta, O. [1 ]
Guerrero, C. A. [1 ]
机构
[1] Univ Nacl Columbia, Fac Med, Inst Biotechnol, Dept Ciencias Fisiol, Bogota, Colombia
关键词
D O I
10.1007/s00705-007-1055-5
中图分类号
Q93 [微生物学];
学科分类号
071005 [微生物学]; 100705 [微生物与生化药学];
摘要
The rotavirus infection mechanism seems to be a multi-step process which is still not fully understood. The heat shock cognate protein hsc70 has been proposed as being a co-receptor molecule for rotavirus entry into susceptible cells. In this work, an attempt was made to determine the existence of possible domains for VP4 and VP6 binding to hsc70. We selected amino acid sequences 531-554 from VP4 and 280-297 from VP6 on the basis of already recognized sequences for binding to hsc70. This study determined that DLPs and synthetic peptides from VP6 (aa 280-297) and VP4 (aa 531-554), individually or in combination, inhibited rotavirus RRV, YM and WA entry into MA104 and Caco-2 cells in an additive and dose-dependent manner. Hyperimmune sera against these synthetic peptides blocked infection by infectious TLPs. Capture ELISA results showed that DLPs interact with hsc70, probably through VP6 as the specific interaction between hcs70 and DLPs was disrupted by a VP6 peptide. These results suggest that VP6 takes part during rotavirus cell entry by binding to hsc70. This, as well as previous work, provides insight concerning the function of hsc70 within a multi-step model of rotavirus entry.
引用
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页码:2183 / 2196
页数:14
相关论文
共 42 条
[1]
Molecular biology of rotavirus cell entry [J].
Arias, CF ;
Isa, P ;
Guerrero, CA ;
Méndez, E ;
Zárate, S ;
López, T ;
Espinosa, R ;
Romero, P ;
López, S .
ARCHIVES OF MEDICAL RESEARCH, 2002, 33 (04) :356-361
[2]
Protective effect of rotavirus VP6-specific IgA monoclonal antibodies that lack neutralizing activity [J].
Burns, JW ;
SiadatPajouh, M ;
Krishnaney, AA ;
Greenberg, HB .
SCIENCE, 1996, 272 (5258) :104-107
[3]
Virus entry, assembly, budding, and membrane rafts [J].
Chazal, N ;
Gerlier, D .
MICROBIOLOGY AND MOLECULAR BIOLOGY REVIEWS, 2003, 67 (02) :226-+
[4]
Protective immunity induced by oral immunization with a rotavirus DNA vaccine encapsulated in microparticles [J].
Chen, SC ;
Jones, DH ;
Fynan, EF ;
Farrar, GH ;
Clegg, JCS ;
Greenberg, HB ;
Herrmann, JE .
JOURNAL OF VIROLOGY, 1998, 72 (07) :5757-5761
[5]
Antibody-independent protection against rotavirus infection of mice stimulated by intranasal immunization with chimeric VP4 or VP6 protein [J].
Choi, AHC ;
Basu, M ;
McNeal, MM ;
Clements, JD ;
Ward, RL .
JOURNAL OF VIROLOGY, 1999, 73 (09) :7574-7581
[6]
Functional mapping of protective epitopes within the rotavirus VP6 protein in mice belonging to different haplotypes [J].
Choi, AHC ;
McNeal, MM ;
Basu, M ;
Bean, JA ;
VanCott, JL ;
Clements, JD ;
Ward, RL .
VACCINE, 2003, 21 (7-8) :761-767
[7]
Functional mapping of protective domains and epitopes in the rotavirus VP6 protein [J].
Choi, AHC ;
Basu, M ;
McNeal, MM ;
Flint, J ;
VanCott, JL ;
Clements, JD ;
Ward, RL .
JOURNAL OF VIROLOGY, 2000, 74 (24) :11574-11580
[8]
VLA-2 (α2β1) integrin promotes rotavirus entry into cells but is not necessary for rotavirus attachment [J].
Ciarlet, M ;
Crawford, SE ;
Cheng, E ;
Blutt, SE ;
Rice, DA ;
Bergelson, JM ;
Estes, MK .
JOURNAL OF VIROLOGY, 2002, 76 (03) :1109-1123
[9]
Rotavirus contains integrin ligand sequences and a disintegrin-like domain that are implicated in virus entry into cells [J].
Coulson, BS ;
Londrigan, SL ;
Lee, DJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1997, 94 (10) :5389-5394
[10]
ESPEJO RT, 1981, J VIROL, V37, P156, DOI 10.1128/JVI.37.1.156-160.1981